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zenodo32/100

ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Aqua (2006_136-151)

<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p>This dataset is ELITE surface longwave upward radiation (SLUR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</p> <p>This is the ELITE SLUR product in 2006 (DOY: 136-151). Please <a href="../records/10901630"><em><strong>click here</strong></em></a> to download the ELITE SLUR product in 2006 (DOY: 152-166).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2006-5-16 ~ 2006-5-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p><strong>Citation</strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., &amp; Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</li> </ol> <p>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</p>

opencc-zeroMar 2024View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Terra (2006_136-151)

<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p>This dataset is ELITE surface longwave downward radiation (SLDR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</p> <p>This is the ELITE SLDR product in 2006 (DOY: 136-151). Please <a href="../records/10875590"><em><strong>click here</strong></em></a> to download the ELITE SLDR product in 2006 (DOY: 152-166).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2006-5-16 ~ 2006-5-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p><strong>Citation</strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng J, Liang S. Global estimates for high-spatial-resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(7): 4115-4129.</li> <li>Cheng J, Liang S, Wang W, et al. An efficient hybrid method for estimating clear‐sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 2017, 122(5): 2616-2630.</li> <li>Yang F, Cheng J. A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 2020, 248: 111972.</li> </ol> <p>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</p>

opencc-zeroMar 2024View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Terra (2006_136-151)

<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p>This dataset is ELITE surface longwave upward radiation (SLUR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</p> <p>This is the ELITE SLUR product in 2006 (DOY: 136-151). Please <a href="../records/10895587"><em><strong>click here</strong></em></a> to download the ELITE SLUR product in 2006 (DOY: 152-166).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2006-5-16 ~ 2006-5-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p><strong>Citation</strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., &amp; Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</li> </ol> <p>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</p>

opencc-zeroMar 2024View details →
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ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Terra (2011_136-151)

<p><span>The <strong><span>E</span></strong>ssential therma<strong><span>l</span></strong> <strong><span>I</span></strong>nfrared remo<strong><span>T</span></strong>e s<strong><span>E</span></strong>nsing (<strong><span>ELITE</span></strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (</span><span><a href="https://elite.bnu.edu.cn/"><span>https://elite.bnu.edu.cn</span></a></span><span>).</span></p> <p><span>This dataset is ELITE <span>surface longwave downward radiation (SLDR)</span> product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed <span>by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</span></span></p> <p><span>This is the ELITE SLDR product in 2011 (DOY: 136-151). Please <a href="../records/10952977"><em><strong><span>click here</span></strong></em></a> to download the ELITE SLDR product in 2011 (DOY: 152-166).</span></p> <p><strong><span>Dataset Characteristics:</span></strong></p> <ul> <li><span>Spatial Coverage: Global</span></li> <li><span>Temporal Coverage: 2011-05-16 ~ 2011-05-31</span></li> <li><span>Spatial Resolution: 1 km</span></li> <li><span>Temporal Resolution: 5-min</span></li> <li><span>Data Format: h5</span></li> <li><span>Projection: Sinusoidal</span></li> <li><span>Scale: 0.05</span></li> <li><span>Offset: -1000</span></li> </ul> <p><strong><span>Citation</span></strong><span>(Please cite these papers when using the data)<strong><span>:</span></strong></span></p> <ol> <li><span>Cheng J, Liang S. Global estimates for high-spatial-resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(7): 4115-4129. </span></li> <li><span>Cheng J, Liang S, Wang W, et al. An efficient hybrid method for estimating clear‐sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 2017, 122(5): 2616-2630.</span></li> <li><span>Yang F, Cheng J. A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 2020, 248: 111972.</span></li> </ol> <p><span>&nbsp;</span></p> <p><span>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</span></p>

opencc-zeroApr 2024View details →
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ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Terra (2007_136-151)

<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p>This dataset is ELITE surface longwave downward radiation (SLDR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</p> <p>This is the ELITE SLDR product in 2007 (DOY: 136-151). Please <a href="../records/10961635"><em><strong>click here</strong></em></a> to download the ELITE SLDR product in 2007 (DOY: 152-166).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2007-5-16 ~ 2007-5-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p><strong>Citation</strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng J, Liang S. Global estimates for high-spatial-resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(7): 4115-4129.</li> <li>Cheng J, Liang S, Wang W, et al. An efficient hybrid method for estimating clear‐sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 2017, 122(5): 2616-2630.</li> <li>Yang F, Cheng J. A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 2020, 248: 111972.</li> </ol> <p>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</p>

opencc-zeroApr 2024View details →
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FIGURE 136 in Systematics and palaeobiology of kangaroos of the late Cenozoic genus Protemnodon (Marsupialia, Macropodidae)

FIGURE 136. scatterplot of calcaneal proximal head width versus caudal height of calcaneal tuberosity in specimens of P. anak, P. mamkurra sp. nov., P. viator sp. nov., P. otibandus, and five extrageneric taxa.

opennotspecifiedApr 2024View details →
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finals_2021_136

Log and boot files of game 136

opencc-by-4.0Nov 2021View details →
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FIGURES 135–142. Scrobipalpa spp., male genitalia. 135, 136. S in A review of the genus Scrobipalpa Janse, 1951 (Lepidoptera, Gelechiidae) in the Afrotropical region

FIGURES 135–142. Scrobipalpa spp., male genitalia. 135, 136. S. ochracea sp. nov. South Africa. 135. Petersburg, HT (gen. slide 25/13, OB). 136. Knysna, PT (gen. slide 111/17, OB). 137, 138. S. asantesana sp. nov., South Africa. 137. Cathedral Peak, PT (gen. slide 93/17, OB). 138. Petersburg, PT (gen. slide 320/20, OB). 139. S. brandbergensis, Namibia, Brandberg, HT (gen. slide 12/10, OB). 140. S. etoshensis sp. nov, Namibia, Etosha, PT (gen. slide 103/12, OB). 141, 142. S. traganella, Namibia, Solitaire (gen. slide 129/17, OB). 142. South Africa, Asante-Sana (gen. slide 85/12, OB).

opennotspecifiedNov 2021View details →
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FIGURES 130–136. A in Taxonomic study of the leafhopper genus Agnesiella Dworakowska (Hemiptera Cicadellidae: Typhlocybinae) from China, with descriptions of 13 new species

FIGURES 130–136. A. (D.) glabra Huang &amp; Zhang sp. nov. 130. forewing; 131. abdominal apodemes; 132. male pygofer side, lateral view; 133. paramere, connective, subgenital plate, dorsal view; 134. caudal end of paramere; 135. aedeagus, lateral view; 136. aedeagus, posterior view.

opennotspecifiedFeb 2022View details →
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FIGURES 136 & 137. 136 in The ant genus Tetramorium Mayr (Hymenoptera: Formicidae) in the Malagasy region—taxonomy of the T. bessonii, T. bonibony, T. dysalum, T. marginatum, T. tsingy, and T. weitzeckeri species groups

FIGURES 136 &amp; 137. 136. Mesosoma and waist segments of T. shamshir in profile, propodeal spines strongly back-curved and petiolar node high nodiform to weakly cuneiform, not strongly anteroposteriorly compressed dorsally—CASENT0467696 (Erin Prado 2010). 137. Mesosoma and waist segments of T. norvigi in profile with triangular cuneiform and strongly anteroposteriorly compressed dorsally petiolar node—CASENT0489037 (Erin Prado 2010).

opennotspecifiedJul 2012View details →
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FIGURES 136–141 in Systematics, revisionary taxonomy, and biodiversity of Afrotropical Lithocolletinae (Lepidoptera: Gracillariidae)

FIGURES 136–141. Exuvium of Phyllonorycter grewiaephilos. 136, ventral view. 137, lateral view. 138, terminal segment, caudal view. 139, terminal segment, ventral view. 140, terminal segment, lateral view. 141, small cremaster on terminal segment.

opennotspecifiedDec 2012View details →
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FIGURES 131–136 in The genus Hybos Meigen (Diptera: Empidoidea: Hybotidae) in Thailand

FIGURES 131–136. Hybos pisadaanus sp. nov. 131. ♂ terminalia, dorsal view. 132. left epandrial lamella and left surstylus, lateral view. 133. hypandrium, ventral view. 134. right surstylus and apex of right epandrial lamella, lateral view. 135. ♀ terminalia, dorsal view. 136. ♂ right hind femur and tibia, anterior view. T8 = tergite 8, T10 = tergite 10.

opennotspecifiedJul 2013View details →
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On following pages: 121. Roberts's Serotine (Neoromicia robertsi); 122. Stanley's Serotine (Neoromicia stanleyi); 123. Zulu Serotine (Neoromicia zuluensis): 124. Tiny Serotine (Neoromicia guineensis); 125. Somali Serotine (Neoromicia somalica); 126. Banana Serotine (Neoromicia nanus); 127. Rendall''s Serotine (Neoromicia rendall): 128. Dark-brown Serotine (Neoromicia brunnea); 129. Rosevear's Serotine (Neoromicia rosevear): 130. Isabelline Serotine (Neoromicia isabella); 131. Grandidier's Serotine (Neoromicia grandidieri); 132. White-winged Serotine (Neoromicia tenuipinnis); 133. Heller's Serotine (Neoromicia helios); 134. De Winton's Long-eared Bat (Laephotis wintoni); 135. Angolan Long-eared Bat (Laephotis angolensis); 136. Botswanan Long-eared Bat (Laephotis botswanae); 137. Namib Long-eared Bat (Laephotis namibensis): 138. Sind Bat (Rhyneptesicus nasutus); 139. Collared Sprite (Thainycteris aureocollaris); 140. Necklace Sprite (Thainycteris torquatus); 141. Bronze Sprite (Arielulus circumdatus); 142. Social Sprite (Arielulus societatis); 143. Coppery Sprite (Arielulus cuprosus). in Vespertilionidae

On following pages: 121. Roberts's Serotine (Neoromicia robertsi); 122. Stanley's Serotine (Neoromicia stanleyi); 123. Zulu Serotine (Neoromicia zuluensis): 124. Tiny Serotine (Neoromicia guineensis); 125. Somali Serotine (Neoromicia somalica); 126. Banana Serotine (Neoromicia nanus); 127. Rendall''s Serotine (Neoromicia rendall): 128. Dark-brown Serotine (Neoromicia brunnea); 129. Rosevear's Serotine (Neoromicia rosevear): 130. Isabelline Serotine (Neoromicia isabella); 131. Grandidier's Serotine (Neoromicia grandidieri); 132. White-winged Serotine (Neoromicia tenuipinnis); 133. Heller's Serotine (Neoromicia helios); 134. De Winton's Long-eared Bat (Laephotis wintoni); 135. Angolan Long-eared Bat (Laephotis angolensis); 136. Botswanan Long-eared Bat (Laephotis botswanae); 137. Namib Long-eared Bat (Laephotis namibensis): 138. Sind Bat (Rhyneptesicus nasutus); 139. Collared Sprite (Thainycteris aureocollaris); 140. Necklace Sprite (Thainycteris torquatus); 141. Bronze Sprite (Arielulus circumdatus); 142. Social Sprite (Arielulus societatis); 143. Coppery Sprite (Arielulus cuprosus).

opennotspecifiedOct 2019View details →
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FIGURES 131–136 in The genus Asianthrips an Oriental fungus-feeding phlaeothripine (Thysanoptera, Phlaeothripidae)

FIGURES 131–136. Asianthrips sufflavus, sp. n., female (mac). (131) Head; (132) Antenna; (133) Pronotum; (134) Metanotum &amp; pelta; (135) Ferna–mesopresternum; (136) Tube.

opennotspecifiedMar 2022View details →
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On following pages: 130. Sulawesi Flying Fox (Acerodon celebensis); 131. Talaud Flying Fox (Acerodon humilis); 132. Golden-capped Flying Fox (Acerodon jubatus); 133. Palawan Flying Fox (Acerodon leucotis): 134. Sunda Flying Fox (Acerodon macklotil); 135. Moluccan Masked Flying Fox (Pteropus personatus); 136. Lombok Flying Fox (Pteropus lombocensis); 137. Little Red Flying Fox (Pteropus scapulatus); 138. Big-eared Flying Fox (Pteropus macrotis): 139. Gilliard's Flying Fox (Pteropus gilliardorum); 140. Sanborn's Flying Fox (Pteropus mahaganus); 141. Dwarf Flying Fox (Pteropus woodford); 142. Pohnpei Flying Fox (Pteropus molossinus); 143. Chuuk Flying Fox (Pteropus pelagicus). in Pteropodidae

On following pages: 130. Sulawesi Flying Fox (Acerodon celebensis); 131. Talaud Flying Fox (Acerodon humilis); 132. Golden-capped Flying Fox (Acerodon jubatus); 133. Palawan Flying Fox (Acerodon leucotis): 134. Sunda Flying Fox (Acerodon macklotil); 135. Moluccan Masked Flying Fox (Pteropus personatus); 136. Lombok Flying Fox (Pteropus lombocensis); 137. Little Red Flying Fox (Pteropus scapulatus); 138. Big-eared Flying Fox (Pteropus macrotis): 139. Gilliard's Flying Fox (Pteropus gilliardorum); 140. Sanborn's Flying Fox (Pteropus mahaganus); 141. Dwarf Flying Fox (Pteropus woodford); 142. Pohnpei Flying Fox (Pteropus molossinus); 143. Chuuk Flying Fox (Pteropus pelagicus).

opennotspecifiedOct 2019View details →
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On following pages: 122. Honduran Yellow-shouldered Bat (Sturnira hondurensis); 123. Burton's Yellow-shouldered Bat (Sturnira burtonlimi); 124. Highland Yellow-shouldered Bat (Sturnira ludovici); 125. Adriana's Yellow-shouldered Bat (Sturnira adrianae); 126. Tschudi's Yellow-shouldered Bat (Sturnira oporaphilum); 127. Mistratoan Yellow-shouldered Bat (Sturnira mistratensis); 128. Soriano's Yellow-shouldered Bat (Sturnira sorianoi); 129. Choco Yellow-shouldered Bat (Sturnira koopmanhill)); 130. Talamancan Yellow-shouldered Bat (Sturnira mordax); 131. Perla Yellow-shouldered Bat (Sturnira perla); 132. Tilda's Yellow-shouldered Bat (Sturnira tildae); 133. Hairy Yellow-shouldered Bat (Sturnira erythromos); 134. Bogota Yellow-shouldered Bat (Sturnira bogotensis); 135. Greater Yellow-shouldered Bat (Sturnira magna); 136. Northern Yellow-shouldered Bat (Sturnira parvidens); 137 Baker's Yellow-shouldered Bat (Sturnira baker); 138. Little Yellow-shouldered Bat (Sturnira lilium); 139. Gianna's Yellow-shouldered Bat (Sturnira giannae); 140. Dominica Yellow-shouldered Bat (Sturnira angell); 141. Paulson's Yellow-shouldered Bat (Sturnira paulsoni); 142. Luis's Yellow-shouldered Bat (Sturnira luisi). in Phyllostomidae

On following pages: 122. Honduran Yellow-shouldered Bat (Sturnira hondurensis); 123. Burton's Yellow-shouldered Bat (Sturnira burtonlimi); 124. Highland Yellow-shouldered Bat (Sturnira ludovici); 125. Adriana's Yellow-shouldered Bat (Sturnira adrianae); 126. Tschudi's Yellow-shouldered Bat (Sturnira oporaphilum); 127. Mistratoan Yellow-shouldered Bat (Sturnira mistratensis); 128. Soriano's Yellow-shouldered Bat (Sturnira sorianoi); 129. Choco Yellow-shouldered Bat (Sturnira koopmanhill)); 130. Talamancan Yellow-shouldered Bat (Sturnira mordax); 131. Perla Yellow-shouldered Bat (Sturnira perla); 132. Tilda's Yellow-shouldered Bat (Sturnira tildae); 133. Hairy Yellow-shouldered Bat (Sturnira erythromos); 134. Bogota Yellow-shouldered Bat (Sturnira bogotensis); 135. Greater Yellow-shouldered Bat (Sturnira magna); 136. Northern Yellow-shouldered Bat (Sturnira parvidens); 137 Baker's Yellow-shouldered Bat (Sturnira baker); 138. Little Yellow-shouldered Bat (Sturnira lilium); 139. Gianna's Yellow-shouldered Bat (Sturnira giannae); 140. Dominica Yellow-shouldered Bat (Sturnira angell); 141. Paulson's Yellow-shouldered Bat (Sturnira paulsoni); 142. Luis's Yellow-shouldered Bat (Sturnira luisi).

opennotspecifiedOct 2019View details →
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FIGURES 134–136 in Revision of the genus Charippus Thorell, 1895, with descriptions of eight new species (Araneae, Salticidae, Euophryini)

FIGURES 134–136. Palp of Charippus kubah Yu, Maddison &amp; Zhang, sp. nov., in prolateral (134), ventral (136) and retrolateral (135) view, arrow pointing to the ventral lamina of embolus.

opennotspecifiedApr 2022View details →
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FIGURES 136–155 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)

FIGURES 136–155. Male terminalia of Eucelatoria ferox group spp., left lateral view, and caudal view of cerci and surstyli. Numbers are "ZLB_E.Ferox" specimen ID numbers. Specimen information for caudal views is identical to that for Figs 124– 139. 136. E. gustavogutierrezi sp. nov., lateral view, Guanacaste Province (00008) (CNC). 137. E. hafelei sp. nov., lateral view, Chapare Province (00386) (DMW). 138. E. ritavargasae sp. nov., lateral view, Narupa (00215) (USNM). 139. E. sica sp. nov., lateral view, Yanayacu (00213) (CNC). 140. E. aurata (Townsend), caudal view. 141. E. auriceps (Aldrich), caudal view. 142. E. borealis sp. nov., caudal view. 143. E. charapensis (Townsend), caudal view. 144. E. falcata sp. nov., caudal view. 145. E. fordlandia sp. nov., caudal view. 146. E. gladiatrix (Townsend), caudal view. 147. E. sabroskyi sp. nov., caudal view. 148. E. strigata (Wulp), caudal view. 149. E. texana (Reinhard), caudal view. 150. E. woodorum sp. nov., caudal view. 151. E. yanayacu sp. nov., caudal view. 152. E. gustavogutierrezi sp. nov., caudal view. 153. E. hafelei sp. nov., caudal view. 154. E. ritavargasae sp. nov., caudal view. 155. E. sica sp. nov., caudal view.

opennotspecifiedMay 2022View details →
zenodo32/100

On following pages: 115. Reed Vole (Alexandromys fortis); 116. Sakhalin Vole (Alexandromys sachalinensis); 117. Mongolian Vole (Alexandromys mongolicus); 118. Middendorff's Vole (Alexandromys middendorffii; 119. Gromov's Vole (Alexandromys gromovi); 120. Lacustrine Vole (Alexandromys limnophilus); 121. Root Vole (Alexandromys oeconomus); 122. Taiwan Vole (Alexandromys kikuchii); 123. Japanese Grass Vole (Alexandromys montebell); 124. Afghan Vole (Microtus afghanus); 125. Bucharian Vole (Microtus bucharensis); 126. Juniper Vole (Microtus juldaschi); 127. Short-tailed Field Vole (Microtus agrestis); 128. Mediterranean Field Vole (Microtus lavernedii): 129. Portuguese Field Vole (Microtus rozianus); 130. Insular Vole (Microtus abbreviatus); 131. Singing Vole (Microtus miurus); 132. Rock Vole (Microtus chrotorrhinus); 133. Zempoaltepec Vole (Microtus umbrosus); 134. Tarabundi Vole (Microtus oaxacensis); 135. Guatemalan Vole (Microtus guatemalensis); 136. Woodland Vole (Microtus pinetorum); 137. Jalapan Vole (Microtus quasiater); 138. California Vole (Microtus californicus): 139. Beach Vole (Microtus brewer); 140. Mexican Vole (Microtus mexicanus); 141. Mogollon Vole (Microtus mogollonensis); 142. Prairie Vole (Microtus ochrogasten; 143. Taiga Vole (Microtus xanthognathus); 144. Cabrera''s Vole (Microtus cabrerae); 145. North American Water Vole (Microtus richardson); 146. Gray-tailed Vole (Microtus canicaudus). in Cricetidae

On following pages: 115. Reed Vole (Alexandromys fortis); 116. Sakhalin Vole (Alexandromys sachalinensis); 117. Mongolian Vole (Alexandromys mongolicus); 118. Middendorff's Vole (Alexandromys middendorffii; 119. Gromov's Vole (Alexandromys gromovi); 120. Lacustrine Vole (Alexandromys limnophilus); 121. Root Vole (Alexandromys oeconomus); 122. Taiwan Vole (Alexandromys kikuchii); 123. Japanese Grass Vole (Alexandromys montebell); 124. Afghan Vole (Microtus afghanus); 125. Bucharian Vole (Microtus bucharensis); 126. Juniper Vole (Microtus juldaschi); 127. Short-tailed Field Vole (Microtus agrestis); 128. Mediterranean Field Vole (Microtus lavernedii): 129. Portuguese Field Vole (Microtus rozianus); 130. Insular Vole (Microtus abbreviatus); 131. Singing Vole (Microtus miurus); 132. Rock Vole (Microtus chrotorrhinus); 133. Zempoaltepec Vole (Microtus umbrosus); 134. Tarabundi Vole (Microtus oaxacensis); 135. Guatemalan Vole (Microtus guatemalensis); 136. Woodland Vole (Microtus pinetorum); 137. Jalapan Vole (Microtus quasiater); 138. California Vole (Microtus californicus): 139. Beach Vole (Microtus brewer); 140. Mexican Vole (Microtus mexicanus); 141. Mogollon Vole (Microtus mogollonensis); 142. Prairie Vole (Microtus ochrogasten; 143. Taiga Vole (Microtus xanthognathus); 144. Cabrera''s Vole (Microtus cabrerae); 145. North American Water Vole (Microtus richardson); 146. Gray-tailed Vole (Microtus canicaudus).

opennotspecifiedNov 2017View details →
zenodo32/100

FIGURES 136–140 in Revision of carpenter bees of the subgenus Neoxylocopa Michener (Hymenoptera: Apidae) from Mexico and Mesoamerica

FIGURES 136–140. Maps of distribution. 136. X. (N.) clarionensis; 137. X. (N.) maya sp. nov. and X. griswoldi sp. nov. 138. X. (N.) gualanensis. 139 X. (N.) sonorina. 140. X. (N.) mexicanorum and X. (N.) wilmattae.

opennotspecifiedJun 2022View details →

ScienceDex guides

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

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

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record