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IHME Raw Life Brazil's Life Tables Datasets
<p>Raw data sets for life tables in Brazil between 1950-2020, originally from the GHDx website.</p>
Data and code for: Nonlinear life table response analysis: Decomposing nonlinear and nonadditive population growth responses to changes in environmental drivers
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Figure 1 in Life table parameters of Tetranychus urticae (Trombidiformes: Tetranychidae) on four strawberry cultivars
Figure 1. Age-stage survival rate (Sxj) of Tetranychus urticae on four strawberry cultivars.
Life tables
<p>Data and R code to produce the tables, other ancillary data, and figures for the book chapter "Life tables".</p>
Figure 2 in Biology and life table parameters of Proprioseiopsis lindquisti on three eriophyid mites (Acari: Phytoseiidae: Eriophyidae)
Figure 2. Age-stage survival rate (Sxj) of Propriopseiosis lindquisti on three eriophyid mites.
Fig. 4 in Predation functional response and life table parameters of Orius sauteri (Hemiptera: Anthocoridae) feeding on Megalurothrips usitatus (Thysanoptera: Thripidae)
Fig. 4. Age-stage survival rate (sxj) of Orius sauteri on Megalurothrips usitatus at 26 °C.
Table 1 in Agistemus collyerae (Acari: Trombidiformes: Stigmaeidae) in South Africa: first record, introduction pathways and a re-description including additional life stages
<p><b>Table 1</b> Measurements of <i>Agistemus collyerae</i> collected from South Africa, and comparison with New Zealand female specimens. All measurements are lengths unless otherwise noted. Leg length was measured from coxa to tip of empodium. Measurements are given in μm. SA = South Africa; NZ = New Zealand.</p><table><tbody><tr><th></th><th>NZ female</th><th>SA female</th><th>SA male</th><th>SA deutonymphs</th></tr></tbody><tbody><tr><th></th><td>(n=6)</td><td>(n=8)</td><td>(n = 2)</td><td>(n=1)</td></tr><tr><th><b>BODY SIZE</b></th></tr><tr><th>Length (excl. gnathosoma)</th><td>224 – 298</td><td>234 – 262</td><td>193 – 201</td><td>188</td></tr><tr><th>Length (incl. gnathosoma)</th><td>323 – 416</td><td>335 – 379</td><td>308</td><td>277</td></tr><tr><th>Width (at level of c2)</th><td>171 – 242</td><td>172 – 207</td><td>156 – 160</td><td>137</td></tr><tr><th><b>GNATHOSOMA</b></th></tr><tr><th><i>m</i></th><td>21 – 25</td><td>18 – 23</td><td>20 – 23</td><td>18</td></tr><tr><th><i>n</i></th><td>23 – 27</td><td>18 – 27</td><td>18 – 19</td><td>19</td></tr><tr><th><i>or1</i></th><td>11 – 12</td><td>11 – 14</td><td>12 – 13</td><td>10</td></tr><tr><th><i>or2</i></th><td>11 – 12</td><td>10 – 14</td><td>10 – 14</td><td>9</td></tr><tr><th>Moveable cheliceral digit</th><td>31 – 36</td><td>36 – 39</td><td>35 – 40</td><td></td></tr><tr><th>Palp</th><td>72 – 80</td><td>71 – 85</td><td>86 – 89</td><td>63</td></tr><tr><th>Palp tibial claw</th><td>13 – 18</td><td>15 – 17</td><td>19 – 20</td><td>7</td></tr><tr><th><b>DORSUM</b></th></tr><tr><th>Eyes (diameter)</th><td></td><td>9 – 10</td><td></td><td>8</td></tr><tr><th>Post-ocular bodies (diameter)</th><td></td><td>6 – 8</td><td></td><td>7</td></tr><tr><th><i>ve</i></th><td>24 – 27</td><td>15 – 17</td><td>15 – 16</td><td>13</td></tr><tr><th><i>sci</i></th><td>30 – 39</td><td>21 – 28</td><td>23</td><td>19</td></tr><tr><th><i>sce</i></th><td>31 – 38</td><td>23 – 28</td><td>22 – 24</td><td>18</td></tr><tr><th><i>c1</i></th><td>24 – 31</td><td>20 – 26</td><td>15 – 17</td><td>15</td></tr><tr><th><i>c2</i></th><td>35 – 39</td><td>21 – 31</td><td>23 – 27</td><td>18</td></tr><tr><th><i>d1</i></th><td>30 – 37</td><td>20 – 25</td><td>17</td><td>17</td></tr><tr><th><i>d2</i></th><td>32 – 39</td><td>23 – 28</td><td>23 – 26</td><td>16</td></tr><tr><th><i>e1</i></th><td>42 – 46</td><td>29 – 34</td><td>12 – 13</td><td>22</td></tr><tr><th><i>e2</i></th><td>42 – 45</td><td>27 – 34</td><td>25 – 27</td><td>24</td></tr><tr><th><i>f</i></th><td>34 – 42</td><td>31 – 35</td><td>32 – 34</td><td>25</td></tr><tr><th><i>h1</i></th><td>38 – 43</td><td>34 – 39</td><td>13 – 14</td><td>26</td></tr><tr><th><i>h2</i></th><td>32 – 38</td><td>32 – 36</td><td>21 – 26</td><td>22</td></tr><tr><th><i>ve – ve</i></th><td>27 – 45</td><td>28 – 34</td><td>30 – 31</td><td>33</td></tr><tr><th><i>c1 – c1</i></th><td>36 – 43</td><td>26 – 36</td><td>34 – 40</td><td>26</td></tr><tr><th><i>d1 – d1</i></th><td>61 – 73</td><td>52 – 64</td><td>54 – 56</td><td>48</td></tr><tr><th><i>e1 – e1</i></th><td>33 – 34</td><td>24 – 34</td><td>27</td><td>22</td></tr><tr><th><i>f – f</i></th><td>65 – 80</td><td>58 – 65</td><td>38 – 42</td><td>44</td></tr><tr><th><i>h1 – h1</i></th><td>15 – 18</td><td>13 – 21</td><td>9</td><td>13</td></tr><tr><th><b>VENTER</b></th></tr><tr><th><i>g</i></th><td>35 – 39</td><td>27 – 37</td><td>-</td><td></td></tr><tr><th>Aedeagus</th><td>-</td><td>-</td><td>48 – 55</td><td>-</td></tr><tr><th><b>LEGS</b></th></tr><tr><th>Leg I</th><td>185 – 200</td><td>184 – 195</td><td>187 – 191</td><td>148</td></tr><tr><th>ωI</th><td>13 – 16</td><td>9 – 12</td><td>9 – 10</td><td>7</td></tr><tr><th>ωI♂</th><td>-</td><td>-</td><td>10 – 13</td><td>-</td></tr><tr><th>ϕI</th><td>10 – 14</td><td>8 – 11</td><td>9</td><td>5</td></tr><tr><th>leg II</th><td>166 – 189</td><td>168 – 188</td><td>169 – 174</td><td>138</td></tr><tr><th>ωII</th><td>10 – 13</td><td>6 – 10</td><td>9 – 11</td><td>5</td></tr><tr><th>ωII♂</th><td>-</td><td>-</td><td>11 – 13</td><td>-</td></tr><tr><th>ϕII</th><td>9 – 10</td><td>4 – 6</td><td>5 – 6</td><td>3</td></tr><tr><th>leg III</th><td>169 – 187</td><td>173 – 194</td><td>166 – 175</td><td>141</td></tr><tr><th>ωIII</th><td>8 – 10</td><td>5 – 6</td><td>5</td><td>3</td></tr><tr><th>ϕIII</th><td>7 – 10</td><td>3 – 5</td><td>4</td><td>2</td></tr><tr><th>leg IV</th><td>185 – 210</td><td>188 – 198</td><td>184 – 186</td><td>144</td></tr><tr><th>ωIV♂</th><td>-</td><td>-</td><td>5 – 6</td><td>-</td></tr></tbody></table>
Table 2 in Agistemus collyerae (Acari: Trombidiformes: Stigmaeidae) in South Africa: first record, introduction pathways and a re-description including additional life stages
<p><b>Table 2</b> <i>Agistemus collyerae</i> specimens detected on agricultural imports from other countries by South Africa.</p><table><tbody><tr><th><b>country</b></th><th><b>crop</b></th><th><b>commodity</b></th><th><b>import date(s)</b></th><th><b>specimens</b></th></tr></tbody><tbody><tr><th>Yemen</th><td>citrus (unspecified <i>Citrus sp</i>.)</td><td>budwood</td><td>Aug 1991</td><td>1 female</td></tr><tr><th>Australia</th><td>mandarin orange (<i>Citrus reticulata</i>) nectarine (<i>Prunus persica var. nucipersica</i>) peach (<i>Prunus persica)</i> citrus (unspecified <i>Citrus sp.</i>)</td><td>budwood budwood budwood budwood</td><td>Jan 2013 Feb 2007, Jan 2010, Feb 2010 Jan 2010, Mar 2013 Jan 2010</td><td>2 deutonymphs 5 females, 6 males 2 females, 1 male 3 females</td></tr><tr><th>Italy</th><td>olive (<i>Olea europaea</i>)</td><td>rooted cuttings</td><td>Oct 2007</td><td>Unable to locate specimen</td></tr><tr><th>Spain</th><td>apricot (<i>Prunus armeniaca</i>) grapes (<i>Vitis vinifera)</i></td><td>fresh fruit fresh fruit</td><td>Jun 2009 Oct 2015</td><td>1 female 1 female</td></tr><tr><th>Chile</th><td>grapevine (<i>Vitis vinifera)</i></td><td>budwood</td><td>Mar 2014</td><td>1 female</td></tr><tr><th>USA</th><td>nectarine (Prunus persica var. nucipersica) peach (<i>Prunus persica)</i> citrus (unspecified C <i>itrus sp.</i>)</td><td>budwood budwood budwood</td><td>Nov 2010 Nov 2011, Jan 2012, Nov 2012 May 2016</td><td>2 females 2 females, 1 male 1 female</td></tr><tr><th>France</th><td>nectarine (<i>Prunus persica var. nucipersica</i>)</td><td>budwood</td><td>Jan 2017</td><td>1 female</td></tr></tbody></table>
Table 1 in How long do dolphins live? Survival rates and life expectancies for bottlenose dolphins in zoological facilities ťs. wild populations
<p><i>Table 1.</i> Mean and median life expectancies (in years, with 95% confidence intervals) for bottlenose dolphins in zoological care as calculated by Kaplan-Meier analyses.</p><table><tbody><tr><th>Time period</th><th>Median LE (CI)</th><th>Mean LE (CI)</th></tr></tbody><tbody><tr><th>1974–1982</th><td>9.0 (5.9–11.4)</td><td>10.6 (8.8–12.5)</td></tr><tr><th>1983–1992</th><td>15.3 (12.5–17.1)</td><td>17.3 (15.2–19.4)</td></tr><tr><th>1993–2002</th><td>18.2 (14.1–20.3)</td><td>20.3 (18.0–22.5)</td></tr><tr><th>2003–2012</th><td>29.2 (25.0–32.9)</td><td>28.2 (25.3–31.0)</td></tr></tbody></table>
life table analysis
<p>Excel file contain raw data of colonization percentage (leaf, stem and root) by endophytic Beauvera bassiana at 7, 30 and 80 days past inoculation.</p> <p>Text file contain raw data of Diaphorina citri life table fed on endophytically colonized plants and endophyte-free plants, data is organized for the two-sex life table software</p>
Sublethal effects of Voliam Flexi on Spodoptera frugiperda (Lepidoptera: Noctuidae): Insights from Life Table Theory
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Data from: Life table invasion models: spatial progression and species-specific partitioning
Biological invasions are increasingly being considered important spatial processes that drive global changes, threatening biodiversity, regional economies, and ecosystem functions. A unifying conceptual model of the invasion dynamics could serve as a useful tool for comparison and classification of invasion processes involving different species across large geographic ranges. By dividing these geographic ranges that are subject to invasions into discrete spatial units we here conceptualize the invasion process as the transition from pristine to invaded spatial units. We use California cities as the spatial units and a long-term database of invasive tropical tephritids to characterize the invasion patterns. A new life-table method based on insect demography, including the progression model of invasion stage transition and the species-specific partitioning model of multispecies invasions, was developed to analyze the invasion patterns. The progression model allows us to estimate the probability and rate of transition, for individual cities, from pristine to infested stages and subsequently differentiate first year of detection from detection recurrences. Importantly, we show that the interval of invasive tephritid recurrence in a city declines with increasing invasion stages of the city. The species-specific partitioning model revealed profound difference in invasion outcome depending on which tephritid species was first detected (and then locally eradicated) in the early stage of invasion. Taken together, we discuss how these two life-table invasion models can cast new light on existing invasion concepts; in particular, on formulating invasion dynamics as the state transition of cities and partitioning species-specific role during multispecies invasions. These models provide a new set of tools for predicting the spatiotemporal progression of invasion and providing early warnings of recurrent invasions for efficient management.
Effects of Extrinsic Interactions on Fertility Life Table of Aphidius matricariae and Praon volucre on Myzus persicae
<p>Data is related to the manuscript Effects of Extrinsic Interactions on Fertility Life Table of Aphidius matricariae and Praon volucre on Myzus persicae</p>
Using retrospective life-tables to assess the effect of extreme climatic conditions on ungulate demography
<p>In Mediterranean areas, severe drought events are expected to intensify in forthcoming years as a consequence of climate change. These events may increase physiological and reproductive stress of wild populations producing demographic changes and distribution shifts.</p> <p>We used retrospective life tables to understand demographic changes on a wild population after severe drought events. We studied the impact of two extreme events (2003 and 2005) on the population dynamics of our model species, the red deer (<i>Cervus elaphus</i>). During both years, population density was high (40 and 36 ind/100 hectares, respectively). Thus, we reconstructed retrospectively the age-structure of the female part of the population for the period 2000-2010 by using data of known-age individuals culled during the period 2000 to 2019 (n = 4176). Also, based on previous studies results, we aimed to validate this methodology.</p> <p>Both extremely dry years, 2003 and 2005, produced marked and lasting cohort effects on population demography. Age pyramid the following years (2004 and 2006) revealed that the extreme drought caused the female fawn cohort to be similar or even smaller than the yearling cohort. Furthermore, these cohort effects were still perceptible 3 years after theses severe events. Results agree with previous findings that showed a negative effect of severe drought events on female pregnancy rates and conception dates.</p> <p>Although simple, this study provides an empirical quantification of the demographic effects of severe drought events for a wild population which might be useful to understand future demographic changes under the context of climate change.</p>
FIGURE 4 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 4: Population dynamics of O. afrasiaticus at 27°C on different supports collected at Segdoud oasis, South of Tunisia.
FIGURE 3 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 3: Survivorship curve (lX) and age-specific fecundity (mx) of O. afrasiaticus on six alimentary supports at 27°C.
FIGURE 1 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 1: Seasonal fluctuations of O. afrasiaticus densities on Deglet Noor pinnae and fruits and on sorghum leave, at Segdoud, South of Tunisia in 2004-2006.
FIGURE 2 in Effects Of Host Plants On Distribution, Abundance, Developmental Time And Life Table Parameters Of Oligonychus Afrasiaticus (Mcgregor) (Acari: Tetranychidae)
FIGURE 2: Densities of O. afrasiaticus motile stages, at Segdoud, South of Tunisia, (A) 2006 (B) 2007, on date varieties 'Deglet Noor', 'Alig', 'Bessr', and 'Kentichi'.
TABLE 2 in Eight legs, two wings, one life for scientific research-celebrating the 80 birthday of Prof. Dr Jochen Martens
<p><b>TABLE 2:</b> List of taxa described by Jochen Martens until now (in alphabetical order within higher taxa; genera underlined, families double underlined; with total numbers in square brackets). Total: 2 families, 29 genera, 296 species, 1 subspecies (= 328 taxa).</p><table><tbody><tr><th><b>ARACHNIDA</b></th><th><i>Draconarius subrotundus</i> Wang & Martens 2009</th></tr></tbody><tbody><tr><th><b>Acari [19 species]</b></th><td><i>Draconarius taplejungensis</i> Wang & Martens 2009</td></tr><tr><th><i>Carinogalumna alineata</i> Ermilov & Martens 2014</th><td><i>Draconarius testudinatus</i> Wang & Martens 2009</td></tr><tr><th><i>Eremaeus anichkini</i> Ermilov & Martens 2014</th><td><i>Draconarius tinjuraensis</i> Wang & Martens 2009</td></tr><tr><th><i>Galumna tetraporosa</i> Ermilov, Martens & Tolstikov 2014</th><td><i>Draconarius tritos</i> Wang & Martens 2009</td></tr><tr><th><i>Ghilarovizetes longiporosus</i> Ermilov & Martens 2014</th><td><i>Draconarius volutobursarius</i> Wang & Martens 2009</td></tr><tr><th><i>Lasiobelba daamsae</i> Ermilov, Shtanchaeva, Subias &</th><td><i>Ozyptila lutosa</i> Ono & Martens 2005</td></tr><tr><th>Martens 2014</th><td><i>Ozyptila makidica</i> Ono & Martens 2005</td></tr><tr><th><i>Lasiobelba nepalica</i> Ermilov, Shtanchaeva, Subias &</th><td><i>Xysticus logunovi</i> Ono & Martens 2005</td></tr><tr><th>Martens 2014</th><td><i>Xysticus marusiki</i> Ono & Martens 2005</td></tr><tr><th><i>Lepidozetes acutirostrum</i> Ermilov, Martens & Tolstikov 2013</th><td><i>Xysticus pieperi</i> Ono & Martens 2005</td></tr><tr><th><i>Metapyroppia gigantea</i> Ermilov & Martens 2014</th><td></td></tr><tr><th><i>Neoribates parabulanovae</i> Ermilov & Martens 2014</th><td><b>Opiliones [262 taxa: 231 species, 29 genera, 2 families]</b></td></tr><tr><th><i>Neoribates paramacrosacculatus</i> Ermilov & Martens 2014</th><td><i>“Genus” enigmaticus</i> Martens 1969</td></tr><tr><th><i>Neoribates pararotundus</i> Ermilov & Martens 2014</th><td><i>“Metassamia”</i> <i>nepalica</i> Martens 1977</td></tr><tr><th><i>Oribatella paraumaetluisorum</i> Ermilov & Martens 2014</th><td><i>Amilenus</i> Martens 1969</td></tr><tr><th><i>Pergalumna minituberculata</i> Ermilov & Martens 2014</th><td><i>Anelasmocephalus balearicus</i> Martens & Chemini 1988</td></tr><tr><th><i>Perscheloribates nepalensis</i> Ermilov & Martens 2014</th><td><i>Anelasmocephalus brignolii</i> Martens & Chemini 1988</td></tr><tr><th><i>Scutozetes clavatosensillus</i> Ermilov, Martens & Tolstikov</th><td><i>Anelasmocephalus calcaneatus</i> Martens & Chemini 1988</td></tr><tr><th>2013</th><td><i>Anelasmocephalus hadzii</i> Martens 1978</td></tr><tr><th><i>Taiwanoppia nepalica</i> Ermilov & Martens 2014</th><td><i>Anelasmocephalus osellai</i> Martens & Chemini 1988</td></tr><tr><th><i>Taiwanoppia paranepalica</i> Ermilov & Martens 2014</th><td><i>Anelasmocephalus pyrenaicus</i> Martens 1978</td></tr><tr><th><i>Uracrobates truncatus</i> Ermilov & Martens 2015</th><td><i>Anelasmocephalus tenuiglandis</i> Martens & Chemini 1988</td></tr><tr><th><i>Vilhenabates schawalleri</i> Ermilov & Martens 2014</th><td><i>Anelasmocephalus tuscus</i> Martens & Chemini 1988</td></tr><tr><th><i>Asiolasma</i> Martens 2019</th></tr><tr><th><b>Araneae [40 species]</b></th><td><i>Asiolasma billsheari</i> Martens 2019</td></tr><tr><th><i>Draconarius beloniforis</i> Wang & Martens 2009</th><td><i>Asiolasma juergengruberi</i> Martens 2019</td></tr><tr><th><i>Draconarius bifarius</i> Wang & Martens 2009</th><td><i>Asiolasma schwendingeri</i> Martens 2019</td></tr><tr><th><i>Draconarius brevicarenos</i> Wang & Martens 2009</th><td><i>Assaphalla</i> Martens 1977</td></tr><tr><th><i>Draconarius capitellus</i> Wang & Martens 2009</th><td><i>Assaphalla peralata</i> Martens 1977</td></tr><tr><th><i>Draconarius communis</i> Wang & Martens 2009</th><td><i>Ausobskya</i> Martens 1972</td></tr><tr><th><i>Draconarius condocephalus</i> Wang & Martens 2009</th><td><i>Ausobskya athos</i> Martens 1972</td></tr><tr><th><i>Draconarius confusus</i> Wang & Martens 2009</th><td><i>Biantes annapurnae</i> Martens 1978</td></tr><tr><th><i>Draconarius contiguus</i> Wang & Martens 2009</th><td><i>Biantes brevis</i> Martens 1978</td></tr><tr><th><i>Draconarius cylindratus</i> Wang & Martens 2009</th><td><i>Biantes calyptroideus</i> Gong, Martens & Zhang 2020</td></tr><tr><th><i>Draconarius dapaensis</i> Wang & Martens 2009</th><td><i>Biantes dilatatus</i> Martens 1978</td></tr><tr><th><i>Draconarius distinctus</i> Wang & Martens 2009</th><td><i>Biantes gandaki</i> Martens 1978</td></tr><tr><th><i>Draconarius dorsicephalus</i> Wang & Martens 2009</th><td><i>Biantes gandakoides</i> Martens 1978</td></tr><tr><th><i>Draconarius gorkhaensis</i> Wang & Martens 2009</th><td><i>Biantes ganesh</i> Martens 1978</td></tr><tr><th><i>Draconarius latiforus</i> Wang & Martens 2009</th><td><i>Biantes godavari</i> Martens 1978</td></tr><tr><th><i>Draconarius meganiger</i> Wang & Martens 2009</th><td><i>Biantes gurung</i> Martens 1978</td></tr><tr><th><i>Draconarius microcoelotes</i> Wang & Martens 2009</th><td><i>Biantes jirel</i> Martens 1978</td></tr><tr><th><i>Draconarius panchtharensis</i> Wang & Martens 2009</th><td><i>Biantes kathmandicus</i> Martens 1978</td></tr><tr><th><i>Draconarius paraepisomos</i> Wang & Martens 2009</th><td><i>Biantes magar</i> Martens 1978</td></tr><tr><th><i>Draconarius phulchokiensis</i> Wang & Martens 2009</th><td><i>Biantes newar</i> Martens 1978</td></tr><tr><th><i>Draconarius pseudogurkha</i> Wang & Martens 2009</th><td><i>Biantes pernepalicus</i> Martens 1978</td></tr><tr><th><i>Draconarius pseudomeganiger</i> Wang & Martens 2009</th><td><i>Biantes rarensis</i> Martens 1978</td></tr><tr><th><i>Draconarius sacculus</i> Wang & Martens 2009</th><td><i>Biantes sherpa</i> Martens 1978</td></tr><tr><th><i>Draconarius schawalleri</i> Wang & Martens 2009</th><td><i>Biantes simplex</i> Martens 1978</td></tr><tr><th><i>Draconarius semicirculus</i> Wang & Martens 2009</th><td><i>Biantes spatulatus</i> Gong, Martens & Zhang 2020</td></tr><tr><th><i>Draconarius seorsus</i> Wang & Martens 2009</th><td><i>Biantes thakkhali</i> Martens 1978</td></tr><tr><th><i>Draconarius simplicifolis</i> Wang & Martens 2009</th><td><i>Biantes thamang</i> Martens 1978</td></tr><tr><th><i>Draconarius spinosus</i> Wang & Martens 2009</th><td><i>Biantoncopus</i> Martens & Schwendinger 1998</td></tr><tr><th><i>Draconarius subconfusus</i> Wang & Martens 2009</th><td><i>Biantoncopus fuscus</i> Martens & Schwendinger 1998</td></tr><tr><th><i>Draconarius subepisomos</i> Wang & Martens 2009</th><td><i>Brasiliogovea</i> Martens 1969</td></tr><tr><th><i>Brasiliogovea microphaga</i> Martens 1969</th><td><i>Graecophalangium cretaeum</i> Martens 1966</td></tr><tr><th><i>Caenoncopus</i> Martens & Schwendinger 1998</th><td><i>Granulosoma</i> Martens 1973</td></tr><tr><th><i>Caenoncopus affinis</i> Martens & Schwendinger 1998</th><td><i>Granulosoma dissimile</i> Martens 2018</td></tr><tr><th><i>Caenoncopus tenuis</i> Martens & Schwendinger 1998</th><td><i>Granulosoma umidulum</i> Martens 1973</td></tr><tr><th><i>Caucnemastoma</i> Martens 2006</th><td><i>Gyoides</i> Martens 1982</td></tr><tr><th><i>Caucnemastoma golovatchi</i> Martens 2006</th><td><i>Gyoides gandaki</i> Martens 1982</td></tr><tr><th><i>Centetostoma juberthiei</i> Martens 2011</th><td><i>Gyoides geometricus</i> Martens 1982</td></tr><tr><th><i>Dhaulagirius</i> Martens 1977</th><td><i>Gyoides himaldispersus</i> Martens 1982</td></tr><tr><th><i>Dhaulagirius altitudinalis</i> Martens 1977</th><td><i>Gyoides maximus</i> Martens 1982</td></tr><tr><th><i>Euepedanus dashdamirovi</i> Zhang & Martens 2020</th><td><i>Gyoides rivorum</i> Martens 1982</td></tr><tr><th>Fissiphaliidae Martens 1988</th><td><i>Gyoides tibiouncinatus</i> Martens 1982</td></tr><tr><th><i>Fissiphallius</i> Martens 1988</th><td><i>Harmanda arunensis</i> Martens 1987</td></tr><tr><th><i>Fissiphallius spinulatus</i> Martens 1988</th><td><i>Harmanda beroni</i> Martens 1987</td></tr><tr><th><i>Fissiphallius sturmi</i> Martens 1988</th><td><i>Harmanda corrugata</i> Martens 1987</td></tr><tr><th><i>Fissiphallius sympatricus</i> Martens 1988</th><td><i>Harmanda instructa bhutanensis</i> Martens 1987</td></tr><tr><th><i>Gagrella annapurnica</i> Martens 1987</th><td><i>Harmanda instructa lineatocoxa</i> Martens 1987</td></tr><tr><th><i>Gagrella franzi</i> Martens 1987</th><td><i>Harmanda khumbua</i> Martens 1987</td></tr><tr><th><i>Gagrella tinjurae</i> Martens 1987</th><td><i>Harmanda latephippiata</i> Martens 1987</td></tr><tr><th><i>Giljarovia thoracocornuta</i> Martens 2006</th><td><i>Harmanda medioimmicans</i> Martens 1987</td></tr><tr><th><i>Giljarovia triangula</i> Martens 2006</th><td><i>Harmanda nigrolineata</i> Martens 1987</td></tr><tr><th><i>Giljarovia trianguloides</i> Martens 2006</th><td><i>Harmanda periscopos</i> Martens 2018</td></tr><tr><th><i>Giljarovia vestita</i> Martens 2006</th><td><i>Himaldroma</i> Martens 1987</td></tr><tr><th><i>Globulosoma</i> Martens 1987</th><td><i>Himaldroma altus</i> Martens 1987</td></tr><tr><th><i>Globulosoma gandakense</i> Martens 1987</th><td><i>Himaldroma pineti</i> Martens 1987</td></tr><tr><th><i>Globulosoma montivaga</i> Martens 1987</th><td><i>Himalphalangium</i> Martens 1973</td></tr><tr><th><i>Gnomulus annamiticus</i> Schwendinger & Martens 2006</th><td><i>Himalphalangium curvatum</i> Martens 2018</td></tr><tr><th><i>Gnomulus asli</i> Martens & Schwendinger 1998</th><td><i>Himalphalangium dolpoense</i> Martens 1973</td></tr><tr><th><i>Gnomulus bedoharvengorum</i> Schwendinger & Martens 2006</th><td><i>Himalphalangium suzukii</i> Martens 1973</td></tr><tr><th><i>Gnomulus carinatus</i> Schwendinger & Martens 2002</th><td><i>Himalphalanglum</i> <i>unistriatum</i> Martens 1973</td></tr><tr><th><i>Gnomulus claviger</i> Schwendinger & Martens 2002</th><td><i>Himalzaleptus</i> Martens 1987</td></tr><tr><th><i>Gnomulus coniceps</i> Martens & Schwendinger 1998</th><td><i>Himalzaleptus quinqueconicus</i> Martens 1987</td></tr><tr><th><i>Gnomulus crassipes</i> Schwendinger & Martens 2002</th><td><i>Holoscotolemon lessiniense</i> Martens 1978</td></tr><tr><th><i>Gnomulus crucifer</i> Martens & Schwendinger 1998</th><td><i>Holoscotolemon oreophilum</i> Martens 1978</td></tr><tr><th><i>Gnomulus dalat</i> Schwendinger & Martens 2006</th><td><i>Ischyropsalis alpinula</i> Martens 1978</td></tr><tr><th><i>Gnomulus exsudans</i> Schwendinger & Martens 2002</th><td><i>Ischyropsalis lithoclasica</i> Schönhofer & Martens 2010</td></tr><tr><th><i>Gnomulus hamatus</i> Schwendinger & Martens 2002</th><td><i>Kalliste pavonum</i> Martens 2018</td></tr><tr><th><i>Gnomulus hirsutus</i> Martens & Schwendinger 1998</th><td><i>Leiobunum apenninicum</i> (Martens 1969)</td></tr><tr><th><i>Gnomulus hutan</i> Schwendinger & Martens 2002</th><td><i>Leytpodoctis</i> Martens 1993</td></tr><tr><th><i>Gnomulus javanicus</i> Schwendinger & Martens 2002</th><td><i>Leytpodoctis oviger</i> Martens 1993</td></tr><tr><th><i>Gnomulus laruticus</i> Martens & Schwendinger 1998</th><td><i>Mediostoma armatum</i> Martens 2006</td></tr><tr><th><i>Gnomulus latoperculum</i> Schwendinger & Martens 2002</th><td><i>Mediostoma nigrum</i> Martens 2006</td></tr><tr><th><i>Gnomulus lemniscatus</i> Schwendinger & Martens 2006</th><td><i>Mediostoma variabile</i> Martens 2006</td></tr><tr><th><i>Gnomulus leofeae</i> Schwendinger & Martens 2002</th><td><i>Megabunus vignai</i> Martens 1978</td></tr><tr><th><i>Gnomulus leyteensis</i> Martens & Schwendinger 1998</th><td><i>Metagovea oviformis</i> Martens 1969</td></tr><tr><th><i>Gnomulus lomani</i> Schwendinger & Martens 2002</th><td><i>Metaplatybunus petrophilus</i> Martens 1965</td></tr><tr><th><i>Gnomulus maculatus</i> Martens & Schwendinger 1998</th><td><i>Metaverpulus bhutanicus</i> Martens 1987</td></tr><tr><th><i>Gnomulus marginatus</i> Schwendinger & Martens 2002</th><td><i>Metaverpulus kanchensis</i> Martens 1987</td></tr><tr><th><i>Gnomulus matabesar</i> Schwendinger & Martens 2002</th><td><i>Metaverpulus multidentatus</i> Martens 2015</td></tr><tr><th><i>Gnomulus monticola</i> Schwendinger & Martens 2002</th><td><i>Metaverpulus persimilis</i> Martens 1987</td></tr><tr><th><i>Gnomulus obscurus</i> Schwendinger & Martens 2002</th><td><i>Micrassamula</i> Martens 1977</td></tr><tr><th><i>Gnomulus pilosus</i> Schwendinger & Martens 2002</th><td><i>Micrassamula jumlensis</i> Martens 1977</td></tr><tr><th><i>Gnomulus rostratoideus</i> Schwendinger & Martens 2002</th><td><i>Micrassamula thak</i> Martens 1977</td></tr><tr><th><i>Gnomulus ryssie</i> Schwendinger & Martens 2002</th><td><i>Nelima adelheidiana</i> Martens 1965</td></tr><tr><th><i>Gnomulus saetosus</i> Schwendinger & Martens 2006</th><td><i>Nelima hispana</i> Martens 1969</td></tr><tr><th><i>Gnomulus sinensis</i> Schwendinger & Martens 2002</th><td><i>Nelima ponticoides</i> Martens 1969</td></tr><tr><th><i>Gnomulus spiniceps</i> Schwendinger & Martens 2002</th><td><i>Nelima recurvipenis</i> Martens 1969</td></tr><tr><th><i>Gnomulus tuberculatus</i> Schwendinger & Martens 2002</th><td><i>Nemaspela femorecurvata</i> Martens 2006</td></tr><tr><th><i>Gnomulus tumidifrons</i> Schwendinger & Martens 2002</th><td><i>Nemastoma bidentatum relictum</i> Gruber & Martens 1968</td></tr><tr><th><i>Nemastoma bidentatum sparsum</i> Gruber & Martens 1968</th><td><i>Sabacon picosantrum</i> Martens 1983</td></tr><tr><th><i>Nemastoma schuelleri</i> Gruber & Martens 1968</th><td><i>Sabacon relictoides</i> Martens 2015</td></tr><tr><th><i>Nemastoma transsylvanicum</i> Gruber & Martens 1968</th><td><i>Sabacon relictus</i> Martens 1972</td></tr><tr><th><i>Nepalgrella</i> Martens 1987</th><td><i>Sabacon rossopacificus</i> Martens 2015</td></tr><tr><th><i>Nepalgrella kortaliensis</i> Martens 1987</th><td><i>Sabacon rupinala</i> Martens 2015</td></tr><tr><th><i>Nepalgrella yamputhini</i> Martens 1987</th><td><i>Sabacon schawalleri</i> Martens 2015</td></tr><tr><th><i>Nepalkanchia</i> Martens 1990</th><td><i>Sabacon sergeidedicatus</i> Martens 1989</td></tr><tr><th><i>Nepalkanchia pluviosilvestris</i> (Martens 1987)</th><td><i>Sabacon simbuakhola</i> Martens 2015</td></tr><tr><th><i>Nepalkanchia silvicola</i> (Martens 1987)</th><td><i>Sabacon sineglandula</i> Martens 2015</td></tr><tr><th><i>Nepalsia</i> Martens 1977</th><td><i>Sabacon suzukii</i> Zhao, Martens & Zhang 2018</td></tr><tr><th><i>Nepalsia betula</i> Martens 1977</th><td><i>Sabacon thakkolanus</i> Martens 2015</td></tr><tr><th><i>Nepalsia picea</i> Martens 1977</th><td><i>Sabacon unicornis</i> Martens 1972</td></tr><tr><th><i>Nepalsia rhododendron</i> Martens 1977</th><td><i>Sabacon viscayanus ramblaianus</i> Martens 1983</td></tr><tr><th><i>Nepalsioides</i> Martens 1977</th><td><i>Saccarella schilleri</i> Schönhofer & Martens 2012</td></tr><tr><th><i>Nepalsioides angusta</i> Martens 1977</th><td><i>Sandokan expatriatus</i> (Schwendinger & Martens 2004)</td></tr><tr><th><i>Nepalsioides thodunga</i> Martens 1977</th><td><i>Sandokan lingga</i> (Schwendinger & Martens 2004)</td></tr><tr><th><i>Nipponopsalis</i> Martens & Suzuki 1966</th><td><i>Sandokan malayanus</i> (Schwendinger & Martens 2004)</td></tr><tr><th><i>Opilio himalincola</i> Martens 1973</th><td><i>Sandokan tiomanensis</i> (Schwendinger & Martens 2004)</td></tr><tr><th><i>Palaeoncopus</i> Martens & Schwendinger 1998</th><td><i>Sericicorpus</i> Martens 1987</td></tr><tr><th><i>Palaeoncopus gunung</i> Martens & Schwendinger 1998</th><td><i>Sericicorpus nigrum</i> Martens 1987</td></tr><tr><th><i>Palaeoncopus katik</i> Martens & Schwendinger 1998</th><td><i>Sinostoma</i> Martens 2016</td></tr><tr><th><i>Palaeoncopus kerdil</i> Martens & Schwendinger 1998</th><td><i>Sinostoma yunnanicum</i> Martens 2016</td></tr><tr><th><i>Paranemastoma iranicum</i> Martens 2006</th><td><i>Starengovia ivanloebli</i> Martens 2017</td></tr><tr><th><i>Pashokia maxima</i> Martens 1977</th><td><i>Starengovia quadrituberculata</i> Zhang & Martens 2018</td></tr><tr><th><i>Pashokia mutatrix</i> Martens 1977</th><td>Suthepiidae Martens 2020</td></tr><tr><th><i>Pashokia silhavyi</i> Martens 1977</th><td><i>Suthepia</i> Martens 2020</td></tr><tr><th><i>Pelitnus hyatti</i> Martens 1977</th><td><i>Suthepia inermis</i> Martens 2020</td></tr><tr><th><i>Platybunus alpinorelictus</i> Martens 1978</th><td><i>Thunbergiae</i> <i>gretae</i> Martens 2020</td></tr><tr><th><i>Plistobunus jaegeri</i> Zhang & Martens 2020</th><td><i>Toccolus kuryi</i> Zhang & Martens 2020</td></tr><tr><th><i>Pokhara kathmandica</i> Martens 1978</th><td><i>Trogulus balearicus</i> Schönhofer & Martens 2008</td></tr><tr><th><i>Pokhara minuta</i> Martens 1977</th><td><i>Trogulus cisalpinus</i> Chemini & Martens 1988</td></tr><tr><th><i>Pokhara occidentalis</i> Martens 1987</th><td><i>Trogulus huberi</i> Schönhofer & Martens 2008</td></tr><tr><th><i>Pokhara quadriconica</i> Martens 1987</th><td><i>Trogulus karamanorum</i> Schönhofer & Martens 2009</td></tr><tr><th><i>Pokhara trisulensis</i> Martens 1987</th><td><i>Trogulus megaligrava</i> Schönhofer, Karaman & Martens 2013</td></tr><tr><th><i>Pokhara uenoi</i> Martens 1987</th><td><i>Trogulus melitensis</i> Schönhofer & Martens 2009</td></tr><tr><th><i>Propygoplus siwalik</i> Martens 1977</th><td><i>Trogulus ozimeci</i> Schönhofer, Karaman & Martens 2013</td></tr><tr><th><i>Pseudastrobunus</i> Martens 1973</th><td><i>Trogulus pharensis</i> Schönhofer & Martens 2009</td></tr><tr><th><i>Pseudastrobunus perpusillus</i> Martens 1973</th><td><i>Trogulus prietoi</i> Schönhofer & Martens 2008</td></tr><tr><th><i>Rongsharia dhaulagirica</i> Martens 1982</th><td><i>Trogulus pyrenaicus</i> Schönhofer & Martens 2008</td></tr><tr><th><i>Rongsharia dispersa</i> Martens 1982</th><td><i>Trogulus tenuitarsus</i> Schönhofer, Karaman & Martens 2013</td></tr><tr><th><i>Sabacon aigoual</i> Martens 2015</th><td><i>Trogulus thaleri</i> Schönhofer & Martens 2009</td></tr><tr><th><i>Sabacon altomontanus</i> Martens 1983</th><td><i>Vestiferum</i> Martens 2006</td></tr><tr><th><i>Sabacon beatae</i> Martens 2015</th><td><i>Vestiferum alatum</i> Martens 2006</td></tr><tr><th><i>Sabacon beishanensis</i> Martens 2015</th><td><i>Xerogrella</i> Martens 1987</td></tr><tr><th><i>Sabacon chomolongmae</i> Martens 1972</th><td><i>Xerogrella dolpensis</i> Martens 1987</td></tr><tr><th><i>Sabacon dhaulagiri</i> Martens 1972</th><td><i>Zaleptiolus ater</i> Martens 1987</td></tr><tr><th><i>Sabacon jaegeri</i> Martens 2015</th></tr><tr><th><i>Sabacon jiriensis</i> Martens 1972</th></tr><tr><th><i>Sabacon kangding</i> Martens 2015</th><td><b>AVES [6 species, 1 subspecies]</b></td></tr><tr><th><i>Sabacon maipokhari</i> Martens 2015</th><td><i>Pnoepyga immaculata</i> Martens & Eck 1991</td></tr><tr><th><i>Sabacon minshanensis</i> Martens 2015</th><td><i>Seicercus omeiensis</i> Martens, Eck, Päckert & Sun 1999</td></tr><tr><th><i>Sabacon minutissimus</i> Martens 2015</th><td><i>Regulus regulus ellenthalerae</i> Päckert, Dietzen, Martens,</td></tr><tr><th><i>Sabacon monacanthus</i> Zhao, Martens & Zhang 2018</th><td>Wink & Kvist 2006</td></tr><tr><th><i>Sabacon multiserratus</i> Martens 2015</th><td><i>Periparus ater eckodedicatus</i> Martens, Tietze & Sun 2006</td></tr><tr><th><i>Sabacon nishikawai</i> Martens 2015</th><td><i>Phylloscopus occisinensis</i> Martens, Sun & Päckert 2008</td></tr><tr><th><i>Sabacon palpogranulatus</i> Martens 1972</th><td><i>Phylloscopus affinis perflavus</i> Martens, Sun & Päckert 2008</td></tr><tr><th><i>Sabacon pauperoserratus</i> Martens 2015</th><td><i>Emberiza cia flemingorum</i> Martens 1972</td></tr><tr><th><i>Sabacon petarberoni</i> Martens 2015</th></tr></tbody></table>
Supplementary tables in article entitled "Global, regional, and national trends in disability adjusted life years of musculoskeletal disorders in different sexes and ages, 1990-2019"
<p>Table S1. The DALYs and ASDR of musculoskeletal disorders in 1990 and 2019 at national level, by sex and age group.</p> <p>Table S3. The DALYs and ASDR of musculoskeletal disorders in 1990 and 2019 at global and regional level, by sex, age group and cause.</p> <p>Table S4. The DALYs and ASDR of musculoskeletal disorders in 1990 and 2019 at national level, by sex, age group and cause.</p>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.