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zenodo28/100

Figure 8 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 8 - Acuclavella makah chelicerae and pedipalp. A right chelicera, retrolateral view B left chelicera, prolateral view C right pedipalp, retrolateral view (A–C, male CHR2457-0) D left chelicera, retrolateral view (female CHR2457-2).

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 4 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 4 - PCA bi-dimensional plot. PCA results of male data using a covariance matrix; plot of principle components 2 and 3.

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 3 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 3 - Bayesian gene trees with posterior probabilities: A COI B Wnt2 C EF-1α D 28S. All trees outgroup rooted (Appendix VII, Figure 1). RAxML concatenated phylogeny (Appendix VII, Figure 2) and gene trees (Appendix VII, Figures 3-5) are also available.

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 2 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 2 - Bayesian phylogram resulting from analysis of concatenated dataset. Numbers at nodes correspond to Bayesian posterior probabilities. The outgroup topology is shown at bottom. The inset picture is a female Acuclavella shoshone (sensu stricto) collected from the type locality (Shear 1986).

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 12 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 12 - Acuclavella quattuor chelicerae and pedipalp. Male CHR2146.5, A right chelicera, retrolateral view B left chelicera, prolateral view C right pedipalp, retrolateral view.

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 6 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 6 - Acuclavella leonardi chelicerae and pedipalp. A right chelicera, retrolateral view B left chelicera, prolateral view C right pedipalp, retrolateral view (A–C, male CASENT9039218) D left chelicera, retrolateral view (female CASENT9039224).

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 10 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 10 - Acuclavella sheari chelicerae and pedipalp. A right chelicera, retrolateral view B left chelicera, prolateral view C right pedipalp, retrolateral view (A–C, male CASENT9039217) D left chelicera, retrolateral view (female AMNH).

opencc-by-4.0Jun 2013View details →
zenodo28/100

Figure 1 from: Richart C, Hedin M (2013) Three new species in the harvestmen genus Acuclavella (Opiliones, Dyspnoi, Ischyropsalidoidea), including description of male Acuclavella quattuor Shear, 1986. ZooKeys 311: 19-68. https://doi.org/10.3897/zookeys.311.2920

Figure 1 - Distribution of Acuclavella. Black circles are localities where Acuclavella were specifically targeted, but not encountered. Black crosses indicate localities where general surveys of litter invertebrates (e.g., Opiliones, Diplopoda, terrestrial Gastropoda) were conducted and Acuclavella were not encountered. Blue lines point to labeled rivers. Type localities (T) from Shear (1986) are indicated with paddle icons; green paddle = Acuclavella shoshone. Type localities of species described in this work are indicated with inverted triangles. Image saved from Google Earth.

opencc-by-4.0Jun 2013View details →
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FIGURE 3 in First record of the genus Testudobracon Quicke, 1986 (Hymenoptera: Braconidae: Braconinae) in Vietnam, with description of four new species

FIGURE 3. Habitus of Testudobracon descensus Long, sp. nov., holotype, female (lateral)

opennotspecifiedFeb 2023View details →
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FIGURE 5 in First record of the genus Testudobracon Quicke, 1986 (Hymenoptera: Braconidae: Braconinae) in Vietnam, with description of four new species

FIGURE 5. Habitus of Testudobracon imitator Long, sp. nov., holotype, female (lateral)

opennotspecifiedFeb 2023View details →
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FIGURE 10 in First record of the genus Testudobracon Quicke, 1986 (Hymenoptera: Braconidae: Braconinae) in Vietnam, with description of four new species

FIGURE 10. Distribution map of Testudobracon species in Vietnam

opennotspecifiedFeb 2023View details →
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FIGURE 1 in First record of the genus Testudobracon Quicke, 1986 (Hymenoptera: Braconidae: Braconinae) in Vietnam, with description of four new species

FIGURE 1 Habitus of Testudobracon alius Long, sp. nov., holotype, female (lateral)

opennotspecifiedFeb 2023View details →
zenodo28/100

Figure 3 in The diet of the Early Cretaceous coelacanth †Axelrodichthys araripensis Maisey, 1986 (Actinistia: Mawsoniidae)

Figure 3. – †Axelrodichthys araripensis stomach contents (UERJ-PMB 143). A: Close-up of the boxed area in x (Fig. 2A), (transmitted natural light) showing the various scattered fossilized bones. (1: precaudal vertebra; 2: rib?; 3: neural or hemal spine: 4: teeth; 5: lepidotrichial hemisegments; 6: myorhabdos; 7: perichondral ossification). B: Close-up of the boxed area in y (Fig. 2A) (transmitted natural light) showing the digestive tract area. White arrows pointing to microcrustacean skeletons (My = myorhabdos). C: Close-up of the left area of Fig. 2A (transmitted polarized light) to emphasize the different granulometries between the "digestive tract" contents (wide granulations) and the surrounding soft tissue patch (thin granulations). White asterisk pointing to the section of the vertebra in the upper left corner. D: Section of a small crustacean in the fossil soft tissue patch. E: Section of small foraminifera in the fossil soft tissue patch. F: Close-up of the right hemal arch of the vertebra 1 (Fig. 2A). Two white arrowheads point to the enchondral ossification of the hemal arch. (Ce = vertebral centrum; My = myorhabdos). G: Hemisegments of lepidotrichia (5, Fig. 2A). H: Teeth (4, in Fig. 2A). The white arrowheads point to the black pigmentation that surround the digestive tract. Scale bars: A, B, C = 200 μm; D, E, F, G, H = 50 μm;

opencc-by-4.0Mar 2018View details →
edi28/100

National Weather Service data for North Inlet Estuary, South Carolina, from 1986 to 1992, North Inlet LTER

This data package consists of National Weather Service data for North Inlet Estuary, South Carolina, from 1986 to 1992, North Inlet LTER. It's purpose is to To develop a long-term climate record for the North Inlet Estuary LTER site; For short and long-term studies at North Inlet and for comparisons to other LTER and NWS sites.

openOpenJan 2020View details →
nasa28/100

NACP Biome-BGC Modeled Ecosystem Carbon Balance, Pacific Northwest, USA, 1986-2010

This data set provides Biome-BGC modeled estimates of carbon stocks and fluxes in the U.S. Pacific Northwest for the years 1986-2010. Fluxes include net ecosystem production (NEP), and net aboveground wood growth. Stocks include aboveground wood mass. Also present are mapped distributions of associated forest disturbances, distinguished by disturbance type (harvest, fire, pest/pathogen). The data are presented in a mapped form as well as in tabular summaries broken out by ownership and ecoregion. Maps of annual precipitation and temperature data are included for the years 1980-2010.

restrictednotspecifiedApr 2025View details →
nasa28/100

NACP NAFD Project: Forest Disturbance Intensity for CONUS from Landsat, 1986-2015

This dataset contains estimates of forest disturbance intensity for the conterminous United States from 1986 to 2015. It quantifies the severity/intensity of forest disturbances at 30 m resolution using time series Landsat observations and the vegetation change tracker algorithm. For each disturbance event mapped at a pixel location, the percentage of basal area removal (PBAR) after the disturbance event was estimated based on spectral changes derived from Landsat data and Random Forest models calibrated using field measurements collected by the US Forest Service Forest Inventory and Analysis (FIA) Program. This dataset complements and extends the North American Forest Dynamics-NASA Earth eXchange (NAFD-NEX) US Forest Disturbance History dataset and the NAFD-ATT Forest Canopy Cover Loss dataset from 1986-2010 to 1986-2015. Data are provided in Cloud Optimized GeoTIFF (*.tif) format.

restrictednotspecifiedApr 2025View details →
nasa28/100

LBA-ECO LC-10 Landsat TM Data for Legal Amazon: 1986-1994

This data set includes Landsat TM scenes from across the Legal Amazon region. A single image is provided for each spatial tile, representing the most cloud-free retrieval from 9/21/86 to 9/17/94. All files are in a single directory, including one band-sequential (bsq) file and one database (ddr) file for each scene.

restrictednotspecifiedApr 2025View details →
nasa28/100

NPP Grassland: Vindhyan, India, 1986-1989, R1

This data set contains four data files in text format (.txt). Three files provide above- and below-ground productivity data for three derived savannas on the Vindhyan plateau in northern India from 1986 to 1989, one file for each of three treatments. Each study site (Ranitali, Hathinala, Telburva) contains three treatment areas: ungrazed; grazed annually for 30-40 years; and grazed but temporarily fenced for 2-6 years prior to the study. The fourth file provides climate data from a weather station at Daltonganj, India, for the period 1893-1990. Monthly dynamics of above- and below-ground biomass were measured by harvest methods in each treatment area at each site for two annual cycles (1986/1987 and 1987/1988). Additional above-ground peak biomass data (live shoot + dead shoot) for October 1988 from ungrazed and grazed plots represent the 1988/1989 annual cycle.Annual above-ground net primary production (ANPP) was estimated using trough-peak analysis of increments in live biomass, standing dead matter, and litter. Annual below-ground production (BNPP) was estimated from biomass increments combined with root in-growth studies. Mean ANPP for the ungrazed treatment areas on the three sites ranged from 377 to 664 g/m2/yr over the 1986 to 1989 period. Mean BNPP in the same areas was estimated at 510 and 727 g/m2/yr for 1986/1987 and 1987/1988, respectively. Mean total ungrazed NPP (ANPP + BNPP) was estimated at 1,082 and 1,391 g/m2/yr for 1986/1987 and 1987/1988, respectively.Revision Notes: The NPP data for the temporarily fenced grassland sites for the 1987/1988 annual cycle have been revised to correct previously reported BNPP estimates. Please see the Data Set Revisions section of this document for detailed information.

restrictednotspecifiedApr 2025View details →
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NAFD-ATT Forest Canopy Cover Loss from Landsat, CONUS, 1986-2010

Characterizing the cause of forest canopy changes through time is fundamental to understanding current and future forest functions. A better understanding of forest dynamics can help build linkages between patterns and processes. The North American Forest Dynamics (NAFD) products provided in this dataset predict characteristics related to the cause of forest canopy cover losses for the conterminous United States (CONUS) derived from Landsat images for the period 1986-2010. The characteristics are summarized in four separate data layers. The first layer labels the type of change event (stable-no change, removals, fire, stress, wind, conversion, other), the second labels the year of the event, the third and fourth layers measure dominance and diversity, measures of qualitative confidence metrics derived from the model predictions. For each pixel the maps depict the greatest magnitude event occurring between 1986-2010.

restrictednotspecifiedApr 2025View details →
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ISLSCP II Earth Radiation Budget Experiment (ERBE) Monthly Albedo, 1986-1990

This data set, ISLSCP II Earth Radiation Budget Experiment (ERBE) Monthly Albedo, 1986-1990, contains both the original ERBE albedo data at 2.5 degree spatial resolution, and the International Land Surface Climatology Project Initative II (ISLSCP Initiative II) albedo product re-gridded to 1 degree resolution. The goals of the ERBE were (1) to understand the radiation balance between the Sun, Earth, atmosphere, and space and (2) to establish an accurate, long-term baseline data set for detection of climate changes. Earth Radiation Budget (ERB) data are fundamental to the development of realistic climate models and to the understanding of natural and anthropogenic perturbations of the climate system. As part of ERBE, measurements of broadband shortwave radiation reflected from the Earth-atmosphere system were obtained, from which top of atmosphere albedo values were calculated. In addition, values from scenes determined to be free of clouds were analyzed separately and clear-sky albedos were derived. For this study, only the clear-sky albedos are included. The ERBE data sets for ISLSCP Initiative II contain global, top of atmosphere, clear sky albedo data from January 1986 to February 1990.

restrictednotspecifiedApr 2025View details →

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dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
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openneuro
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Last verified 2026-04-29Open record