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154 results for “Water Table”
PIE LTER marsh water table height, logging data from the Nelson Island Spartina marsh site, Rowley, MA for May-October 2017.
Measurements of water table height in the Nelson Island marsh located near Nelson Island eddy flux tower. Measurements were taken every 5 minutes at each logger along a transect of water level loggers running perpendicular to the Nelson stream bank at Nelson Island, Rowley, MA, MAR-RO-Wtable-Nel for May-October 2017.
PIE LTER marsh water table height, logging data from the Nelson Island Spartina marsh site, Rowley, MA for April-November 2018.
Measurements of water table height in the Nelson Island marsh located near Nelson Island eddy flux tower. Measurements were taken every 5 minutes at each logger along a transect of water level loggers running perpendicular to the Nelson stream bank at Nelson Island, MAR-RO-Wtable-Nel for April-November 2018.
PIE LTER marsh water table height, logging data from the Nelson Island Spartina marsh site for April-November 2019, Rowley, MA.
Measurements of water table height in the Nelson Island marsh located near Nelson Island eddy flux tower, Rowley MA. Measurements were taken every 5 minutes at each logger along a transect of water level loggers running perpendicular to the Nelson stream bank at Nelson Island, MAR-PR-Wtable-Nel for April-November 2019.
Marsh water table height, logging data from the Shad Creek Spartina marsh site for April-November 2019, Rowley, MA, PIE LTER.
Measurements of water table height in the Shad Creek marsh located near the Shad Creek eddy flux tower, Rowley, MA. Measurements were taken every 5 minutes at each logger along a transect of water level loggers running perpendicular to the Nelson stream bank at Nelson Island, MAR-PR-Wtable-Shad for April-November 2019.
Manual active layer and and water table depth measurements from the autochamber sites at Stordalen Mire, northern Sweden (2003-2017)
<p>Files:</p> <ul> <li><strong>Active_Layer_Water_Table_03-17.xlsx</strong> - Data file, with main data in the "DATA" tab.</li> <li><strong>IsoGenieSite_AL_WTD_MapsVisualNotes_200310.pdf</strong> - Visual notes on the measurement locations.</li> </ul> <p>The following site labels (with chamber numbers in parentheses) correspond to the main autochamber sites:</p> <ul> <li>Dry (1,3,5) = Palsa Autochamber Site</li> <li>Mesic (2,4,6) = Sphagnum Autochamber Site</li> <li>Wet (7,8) = Eriophorum Autochamber Site</li> </ul> <p>Water table depth (W D) was measured in wells.</p> <p>Active layer depth (A L) was measured by inserting a metal rod into the surface. The original instruction page is included in page 3 of the pdf.</p> <p>All depths are in centimeters (cm) below peat surface (i.e. peat or <em>Sphagnum</em> spp. vegetation surface = 0), with negative values indicating depth below the surface and positive values (for water table) indicating height of standing water above the surface. Blank data in the Palsa or water table column means no water table observed.</p> <p>Staff gauge was added July 2006 at the edge of a small pond in the fen visible from the shack, with measurements reported in meters. All other measures are in cm.</p> <p> </p> <p>FUNDING:</p> <p>We thank the Swedish Polar Research Secretariat and SITES for the support of the work done at the Abisko Scientific Research Station. SITES is supported by the Swedish Research Council's grant 4.3-2021-00164.</p> <p>This research is a contribution of the EMERGE Biology Integration Institute, funded by the National Science Foundation, Biology Integration Institutes Program, Award # 2022070. The IsoGenie Project (which funded much of the work at these sites during the measurement period) was funded by the Genomic Science Program of the United States Department of Energy Office of Biological and Environmental Research, grant #s DE-SC0004632, DE-SC0010580, and DE-SC0016440.</p>
Interpolated depth to water table (groundwater) maps for the continental United States
<p><strong>DATA:</strong></p> <p>This is a collection of depth to water table maps with uncertainty estimates for the continental United States for years 1989 and 2019. Data used to create these maps were obtained from the National Ground-Water Monitoring Network (NGWMN). Data included 14,351 sites and 17,632,047 observations for the years 1989-2019. To improve our inference a set of auxiliary variables proven to have a relation with depth to water table were included. We paired point estimates of depth to water table data with environmental data, as well as terrain variables derived out of a base digital elevation model (DEM) created by NASA at a 1x1km resolution. Climatic layers (temperature, precipitation, and snow melt equivalent) for 1989-2019 were obtained from Daymet (Version 4), which provides a continuous grid of historical monthly and annual weather data, with a 1x1km spatial resolution (Thornton et al., 2020). Out of the DEM, primary (slope, aspect) and secondary terrain attributes (curvatures, upslope contributing areas) were used to calculate a compound topographic index (CTI). </p> <p> </p> <p><strong>MODELING FRAMEWORK:</strong></p> <p>Water table depth analyses were conducted using a three-step interpolation approach: 1) we utilized gradient boosted regression trees (GBRT) to make predictions, 2) we used kriging interpolation on GBRT residuals to reduce bias from spatial autocorrelation, to incorporate a spatial correlation structure and to create uncertainty maps, and 3) we then combined the GBRT and kriging predictions for the final map. This method is equivalent to a Universal Kriging, where in our case, we evaluated the trend using GBRT. Model metrics were calculated for the training (80% of the data) and validation (20% of the data) datasets to evaluate overall performance.</p> <p>*** Uncertainty is greater surrounding the 1989 interpolations due to a lower number of observations.</p>
Datasets-A globally robust relationship between water table decline, subsidence rate and carbon release from peatlands
<p>Supplementary Data A shows meta-data for in-situ and laboratory measurements of soil respiration or its components soil heterotrophic respiration and autotrophic respiration, as well as associated environmental variables from global pristine peatlands and water table decline peatlands, respectively.</p> <p> </p> <p>Supplementary Data B shows the relationships between peatland subsidence rates and drainage years for different land uses in different climate zones, relationships between proportion of peatland subsidence rates due to oxidation and drainage years for different land uses in different climate zones, the estimated peat subsidence rates and peat subsidence rates due to oxidation, the synthesized soil organic carbon content and soil bulk density at the layer of 0-30 cm from pristine peatlands, and the in-situ measured annual soil heterotrophic respiration rates for validating the robustness of the developed emipirical models of this study. </p>
Fine-root biomass production, sedge root, sedge leaf, and moss shoot decomposition, soil water-table level, and temperature data from two sedge fens in Finland
<p>Dataset including fine-root biomass production, mass loss of sedge (<em>Carex rostrata</em>) roots and leaves, and moss (<em>Sphagnum</em> <em>fallax</em>) shoots, along with environmental data (soil water-table level, air temperature, soil temperature at 5 cm, and soil temperature at 15 cm) from two sedge fens located in southern Finland (Lakkasuo, Orivesi, 61°48' N 24°19'E) and northern Finland (Lompolojänkkä, Kittilä, 68°N 24°12'E). Data are from a climate change experiment, where warming was induced with open top chambers (OTCs) and drying with shallow ditching. Data are from years 2011-2013.</p>
Рис. 1. Обзорная схема распоΛожения обсΛеΔованных воΔных объектов системы СреΔнего Енисея. Номера воΔных объектов привеΔены в соответствии с табΛицей 1 Fig. 1. The location scheme of the examined water bodies of the Middle Yenisei system. The water bodies are numbered in accordance with Table 1 in Extension Of The Range Of Amur Sleeper Dybowski, 1877 (Perciformes: Odontobutidae) In The Yenisei River System
Рис. 1. Обзорная схема распоΛожения обсΛеΔованных воΔных объектов системы СреΔнего Енисея. Номера воΔных объектов привеΔены в соответствии с табΛицей 1 Fig. 1. The location scheme of the examined water bodies of the Middle Yenisei system. The water bodies are numbered in accordance with Table 1
Table 1 in Checklist of Water mites in Mexico. Historical background and DNA barcoding perspectives
<p><b>Table 1</b> Checklist of water mite species in Mexico. * Without data collection.</p><table><tbody><tr><th><b>Species</b></th><th><b>State</b></th><th><b>Habitat</b></th><th><b>Reference</b></th></tr><tr><th><b>Arrenuridae</b></th></tr></tbody><tbody><tr><th><i>Arrenurus (Arrenurus) dentipetiolatus</i></th><td>Oaxaca, Guanajuato</td><td>Pond</td><td>Marshall 1908</td></tr><tr><th><i>Arrenurus (Arrenurus) valencius</i></th><td>Campeche, Tabasco</td><td>Water-filled roadside</td><td>Marshall 1919</td></tr><tr><th><i>Arrenurus (Arrenurus) munovus</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Arrenurus) wucabus</i></th><td>Oaxaca</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Arrenurus) tamauulipensis</i></th><td>Tamaulipas</td><td>Lake</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Arrenurus) xochimilcoensis</i></th><td>Mexico City</td><td>Standing waters</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) manubriator</i></th><td>Tabasco</td><td>Pond</td><td>Marshall 1903</td></tr><tr><th><i>Arrenurus (Megaluracarus) birgei</i></th><td>Campeche</td><td>Lagoon</td><td>Marshall 1903</td></tr><tr><th><i>Arrenurus (Megaluracarus) marshallae</i></th><td>Campeche</td><td>Water-filled ditch</td><td>Piersig 1904</td></tr><tr><th><i>Arrenurus (Megaluracarus) gricalus</i></th><td>Veracruz</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) hartesus</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) neoexpansus</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) tabascoensis</i></th><td>Campeche</td><td>Water-filled ditch</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) trassamus</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) zitavus</i></th><td>Campeche</td><td>Water filled-ditch</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) campechensis</i></th><td>Campeche</td><td>Water filled-ditch</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) wolardus</i></th><td>Veracruz, Colima</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Megaluracarus) costeroae</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) alloexpansus</i></th><td>Colima</td><td>Not specified</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) apizanus</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) catoi</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) champayanus</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) colitus</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Megaluracarus) anae</i></th><td>Tamaulipas</td><td>Lake</td><td>Cramer and Cook 1998</td></tr><tr><th><i>Arrenurus (Megaluracarus) anitahoffmannae</i></th><td>Tabasco</td><td>Lake, pond, canal</td><td>Ramirez-Sánchez and Rivas 2013</td></tr><tr><th><i>Arrenurus (Megaluracarus) olmeca</i></th><td>Tabasco</td><td>Lake, pond, canal</td><td>Ramirez-Sánchez and Rivas 2013</td></tr><tr><th><i>Arrenurus (Megaluracarus) maya</i></th><td>Yucatán, Quintana Roo</td><td>Cenote</td><td>Ramirez-Sánchez and Rivas 2013</td></tr><tr><th><i>Arrenurus (Megaluracarus) urbanus</i></th><td>Mexico city</td><td>Canal</td><td>Ramirez-Sánchez and Rivas 2013</td></tr><tr><th><i>Arrenurus (Megaluracarus) eduardoi</i></th><td>Quintana Roo</td><td>Pool (in a stream)</td><td>Montes-Ortiz et al.2022</td></tr><tr><th><i>Arrenurus (Megaluracarus) federicoi</i></th><td>Quintana Roo</td><td>Pool (in a stream)</td><td>Montes-Ortiz et al.2022</td></tr><tr><th><i>Arrenurus (Megaluracarus) ecosur</i></th><td>Quintana Roo</td><td>Cenote, lagoon, wetlands</td><td>Montes-Ortiz et al.2022</td></tr><tr><th><i>Arrenurus (Megaluracarus) beatrizae</i></th><td>Quintana Roo, Tabasco</td><td>Wetland, lagoon</td><td>Montes-Ortiz et al.2022</td></tr><tr><th><i>Arrenurus (Dadayella) zempoala</i></th><td>Mexico state</td><td>Small stream</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Dadayella) adrianae</i></th><td>Colima, Michoacan</td><td>Wetland, lagoon</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Dadayella) veracruzensis</i></th><td>Veracruz</td><td>Pond</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Dadayella) aztecus</i></th><td>Veracruz</td><td>Wetland, lagoon</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Dadayella) colimensis</i></th><td>Colima</td><td>Wetland, lagoon</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (Dadayella) cristinae</i></th><td>Quintana Roo</td><td>Wetland</td><td>Montes-Ortiz et al.2022</td></tr><tr><th><i>Arrenurus (Truncaturus) plevamus</i></th><td>Guerrero</td><td>Small stream</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Truncaturus) zukovus</i></th><td>Chiapas</td><td>Gravel-bottom stream</td><td>Cook 1980</td></tr><tr><th><i>Arrenurus (Truncaturus)teoceloensis</i></th><td>Veracruz</td><td>Stream</td><td>Rivas and Cramer 1992</td></tr><tr><th><i>Arrenurus (?Arrhenuropsis) mexicanus</i></th><td>Tamaulipas, Colima</td><td>Lagoon</td><td>Cramer and Cook 1992</td></tr><tr><th><i>Arrenurus (?) nayaritensis</i></th><td>Nayarit</td><td>Small stream</td><td>Cook 1980</td></tr><tr><th><b>Hydrachnidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Hydrachna miliaria</i></th><td>Oaxaca</td><td>Pond</td><td>Berlese 1888 in Cook 1980</td></tr><tr><th><i>Hydrachna leovazquezae</i></th><td>Mexico state</td><td>Temporal pond</td><td>Cramer and Costero 1986</td></tr><tr><th><i>Hydrachna guanajuatensis</i></th><td>Guanajuato</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Hydrachna mexicana</i></th><td>Veracruz</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Hydrachna rotunda</i></th><td>Oaxaca, Nayarit, Guanajuato.</td><td>Pond</td><td>Marshall 1930 in Cook 1980</td></tr><tr><th><b>Limnocharidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Rhyncholimnochares (Rhyncholimnochares)</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Rhyncholimnochares (Paralimnochares)</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Eylaidae</i></th><td></td><td></td><td></td></tr><tr><th><i>Eylais guanajuatensis</i></th><td>Guanajuato</td><td>*</td><td>Dugés 1873</td></tr><tr><th><i>Eylais mexicana</i></th><td>Mexico state</td><td>Helocrene spring</td><td>Cook 1980</td></tr><tr><th><i>Hydriyphantidae</i></th></tr><tr><th><i>Hydryphantes (Hydryphantes) ramosus ramosus</i> Oaxaca</th><td>Pond</td><td>Daday 1905 in Cook 1980</td></tr><tr><th><i>Thyopsella obscura</i></th><td>Mexico state.</td><td>Helocrene spring</td><td>Cook 1980</td></tr><tr><th><i>Protzia</i></th><td>Querétaro</td><td>Stream</td><td>Goldschmidt et al. 2015</td></tr><tr><th><b>Hydrodromidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Hydrodroma peregrina perigrina</i></th><td>Campeche, Guanajuato</td><td>Pond</td><td>Lundblad 1941 in Cook 1980</td></tr><tr><th><i>Hydrodroma (Clavipes) despisciens</i></th><td>Oaxaca, Chiapas, Veraruz, San Luis Potosí.</td><td>Stream, river.</td><td>Lundblad 1953 in Cook 1980</td></tr><tr><th><b>Rhynchohydracaridae</b></th></tr><tr><th><i>Clathrosperchon punctatus</i></th><td>Oaxaca, Chiapas, Veracruz.</td><td>Matted roots, bottom of stream</td><td>Cook 1980</td></tr><tr><th><b>Sperchontidae</b></th></tr><tr><th><i>Sperchon mexicanus</i></th><td>Mexico state</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Sperchon neotropicus</i></th><td>Oaxaca, Coahuila, Veracruz.</td><td>Algae on rocks, stream</td><td>Cook 1980</td></tr><tr><th><i>Sperchon (Hispidopershon) gledhilli</i></th><td>Oaxaca, Veracruz, Guerrero.</td><td>Stream</td><td>Viets 1977</td></tr><tr><th><i>Sperchon (Acadiosperchon) pontifex</i></th><td>Oaxaca</td><td>Submerged vegetation</td><td>Otero-Colina 1987a</td></tr><tr><th><i>Sperchon (Mixosperchon) oaxacensis</i></th><td>Oaxaca</td><td>Submerged vegetation</td><td>Otero-Colina 1987a</td></tr><tr><th><b>Anisitsiellidae</b></th></tr><tr><th><i>Bandakia hoffmannae</i></th><td>Mexico state.</td><td>Spring</td><td>Cramer and Smith 1991</td></tr><tr><th><i>Bandakia mexicana</i></th><td>Mexico state.</td><td>Spring</td><td>Cramer and Smith 1991</td></tr><tr><th><i>Mamersella mesoamericana</i></th><td>Tabasco</td><td>Lagoon</td><td>Otero-Colina 1987a</td></tr><tr><th><i>Mamersellides costenius</i></th><td>Veracruz, Colima, Estados Unidos (Florida)</td><td>Ponds, Marshes, backwater pools of streams.</td><td>Cramer and Smith 1993</td></tr><tr><th><b>Lebertiidae</b></th></tr><tr><th><i>Lebertia (Pseudolebertia) azteca</i></th><td>Mexico state</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><b>Oxidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Oxus dugesi</i></th><td>Veracruz, Costa Rica</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Oxus stolli</i></th><td>Guerrero</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><b>Torrenticolidae</b></th></tr><tr><th><i>Torrenticola (Monoatractides) lembada</i></th><td>Chiapas, Costa Rica</td><td>Stream, river.</td><td>Cook 1980</td></tr><tr><th><i>Torrenticola (Monoatractides) gorda</i></th><td>Nayarit, Guerrero, Oaxaca</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Torrenticola (Monoatractides) veracruzensis</i></th><td>Veracruz, Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Torrenticola (Torrenticola) rala</i></th><td>Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Torrenticola (Torrenticola) keesdavidsi</i></th><td>Mexico state.</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Torrenticola (Torrenticola) carlbaderi</i></th><td>Mexico state.</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Torrenticola (Torrenticola) esbelta</i></th><td>Mexico state.</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Torrenticola (Torrenticola) kurtvietsi</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Neotorrenticola (Neotorrenticola) davecooki</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1987</td></tr><tr><th><i>Pseudotorrenticola (Pseudotorrenticola)</i></th><td>Veracruz</td><td>Stream</td><td>Cramer and Cook 2000</td></tr><tr><th><i>Pseudotorrenticola (Psedotorrenticola) boettgeri</i></th><td>Veracruz</td><td>Stream</td><td>Viets 1977 in Cramer and Cook 2000</td></tr><tr><th><b>Limnesiidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Neomamersa (Neomamersa) mexicana</i></th><td>Oaxaca, Guerrero</td><td>Bottom deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Neomamersa (Neomamersa) triacebulata</i></th><td>Chiapas</td><td>Gravels deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Neomamersa (Neomamersa) temazcala</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1987</td></tr><tr><th><i>Meramecia (Meramecia)mexicana</i></th><td>Chiapas, Oaxaca, Puebla</td><td>Gravel deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Kawamuracarus (Kawamuracarus) expansipes</i></th><td>Oaxaca, Chiapas</td><td>Gravel deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Kawamuracarus (Kawamuracarus) novus</i></th><td>Puebla</td><td>Gravel deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Kawamuracarus (Kawamuracarus) iansmithi</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1987</td></tr><tr><th><i>Tyrrelia viuda</i></th><td>Puebla</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Tyrrelia ovalis</i></th><td>Puebla, Mexico state</td><td>Stream</td><td>Marshall 1940 in Cook 1980</td></tr><tr><th><i>Centrolimnesia (Centrolimnesia)motasi</i></th><td>Chiapas</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Centrolimnesia (Centrolimnesia) bondi</i></th><td>Veracruz, Campeche</td><td>Swam, Pond</td><td>Lundblad 1935 in Cook 1980</td></tr><tr><th><i>Limnesia alzatei</i></th><td>Guanajuato</td><td>*</td><td>Dugés 1884</td></tr><tr><th><i>Limnesia laeta</i></th><td>Oaxaca, Tabasco</td><td>Pond</td><td>Stoll 1887 in Cook 1980</td></tr><tr><th><i>Limnesia puteorum</i></th><td>Guanajuato</td><td>*</td><td>Stoll 1987 in Wolcott 1903</td></tr><tr><th><i>Limnesia (Limnesia) abenda</i></th><td>Mexico state</td><td>Helocrene spring</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) banola</i></th><td>Nayarit, Veracruz</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) canvada</i></th><td>Nayarit</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) dimorpha</i></th><td>Nayarit</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) dornera</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) mesoamericana</i></th><td>Guerrero, Oaxaca, Chiapas, Morelos, Nayarit</td><td>River, stream</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) neodentipalpis</i></th><td>Veracruz</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) setacoxalis</i></th><td>Veracruz, Chiapas, Guerrero</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) trehona</i></th><td>Guerrero</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesia) zomplina</i></th><td>Nayarit, Veracruz</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Limnesia (Limnesiella) mexicana</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Limnesia parafalsificata</i></th><td>Tabasco, Chiapas</td><td>Pond</td><td>Otero-Colina 1987a</td></tr><tr><th><i>Psammolimnesia (Psammolimnesia) mexicana</i></th><td>Chiapas</td><td></td><td>Cook 1974</td></tr><tr><th><b>Omartacaridae</b></th></tr><tr><th><i>Omartacarus elongatus</i></th><td>Puebla</td><td>Interstitial waters</td><td>Cook 1963 in Cook 1980</td></tr><tr><th><i>Omartacarus brevipalpis</i></th><td>Chiapas</td><td>Interstitial waters</td><td>Cook 1974</td></tr><tr><th><i>Omartacarus motasi</i></th><td>Chiapas</td><td>Sand and gravel of stream</td><td>Cook 1980</td></tr><tr><th><b>Hygrobatidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Corticacarus novum</i></th><td>Veracruz</td><td>Stream</td><td>Cramer and Cook 1998</td></tr><tr><th><i>Corticacarus (Paracorticacarus) mexicanus</i></th><td>Guerrero, Oaxaca, Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Corticacarus (Polycorticacarellus) similis</i></th><td>Guerrero</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Corticacarus (Polycorticacarellus) mebosus</i></th><td>Chiapas, Veracruz</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Neoatractides curvispinatus</i></th><td>Tabasco</td><td>Gravel in a stream</td><td>Otero-Colina 1987a</td></tr><tr><th><i>Neotractides mexicana</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Neoatractides nayaritensis</i></th><td>Nayarit</td><td>Stream</td><td>Cramer and Cook 2000</td></tr><tr><th><i>Neoatractides abueloi</i></th><td>Veracruz</td><td>Stream</td><td>Cramer and Cook 2000</td></tr><tr><th><i>Neoatractides celiae</i></th><td>Veracruz</td><td>Stream</td><td>Cramer and Cook 2000</td></tr><tr><th><i>Hygrobates (Hygrobates) boettgeri</i></th><td>Oaxaca, Chiapas, Guerrero, Morelos, Nayarit</td><td>Stream</td><td>Viets 1975 in Cook 1980</td></tr><tr><th><i>Hygrobates (Hygrobates) plebejus</i></th><td>Oaxaca, Chiapas, Veracruz, Morelos, Nayarit.</td><td>River</td><td>Lundblad 1930 in Cook 1930</td></tr><tr><th><i>Hygrobates (Hygrobates) amplipalpis</i></th><td>Oaxaca, Veracruz</td><td>Stream</td><td>Viets 1936 in Cook 1980</td></tr><tr><th><i>Hygrobates (Hygrobates) ampliatus</i></th><td>Veracruz, San Luis Potosí, Morelos</td><td>Stream</td><td>Viets 1936 in Cook 1980</td></tr><tr><th><i>Hygrobates (Hygrobates) procursus</i></th><td>Guerrero</td><td>Stream</td><td>Viets 1936 in Cook 1980</td></tr><tr><th><i>Hygrobates (Hygrobates) blatolus</i></th><td>Oaxaca</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><i>Hygrobates (Hygrobates) mexicanus</i></th><td>Nayarit</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) crassitarsis</i></th><td>Guerrero</td><td>Stream</td><td>Lundblad 1942 in Cook 1980</td></tr><tr><th><i>Atractides (Atractides) imitatus</i></th><td>Oaxaca</td><td>River</td><td>Viets 1978 in Cook 1980</td></tr><tr><th><i>Atractides (Atractides) guatemaltecus</i></th><td>Oaxaca, Chiapas, Guerrero.</td><td>Tributary river, stream</td><td>Viets 1978 in Cook 1980</td></tr><tr><th><i>Atractides (Atractides) blazonus</i></th><td>Oaxaca</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) mexicanus</i></th><td>Oaxaca</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) neolongitarsus</i></th><td>Coahuila</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) prasadi</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) tanutus</i></th><td>Mexico state</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) tembolus</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) tolas</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) toldomus</i></th><td>Coahuila</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) travanus</i></th><td>Chiapas, Oaxaca, Guerrero</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) wevamus</i></th><td>Nayarit</td><td>River bottom deposits</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) zempoalus</i></th><td>Mexico state</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Atractides (Atractides) bassolsae</i></th><td>Oaxaca</td><td>Stream</td><td>Otero-Colina 1987a</td></tr><tr><th><i>Atractides (Octomegapus) peltatus</i></th><td>Chiapas</td><td>River</td><td>Viets 1977 in Cook 1980</td></tr><tr><th><i>Atractidella obtusidens</i></th><td>Oaxaca, Chiapas, Veracruz</td><td>River, stream</td><td>Lundblad 1953 in Cook 1980</td></tr><tr><th><i>Atractidella mesoamericana</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Paraschizobates scutatus</i></th><td>Nayarit, Chiapas, Oaxaca</td><td>River, stream</td><td>Cook 1980</td></tr><tr><th><i>Diamphidaxona mexicana</i></th><td>Chiapas</td><td>Gravel deposits in stream</td><td>Cook 1980</td></tr><tr><th><i>Diamphidaxona anitae</i></th><td>Mexico state</td><td>Stream</td><td>Cramer and Letechipía 1996</td></tr><tr><th><b>Unionicolidae</b></th></tr><tr><th><i>Unionicola gracilipalpis tenuis</i></th><td>Oaxaca, Campeche</td><td>Pond, water filled roadside</td><td>Lundblad 1935 in Cook 1980</td></tr><tr><th><i>Unionicola (Unionicola) mexicana</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Unionicola (Pentatax) conjuncta</i></th><td>Chiapas</td><td>Stream</td><td>Viets 1954 in Cook 1980</td></tr><tr><th><i>Unionicola (Pentatax) furculopsis</i></th><td>Oaxaca</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Unionicola (Pentatax) aculeata</i></th><td>Tamaulipas, northern and central Mexico</td><td>Freshwater mussel <i>Anodonta sp., Cyrtonaias tampicoensis, Disconaias sp., Friersonia sp.</i></td><td>Koenike 1914 in Vidrine 1996</td></tr><tr><th><i>Unionicola (Atacella) neoperforata</i></th><td>Tamaulipas, San Luis Potosí.</td><td>Freshwater mussel <i>A. trapesialis glaucus</i></td><td>Vidrine 1985b</td></tr><tr><th><i>Unionicola (Atacella) petita</i></th><td>Veracruz</td><td>Freshwater mussel <i>A. trapesialis glaucus</i></td><td>Vidrine 1985b</td></tr><tr><th><i>Unionicola (Atacella) entrerrianensis</i></th><td>Tamaulipas, San Luis Potosí, Veracruz.</td><td>Freshwater mussel <i>A. trapesialis glaucus</i></td><td>Rosso de Ferradás 1976</td></tr><tr><th><i>Unionicola (Atacella) fissipes</i></th><td>Western Mexico</td><td>Freshwater mussel <i>Anodontites</i></td><td>Koenike, 1891</td></tr><tr><th><i>Unionicola (Berezatax) berezai</i></th><td>Veracruz, San Luis Potosí</td><td>Freshwater mussel <i>Nephronaias sp.</i></td><td>Vidrine 1985a</td></tr><tr><th><i>Unionicola (Berezatax) acylindrotarsa</i></th><td>Tamaulipas, San Luis Potosí</td><td>Freshwater mussel <i>Popenaias, Nephronaias</i></td><td>Vidrine 1985a</td></tr><tr><th><i>Unionicola (Causeyatax) hensleyi</i></th><td>San Luis Potosí, Tamaulipas</td><td>Freshwater mussel <i>Friersonia iridella</i></td><td>Vidrine 1985c</td></tr><tr><th><i>Unionicola (Clarkatax) serrata</i></th><td>San Luis Potosí, Tamaulipas, Veracruz (Panuco river system)</td><td>Friersonia iridella, F. moctezumensis</td><td>Wolcott 1898 in Vidrine 1996</td></tr><tr><th><i>Unionicola (Hexatax) laurentiana</i></th><td>San Luis Potosí, Tamaulipas, Veracruz (Panuco river system)</td><td>Freshwater mussel <i>Disconaias fimbriata, Nephronaias sp., Popenaias sp.</i></td><td>Crowell and Davids 1979 in</td></tr><tr><th><i>Unionicola (Unionicolides) burchi</i></th><td>Guanajuato</td><td>Freshwater mussel <i>Anodonta sp.</i></td><td>Vidrine 1996</td></tr><tr><th><i>Unionicola (Unionicolides) calnani</i></th><td>Tamaulipas, Veracruz</td><td>Freshwater mussel <i>Cyrtonaias tampicoensis, Disconaias discus.</i></td><td>Vidrine 1986</td></tr><tr><th><i>Unionicola (Unionicolides) hoesei</i></th><td>San Luis Potosí, Tamaulipas, Veracruz (Panuco river system)</td><td>Freshwater mussel</td><td>Vidrine 1986</td></tr><tr><th><i>Unionicola (Neoatax) abnormipes</i></th><td>Tamaulipas</td><td>Freshwater mussel <i>Cyrtonaias tampicoensis</i></td><td>Vidrine 1986</td></tr><tr><th><i>Neumania (Neumania) conroyi</i></th><td>Mexico state</td><td>Reocrene spring</td><td>Cook 1980</td></tr><tr><th><i>Neumania (Neumania) diversipalpa</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Neumania (Neumania) alticola</i></th><td>Chiapas, Campeche, Oaxaca, Tabasco, Veracruz.</td><td>Pond, stream.</td><td>Stoll 1886 in Cook 1980</td></tr><tr><th><i>Neumania (Tetraneumania) nondanda</i></th><td>Chiapas, Tabasco, Campeche</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Neumania (Tetraneumania) cesateca</i></th><td>Tabasco, Chiapas</td><td>River, Pond</td><td>Otero-Colina 1987b</td></tr><tr><th><i>Recifella (Recifella) bella</i></th><td>Veracruz, Chiapas</td><td>River, stream</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Eorecifella?) azteca</i></th><td>Oaxaca</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Eorecifella) cemoba</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Eorecifella) laversi</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Eorecifella) alpa</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Eorecifella) indistincta</i></th><td>Yucatán</td><td>Cenote (Sinkhole)</td><td>Marshall 1936 in Cook 1980</td></tr><tr><th><i>Recifella (Recifellopsis) mexicana</i></th><td>Chiapas, Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Recifella (Vietsella)veracruzana</i></th><td>Veracruz</td><td>Pond</td><td>Cramer and Cook 1998</td></tr><tr><th><i>Koenikea (Koenikea) canerma</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) clazona</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) gracilipes</i></th><td>Nayarit, Chiapas, Guerrero</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) tobarana</i></th><td>Nayarit</td><td>River, stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) trocala</i></th><td>Guerrero</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) yenona</i></th><td>Nayarit</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) zedima</i></th><td>Chiapas, Tabasco</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Koenikea) zolada</i></th><td>Veracruz</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea mesoamericana</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (?Diplokoenikea) bispina</i></th><td>Veracruz</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (?Diplokoenikea) blepta</i></th><td>Guerrero</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (?Diplokoenikea) beltista</i></th><td>Chiapas, Veracruz, Puebla.</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Diplokoenikea) neopectinifera</i></th><td>Campeche, Tabasco</td><td>Waterfilled ditch, pond</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Diplokoenikea) clavigera</i></th><td>Chiapas, Oaxaca</td><td>Pond</td><td>Lundblad 1943 in Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) paragrossa</i></th><td>Oaxaca</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) sexmaculata</i></th><td>Oaxaca, Veracruz</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) toloma</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) veracruzensis</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) nayaritensis</i></th><td>Nayarit</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Notomideopsis) taninulensis</i></th><td>San Luis Potosí</td><td>Sulphurous stream</td><td>Cramer 1983</td></tr><tr><th><i>Koenikea (Sespekoenikea) chiapasana</i></th><td>Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Sespekoenikea) piotiformis</i></th><td>Nayarit, Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Tanaognathus) kurtvietsi</i></th><td>Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Koenikea (Parakoenikea) curvipalpis</i></th><td>Oaxaca</td><td>River</td><td>Lundblad 1936 in Cook 1980</td></tr><tr><th><b>Pionidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Piona bromada</i></th><td>Tabasco, Campeche, Veracruz, Oaxaca.</td><td>Pond, waterfilled ditch</td><td>Cook 1980</td></tr><tr><th><i>Piona mexicana</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Piona neoacutidens</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Piona (Piona) triangularis</i></th><td>*</td><td>*</td><td>Wolcott1902 in Marín-Hernández and Cramer-Hemkes 2009</td></tr><tr><th><i>Piona (Tetrapiona) rotunda sudamericana</i></th><td>*</td><td>*</td><td>Viets 1910 in Marín-Hernández and Cramer-Hemkes 2009</td></tr><tr><th><i>Piona alzatei</i></th><td>*</td><td>*</td><td>Dugés 1884</td></tr><tr><th><i>Piona pearsei</i></th><td>*</td><td>*</td><td>Marshall 1936</td></tr><tr><th><i>Piona amimitli</i></th><td>Mexico city</td><td>Stream</td><td>Marín-Hernández 2009</td></tr><tr><th><b>Aturidae</b></th></tr><tr><th><i>Aturus matlatzinca</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1991</td></tr><tr><th><i>Aturus catoantoni</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1991</td></tr><tr><th><i>Aturus guillecrameri</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Aturus celiahemkesae</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Aturus oxtotilpanensis</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1992</td></tr><tr><th><i>Aturus primitivus</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 1991</td></tr><tr><th><i>Neoaturus kurtvietsi</i></th><td>Oaxaca, Chiapas, Veracruz, Guerrero</td><td>River, stream</td><td>Cook 1980</td></tr><tr><th><i>Neoaturus projectus</i></th><td>Veracruz</td><td>River</td><td>Lundblad 1936 in Cook 1980</td></tr><tr><th><i>Adelaxonopsella pallida</i></th><td>Veracruz</td><td>Interstitial water stream</td><td>Cook 1974</td></tr><tr><th><i>Albia (Anchistalbia) iantha</i></th><td>Nayarit</td><td>Spring</td><td>Cook 1980</td></tr><tr><th><i>Albia (Anchistalbia) ianthopsis</i></th><td>Quintana Roo</td><td>Lagoon</td><td>Otero-Colina 1987b</td></tr><tr><th><i>Axonopsella (?) mesoamericana</i></th><td>Guerrero, Morelos, Nayarit</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Axonopsella (Neoaxonopsella) nayaritensis</i></th><td>Nayarit</td><td>Cataracts</td><td>Cook 1980</td></tr><tr><th><i>Axonopsella (Neoaxonopsella) vicina</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Axonopsis (Brachypodopsis) columbicola</i></th><td>Chiapas, Oaxaca, Puebla. Nayarit</td><td>River, stream</td><td>Lundblad 1953 in Cook 1980</td></tr><tr><th><i>Axonopsis (Brachypodopsis) cemoba</i></th><td>Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Axonopsis (Brachypodopsis) cerucha</i></th><td>Veracruz, San Luis Potosí</td><td>River, Stream</td><td>Cook 1980</td></tr><tr><th><i>Axonopsis (Brachypodopsis) mesoamericana</i></th><td>Veracruz, Chiapas</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Axonopsis (Brachypodopsis) trocala</i></th><td>Chiapas</td><td>Chiapas</td><td>Cook 1980</td></tr><tr><th><i>Polyaxonopsella mexicana</i></th><td>Oaxaca</td><td>Stream</td><td>Otero-Colina 1987b</td></tr><tr><th><i>Frontipodopsis mesoamericana</i></th><td>Chiapas</td><td>Bottom deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Kongsbergia antoniocatoi</i></th><td>Mexico state</td><td>Gravel deposits of stream</td><td>Cramer 2000</td></tr><tr><th><i>Kongsbergia cosita</i></th><td>Mexico state</td><td>Gravel deposits of stream</td><td>Cramer 2000</td></tr><tr><th><i>Kongsbergia tigrina</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 2000</td></tr><tr><th><i>Kongsbergia eterna</i></th><td>Mexico state</td><td>Stream</td><td>Cramer 2000</td></tr><tr><th><i>Kongsbergia (Kongsbergia) mexicana</i></th><td>Oaxaca</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Kongsbergia glopipalpis</i></th><td>Chiapas and Veracruz</td><td>Stream</td><td>Lundblad 1953 in Cook 1980</td></tr><tr><th><i>Kongsbergia materna</i></th><td>Chiapas, Mexico state, Oaxaca, Veracruz.</td><td>Tributary river</td><td>Thor 1899 in Cramer 2000</td></tr><tr><th><i>Submiraxona (Submiraxona) bella</i></th><td>Nayarit</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Submiraxona (Submiraxona) lundbladi</i></th><td>Guerrero, Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Submiraxona (Submiraxona) stolli</i></th><td>Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Miraxona (Miraxona) expansipes</i></th><td>Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Miraxona (Miraxona) mexicana</i></th><td>Guerrero</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Miraxonides (Miraxonidella) similis</i></th><td>Nayarit, Veracruz</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Miraxona (Miraxonides) geronimoi</i></th><td>Nayarit</td><td>Stream</td><td>Cramer and Cook 1991</td></tr><tr><th><i>Stygalbiella mexicana</i></th><td>Mexico state</td><td>Spring</td><td>Cramer 1992</td></tr><tr><th><i>Neoaxona (?Lamellaxona) mexicana</i></th><td>Nayarit</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Woolastookia gretae</i></th><td>Nayarit</td><td>River, stream</td><td>Viets 1978 in Cook 1980</td></tr><tr><th><i>Forelia mesoamericana</i></th><td>Chiapas</td><td>Lagoon</td><td>Otero-Colina 1987b</td></tr><tr><th><b>Feltriidae</b></th></tr><tr><th><i>Feltria (Tropifeltria) neotropica</i></th><td>Chiapas</td><td>Waterfalls</td><td>Otero-Colina 1987b</td></tr><tr><th><i>Feltria (Feltriella) anahoffmannae</i></th><td>Mexico state</td><td>Mountain spring</td><td>Cramer 1986</td></tr><tr><th><b>Mideopsidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Mideopsis (Mideopsis) cartesa</i></th><td>Nayarit, Veracruz</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis (Mideopsides) beta</i></th><td>Chiapas</td><td>Gravel deposits of stream</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis (Mideopsis) magna</i></th><td>Veracruz, Morelos</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis (Neoxystonotus) nobilis</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis orbicularis</i></th><td>Yucatán</td><td>Cenote</td><td>Müller 1776</td></tr><tr><th><i>Mideopsis (Neoxystonotus) mexicana</i></th><td>Mexico state</td><td>Helocrene spring</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis (Neoxystonotus) gennada</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Mideopsis (Neoxystonotus) canzolla</i></th><td>Guerrero</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><b>Krendowskiidae</b></th><td></td><td></td><td></td></tr><tr><th><i>Krendowskia (Krendowskiella) azteca</i></th><td>Guerrero</td><td>Tributary river</td><td>Cook 1980</td></tr><tr><th><i>Krendowskia (Krendowskiella) moyara</i></th><td>Chiapas</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Krendowskia (Krendowskiella) trodroma</i></th><td>Veracruz, Nayarit</td><td>Stream</td><td>Cook 1980</td></tr><tr><th><i>Krendowskia (Krendowskiella) vicina</i></th><td>Tabasco</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><i>Geayia (Geayia) amacuzaca</i></th><td>Morelos</td><td>River</td><td>Cook 1980</td></tr><tr><th><i>Geayia (Geayia) mitchelli</i></th><td>Tabasco, Chiapas</td><td>Pond</td><td>Cook 1980</td></tr><tr><th><b>Arenohydracaridae</b></th><td></td><td></td><td></td></tr><tr><th><i>Arenohydracarus eremitus</i></th><td>*</td><td>*</td><td>Cook 1974</td></tr><tr><th><i>Arenohydracarus minimus</i></th><td>Oaxaca, Guerrero</td><td>Intertitial waters</td><td>Cook 1974</td></tr><tr><th><b>Chappuisididae</b></th></tr><tr><th><i>Chappuisides notialis</i></th><td>Mexico state</td><td>Spring</td><td>Cramer and Smith 1991</td></tr><tr><th><b>Hungarohydracaridae</b></th></tr><tr><th><i>Stygarrenurus armoniensis</i></th><td>Mexico state</td><td>Interstitial deposits of spring.</td><td>Cramer and Cook 1996</td></tr><tr><th><b>Neoacaridae</b></th></tr><tr><th><i>Neoacarus adocetus</i></th><td>Mexico state</td><td>Spring</td><td>Cramer and Smith 1991</td></tr></tbody></table>
SOIL-WATERGRIDS v1, mapping dynamic changes in soil moisture and depth of water table from 1970 to 2014, dataset and modelling
<p>SOIL-WATERGRIDS is a comprehensive data product of the monthly estimates of volumetric soil water content at three depths within the root zone and the depth of the water table globally gridded at a resolution of 0.25x025 degree per grid cell from 1970 to 2014. The SOIL-WATERGRIDS data product also provides the full-scale global model (BRTSim, https://sites.google.com/site/thebrtsimproject/home) that allows third party users to assess the entire volumetric soil water content and water table dynamics from land surface to 50 m depth. </p> <p>This package includes a Technical Documentation with the details about the use of the data product.</p>
Text-fig. 4. Location Map of the examined water vole localities. From Masini et al. (2007), modified. 1: Madrid, surroundings, 2: Graz, 3: Eisfeld, 4: Langen, 5: Delta Po, 6: Rovigo, 7: Ferrara, 8: Calabria, 9: Caverna degli Orsi, 10: Arma delle Manie, 11: Riparo Mochi, 12: Grotta di Castelcivita, 13: Grotta della Serratura, 14: Grotta del Romito, 15: Scario Grotta Grande, 16: Grotta di Cucigliana, 17: Upper Valdarno Campitello, 18: Riparo di Visogliano, 19: Isernia La Pineta, 20: Baume Gigny, 21: Baume Moula Guercy, 22: Grotte de L'Eglise, 23: Grotte-Abri Suard, 24: Grotte d'Artenac, 25: Pié Lombard, 26: Abri Vaufrey, 27: Grotte du Lazaret, 28: Abri Gaudry, 29: Pisede, 30: Euerwanger Bühl, 31: Kemathenhöhle, 32: Krockstein (Rübeland 1), 33: Burgtonna, 34: Parkhöhle (Weimar), 35: Stuttgart- Untertürkheim, 36: Taubach, 37: Ehringsdorf, 38: Plaidter-Hummerich, 39: Mosbach, 40: Petersbuch 1, 41: Bilzingsleben, 42: Miesenheim 1, 43: Voigtstedt, 44: Untermassfeld. See Table 1 for symbol explanations. in Independent Water Vole (Mimomys Savini, Arvicola: Rodentia, Mammalia) Lineages In Italy And Central Europe
Text-fig. 4. Location Map of the examined water vole localities. From Masini et al. (2007), modified. 1: Madrid, surroundings, 2: Graz, 3: Eisfeld, 4: Langen, 5: Delta Po, 6: Rovigo, 7: Ferrara, 8: Calabria, 9: Caverna degli Orsi, 10: Arma delle Manie, 11: Riparo Mochi, 12: Grotta di Castelcivita, 13: Grotta della Serratura, 14: Grotta del Romito, 15: Scario Grotta Grande, 16: Grotta di Cucigliana, 17: Upper Valdarno Campitello, 18: Riparo di Visogliano, 19: Isernia La Pineta, 20: Baume Gigny, 21: Baume Moula Guercy, 22: Grotte de L'Eglise, 23: Grotte-Abri Suard, 24: Grotte d'Artenac, 25: Pié Lombard, 26: Abri Vaufrey, 27: Grotte du Lazaret, 28: Abri Gaudry, 29: Pisede, 30: Euerwanger Bühl, 31: Kemathenhöhle, 32: Krockstein (Rübeland 1), 33: Burgtonna, 34: Parkhöhle (Weimar), 35: Stuttgart- Untertürkheim, 36: Taubach, 37: Ehringsdorf, 38: Plaidter-Hummerich, 39: Mosbach, 40: Petersbuch 1, 41: Bilzingsleben, 42: Miesenheim 1, 43: Voigtstedt, 44: Untermassfeld. See Table 1 for symbol explanations.
Sentinel-2 derived Sphagnum and herbaceous CI, GCC, NDVI, MSI, SL2P10 LAI, and hourly temperature, water table depth, PAR on the Bernadouze peatland from 2017 to 2021 and 2D scans LAI over 2021.
<p>This release contains data from field campaign over the Bernadouze Peatland and satellite sentinel-2 derived vegetation indices from 2017-01-01 to 2021-12-31.</p> <p>Sentinel-2 derived Sphagnum and herbaceous chlorophyll index, green chromatic coordinate, normalised difference index, moisture soil index retrived on google earth engine from 2017-01-01 to 2021-12-31 on the Bernadouze peatland.</p> <p>Sentinel-2 sphagnum and herbaceous leaf area index (m².m-²) computed with the SL2P10 algorithm from 2017-01-01 to 2021-12-31 thanks to google earth engine.</p> <p>Sphagnum leaf area index (m².m-²), measured with a 2D-scan (LI3100 Area Meter) over the 2021 season on the Bernadouze peatland.</p> <p>Reflectance over the 12 bands of Sentinel-2 on two areas of the Bernadouze peatland : one dominated by Sphagnum mosses and the other by herbaceous vegetation. Data related to an image acquired the 2021-07-21.</p> <p>Hourly air temperature (°C) and photosynthetically active radiations (umol.m-².s-1) derived from the S2M (SAFRAN–SURFEX, ISBA–Crocus–MEPRA) reanalysis chain on the Bernadouze peatland. Vertical resolution of 300m on the 'Couseran' massif.</p> <p>Hourly water table depth (m) from 10 piezometers (PZ1, ..., PZ10) over the Bernadouze peatland. Measured with 10 Orpheus Mini Water Level Logger, OTT HydroMet, Germany.</p> <p>Growth primary productivity of dominant peatland vegetation (umol.m-².s-1) calculated by the difference of measured net primary productivity and of measured ecosystem respiration flux under dark conditions. Measurements of GPP and ER are made with a soil chamber connected to a LI-COR LI-7810 analyser from 2017-01-01 to 2021-12-31 on the Bernadouze peatland.</p>
Supplemental Tables that will be submitted with Hydrothermal Seepage of Altered Crustal Formation Water Seaward of the Middle America Trench, Offshore Costa Rica
<p>This spreadsheet will be submitted to JGR Solid Earth with a manuscrpt titled "Hydrothermal Seepage of Altered Crustal Formation Water Seaward of the Middle America Trench, Offshore Costa Rica" by Parsons et al. Keywords include Ridge flank, hydrothermal, Middle American Trench, hydrogeology, formation water, and pore water. Three short highlights include:</p> <p>Pore water chemical profiles reveal sediment diagenesis and seepage speeds up to 1.7 cm yr<sup>-1</sup> resulting in a net flux of 0.1 L s<sup>-1</sup>.</p> <p>Crustal formation water is warm (~75ºC) and chemically altered, stemming from water-basalt reactions and diffusive exchange with pore water.</p> <p>This ridge-flank hydrothermal system is not hydrologically connected to the ventilated crust to the west or the trench to the east.</p>
Twenty years of Salix height in response to experimental manipulation of browsing and water table, northern range of Yellowstone National Park
<p>This respository contains multiple datasets collected during a 20 year investigation of the responses of willow (<em>Salix </em>spp.) communities in Yellowstone National Park after the restoration of large carnivores. The study sought to understand whether the restoration of wolves to the food web cause a change in the state of willow communities that occured while wolves were absent. Each dataset has a corresonding file of metadata. </p>
Twenty years of Salix height in response to experimental manipulation of browsing and water table, northern range of Yellowstone National Park
Open the record for dataset details and reuse information.
Stream stage and water table elevation in hyporheic and ground water from McRae Ck well network, Andrews Experimental Forest, 1989-1993
Measurements of stream stage of McRae Ck and water table heights from a network of shallow wells located adjacent to the stream. Data were collected from September 1989 to September 1992 on an irregular basis to sample both baseflow periods and storm events across seasons of the year. Stage height was read from staff plates permanently located at several location in the mainstem channel and in a small back channel; water table elevations were measured with a weighted measuring tape with a visible signal when the tape touched the water in the well.
Eight Mile Lake Research Watershed, Carbon in Permafrost Experimental Heating Research (CiPEHR): Seasonal water table depth data, 2009-2011.
The Carbon in Permafrost Experimental Heating Research (CiPEHR) project addresses the following questions: 1) Does ecosystem warming cause a net release of C from the ecosystem to the atmosphere?, 2) Does the decomposition of old C that comprises the bulk of the soil C pool influence ecosystem C loss?, and 3) How do winter and summer warming alone, and in combination, affect ecosystem C exchange? We are answering these questions using a combination of field and laboratory experiments to measure ecosystem carbon balance and radiocarbon isotope ratios at a warming experiment located in an upland tundra field site near Healy, Alaska in the foothills of the Alaska Range. This data set includes thaw depth and water table depth measurements collected from winter warming and control treatment plots at CiPEHR.
Warming effects of spring rainfall increase methane emissions from thawing permafrost: Site-level data from bog complex I - Water Table Depth 2014-2016
Methane emissions regulate the near-term global warming potential of permafrost thaw, particularly where loss of ice-rich permafrost converts forest and tundra into wetlands. Northern latitudes are expected to get warmer and wetter, and while there is consensus that warming will increase thaw and methane emissions, effects of increased precipitation are uncertain. At a thawing wetland complex in Interior Alaska, we found that interactions between rain and deep soil temperatures controlled methane emissions. In rainy years, recharge from the watershed rapidly altered wetland soil temperatures, warming the top ~80 cm of soil in spring and summer, and cooling it in autumn. When soils were warmed by spring rainfall, methane emissions increased by ~30%. The warm, deep soils early in the growing season likely supported both microbial and plant processes that enhanced emissions. Our study identifies an important and unconsidered role of rain in governing the radiative forcing of thawing permafrost landscapes. All site-level data from the studied bog, eddy covariance and micrometeorological data referenced in the published manuscript are available in the LTER data repository. These data are related to the following data package: Surface carbon, water and energy fluxes measured by eddy covariance at 3 sites within the Alaska Peatlands Experiment and Bonanza Creek Experimental Forest 2013-2016 (http://dx.doi.org/10.6073/pasta/4fabab3846113a1866b06f1b3d6d52a3).
Operational taxonomic unit (OTU) table characterizing water track and adjacent soil microbial communities in Taylor Valley, Antarctica during the 2012-13 austral summer
This data package includes the abundance of microbial operational taxonomic units (OTUs) for samples collected during the austral summer of 2012-2013 in the Lake Hoare and Goldman Glacier Basins of Taylor Valley, Antarctica. A total of twenty samples from on- and off-water track soils were collected and analyzed. Samples were collected from the Lake Hoare Basin on 27 December 2012 and from the Goldman Glacier Basin on 4 January 2013. The aim of the study was to identify how variation in the measured physical and chemical environment of water tracks within the two water track systems influenced soil microbial community structure and diversity. Soil bacterial biodiversity was assessed using cultivation independent 16S rRNA gene sequencing.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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