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Fig. 3. D in New Species Of Acronia Westwood, 1863 And Dasisopsis Hüdepohl, 1995 (Coleoptera: Cerambycidae) From The Philippines
Fig. 3. D. lanlayroni sp. nov. [A – holotype; B – paratype], D. magallanesorum Vives, 2012 [C – holotype (Vives 2012)] and D. maculata Hüdepohl, 1995 [D – holotype (Hüdepohl, 1995)].
Fig. 22. Trochaclis regalisMarshall, 1995 in The Vetigastropoda (Mollusca) of Walters Shoal, with descriptions of two new genera and thirty new species
Fig. 22. Trochaclis regalisMarshall, 1995, Walters Shoal, stn DW4881 (MNHN). A–C. Apertural, oblique basal and apical views of specimen with persistent shoulder cord, diameter 1.1 mm. D. Protoconch of A, scale bar = 100 μm. E–F. Apertural and apical views of specimen with shoulder cord evanescing after first whorl, diameter 1.1 mm.
Fig. 1. Masona bulbofemoralis van Achterberg, 1995 in Small jewels: two new species of the rare genus Masona van Achterberg (Hymenoptera, Ichneumonoidea, Braconidae), with a catalogue of world species and comments on the peculiar morphology of the genus
Fig. 1. Masona bulbofemoralis van Achterberg, 1995, ♀ (DDPC). A. Habitus, lateral view. B. Habitus, dorsal view.
Fig. 10. Masona prognatha van Achterberg, 1995 in Small jewels: two new species of the rare genus Masona van Achterberg (Hymenoptera, Ichneumonoidea, Braconidae), with a catalogue of world species and comments on the peculiar morphology of the genus
Fig. 10. Masona prognatha van Achterberg, 1995, holotype, ♀ (CNC). A. Habitus, dorsal view. B. Habitus, lateral view. Downloaded from the public CNC database (available also at https://www.cnc.agr.gc.ca/taxonomy/Taxonomy.php?id=3044).
Figure 3 in A new species of the genus Glaesotropis Gratshev and Zherikhin, 1995 (Coleoptera, Anthribidae) from Rovno amber
Figure 3. Glaesotropis rohdendorfi sp. nov., holotype. SIZK OL269, body, laterally. Scale bar 1.0 mm.
Figure 2 in A new species of the genus Glaesotropis Gratshev and Zherikhin, 1995 (Coleoptera, Anthribidae) from Rovno amber
Figure 2. Glaesotropis rohdendorfi sp. nov., holotype. SIZK OL269, body, dorsally. Scale bar 1.0 mm.
Figure 1 in A new species of the genus Glaesotropis Gratshev and Zherikhin, 1995 (Coleoptera, Anthribidae) from Rovno amber
Figure 1. Glaesotropis rohdendorfi sp. nov., holotype. SIZK OL269, rostrum and head, dorsally. Scale bar 0.2 mm.
Figure 4 in A new species of the genus Glaesotropis Gratshev and Zherikhin, 1995 (Coleoptera, Anthribidae) from Rovno amber
Figure 4. Glaesotropis diadiasashai Gratshev and Perkovsky, 2008, holotype. SIZK UA-2223, body, laterally. Scale bar 0.5 mm.
Structural breaks in greenhouse gas emissions for OECD countries in 1995-2022 and 37 sectors
<p>The quantitative assessment of policy instruments aimed at climate change mitigation requires the rigorous identification of abnormal changes in greenhouse gas emissions. We present a new dataset of robust level changes in greenhouse gas emissions that cannot be explained by aggregate socioeconomic fluctuations. Modern methods of structural break identification based on two-way fixed effects models are employed to estimate the size of significant level changes in emissions. The resulting dataset spans information for all OECD countries and all 37 IPCC sectors, ranging from 1995 to 2022. The data unveils large differences in abnormal changes in emissions across gases, countries and sectors, as well as over time. Our resulting data can be applied to a broad range of research questions, including the analysis of the comparative efficacy of policy instruments to mitigate climate change.</p>
A monthly 5 km Arctic sea ice thickness product from 1995 to 2023 using multiple radar altimetry data
<p>Arctic sea ice is of great importance to the regional and global climate change study. Satellite observations have demonstrated that the Arctic sea ice extent has been declined for the last four decades. However, long-term variations of the Arctic sea ice thickness (SIT) are less focused as SIT cannot be measured directly by satellite-based instruments. Here, we presented a monthly Arctic SIT product based on multiple radar altimetry observations from ERS-2, Envisat, and CryoSat-2. To ensure the accuracy of the SIT retrievals, we proposed a novel data processing procedure including leads detection, freeboard conversion to thickness and inter-mission bias correction. Finally, we were able to generate the monthly SIT estimates for the Arctic Ocean from October 1995 to December 2023. The thickness estimates are posted on a 5 km resolution polar stereographic grid. The variations of the Arctic SIT are analyzed in terms of the spatial and temporal distributions. We also compared our SIT estimates with observations from upward looking sonars (ULSs) and airborne laser altimetry from Operation IceBridge (OIB), as well as seven publicly released Arctic SIT products. The validation results demonstrate that our SIT product features equivalent accuracy with existing products. The accuracy of our products is about 0.4 m during Envisat period, and is within 0.2 m during CryoSat-2 period.</p>
Fig. 4 in Ephemeral Occurrence of the Echiuran Listriolobus brevirostris (Annelida: Echiura) in Osaka Bay between 1995 and 2002; a New Record for Japan, Probably Resulting from Human-mediated Introduction
Fig. 4. Relationship between trunk length and proboscis length in 52 fixed specimens of Listriolobus brevirostris, collected from Osaka Bay in 1999 (NSMT-Ec 164 to 183).
Fig. 3 in Ephemeral Occurrence of the Echiuran Listriolobus brevirostris (Annelida: Echiura) in Osaka Bay between 1995 and 2002; a New Record for Japan, Probably Resulting from Human-mediated Introduction
Fig. 3. Internal morphology (dorsal view) of Listriolobus brevirostris from Osaka Bay, collected off Kobe on 26 November 2001 (NSMT-Ec 186). A, anterior end of trunk; B, posterior end of trunk (ventral vessel undetectable due to deterioration). Abbreviations: al, alimentary canal; av, anal vesicle; dv, dorsal vessel; gd, gonoduct; gl, gonostomal lip; im, interbasal muscle; nv, neurointestinal vessel; rc, rectal caecum; re, rectum; rv, ring vessel; tb, terminal bulb; vn, ventral nerve cord: vs, ventral seta; vv, ventral vessel. Scale bars: 1 mm.
Fig. 5 in Ephemeral Occurrence of the Echiuran Listriolobus brevirostris (Annelida: Echiura) in Osaka Bay between 1995 and 2002; a New Record for Japan, Probably Resulting from Human-mediated Introduction
Fig. 5. Seasonal changes in trunk length of Listriolobus brevirostris from Osaka Bay in 1999. Solid bars indicate mature specimen(s), dotted lines, measurements from live specimens, and double-headed arrow of dotted line, the length range in live specimens (see text).
FIGURE 37. Centruroides schmidti Sissom 1995 in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 37. Centruroides schmidti Sissom 1995, ♀ (CASENT 9073317), habitus. A. Dorsal aspect. B. Ventral aspect. Scale bars = 5 mm
. mm 5 = bars Scale. aspect Ventral. B. aspect Dorsal. A. habitus,) 9073278 CASENT (♂, 1995 Sissom schmidti Centruroides. 36 FIGURE in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
. mm 5 = bars Scale. aspect Ventral. B. aspect Dorsal. A. habitus,) 9073278 CASENT (♂, 1995 Sissom schmidti Centruroides. 36 FIGURE
FIGURE 22. Centruroides Marx, 1890, metasomal segment V, lateral aspect. A, D. C. rileyi Sissom, 1995, A in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 22. Centruroides Marx, 1890, metasomal segment V, lateral aspect. A, D. C. rileyi Sissom, 1995, A. ♂ (CNAN SC4002), D. ♀ (CNAN SC4003). B, E. C. hamadryas, sp. nov., B. holotype ♂ (CNAN T01408), E. paratype ♀ (CNAN T01415). C, F. C. hoffmanni Armas, 1996, C. ♂, F. ♀ (CNAN SC3996). G, J. C. cuauhmapan, sp. nov., G. holotype ♂ (CNAN T01396), J. paratype ♀ (CNAN T01399). H, K. C. berstoni, sp. nov., H. holotype ♂ (CASENT 9073325), K. paratype ♀ (CASENT 9073313). I, L. C. chanae, sp. nov., I. holotype ♂ (CNAN T01403), L. paratype ♀ (CNAN T01405). M, P. C. catemacoensis, sp. nov., M. holotype ♂ (CNAN T01424), P. paratype ♀ (CNAN T01423). N, Q. C. schmidti Sissom, 1995, N. ♂ (CASENT 9073316), Q. ♀ (CASENT 9073317). O, R. C. yucatanensis, sp. nov., O. holotype ♂ (CNAN T01416), R. paratype ♀ (CNAN T01417). Scale bars = 2 mm.
FIGURE 17. Centruroides Marx, 1890, metasomal segments I and II, dorsal aspect. A, D. C. rileyi Sissom, 1995, A in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 17. Centruroides Marx, 1890, metasomal segments I and II, dorsal aspect. A, D. C. rileyi Sissom, 1995, A. ♂ (CNAN SC4002), D. ♀ (CNAN SC4003). B, E. C. hamadryas, sp. nov., B. holotype ♂ (CNAN T01408), E. paratype ♀ (CNAN T01415). C, F. C. hoffmanni Armas, 1996, C. ♂, F. ♀ (CNAN SC3996). G, J. C. cuauhmapan, sp. nov., G. holotype ♂ (CNAN T01396), J. paratype ♀ (CNAN T01399). H, K. C. berstoni, sp. nov., H. holotype ♂ (CASENT 9073325), K. paratype ♀ (CASENT 9073313). I, L. C. chanae, sp. nov., I. holotype ♂ (CNAN T01403), L. paratype ♀ (CNAN T01405). M, P. C. catemacoensis, sp. nov., M. holotype ♂ (CNAN T01424), P.paratype ♀ (CNAN T01423). N, Q. C. schmidti Sissom, 1995, N. ♂ (CASENT 9073316), Q. ♀ (CASENT 9073317). O, R. C. yucatanensis, sp. nov., O. holotype ♂ (CNAN T01416), R. paratype ♀ (CNAN T01417. Scale bars = 2 mm.
FIGURE 19. Centruroides Marx, 1890, metasomal segments I and II, lateral aspect. A, D. C. rileyi Sissom, 1995, A in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 19. Centruroides Marx, 1890, metasomal segments I and II, lateral aspect. A, D. C. rileyi Sissom, 1995, A. ♂ (CNAN SC4002), D. ♀ (CNAN SC4003). B, E. C. hamadryas, sp. nov., B. holotype ♂ (CNAN T01408), E. paratype ♀ (CNAN T01415). C, F. C. hoffmanni Armas, 1996, C. ♂, F. ♀ (CNAN SC3996). G, J. C. cuauhmapan, sp. nov., G. holotype ♂ (CNAN T01396), J. paratype ♀ (CNAN T01399). H, K. C. berstoni, sp. nov., H. holotype ♂ (CASENT 9073325), K. paratype ♀ (CASENT 9073313). I, L. C. chanae, sp. nov., I. holotype ♂ (CNAN T01403), L. paratype ♀ (CNAN T01405). M, P. C. catemacoensis, sp. nov., M. holotype ♂ (CNAN T01424), P. paratype ♀ (CNAN T01423). N, Q. C. schmidti Sissom, 1995, N. ♂ (CASENT 9073316), Q. ♀ (CASENT 9073317). O, R. C. yucatanensis, sp. nov., O. holotype ♂ (CNAN T01416), R. paratype ♀ (CNAN T01417). Scale bars = 2 mm.
FIGURE 27. Centruroides rileyi Sissom, 1995 in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 27. Centruroides rileyi Sissom, 1995, ♀ (CNAN SC4003), habitus. A. Dorsal aspect. B. Ventral aspect. Scale bars = 5 mm.
FIGURE 26. Centruroides rileyi Sissom, 1995 in Systematic Revision Of The Arboreal Neotropical "Thorellii" Clade Of Centruroides Marx, 1890, Bark Scorpions (Buthidae C.L. Koch, 1837) With Descriptions Of Six New Species
FIGURE 26. Centruroides rileyi Sissom, 1995, ♂ (CNAN SC4002), habitus. A. Dorsal aspect. B. Ventral aspect. Scale bars = 5 mm.
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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
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.