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312 results for “Bibliographie”
FIGS. 86–88. Ovaskella ovaskae. Fig. 86. Anterior gonopods, posterior view. Fig. 87. Posterior gonopods, posterior view. Fig. 88 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 86–88. Ovaskella ovaskae. Fig. 86. Anterior gonopods, posterior view. Fig. 87. Posterior gonopods, posterior view. Fig. 88. Left posterior gonopod coxite, posterior view.
FIGS. 22–25. Taiyutyla spp. Fig. 22 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 22–25. Taiyutyla spp. Fig. 22. Taiyutyla napa, right gonopod complex, posterior view. Figs. 23, 24. Taiyutyla tillamook. Fig. 23. Anterior gonopods, posterior view. Fig. 24. Right posterior gonopod coxite, posterior view. Fig. 25. Taiyutyla acuphora, right anterior gonopod, lateral view.
FIGS. 5–21. Taiyutyla spp. Figs. 5–11. Taiyutyla jonesi. Fig. 5. Anterior gonopods, posterior view. Fig. 6. Right posterior gonopod coxite, posterior view. Figs. 7–11. Male legs 3–7, respectively. Figs. 12–18. Taiyutyla Tillamook. Fig. 12. Anterior gonopods, posterior view. Fig. 13. Right posterior gonopod coxite, posterior view. Figs. 14–18. Male legs 3–7, respectively. FIGS. 19–21. Taiyutyla acuphora. Fig. 19. Left anterior gonopod, posterior view. Fig. 20. Left anterior gonopod tip, mesal view. Fig. 21 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 5–21. Taiyutyla spp. Figs. 5–11. Taiyutyla jonesi. Fig. 5. Anterior gonopods, posterior view. Fig. 6. Right posterior gonopod coxite, posterior view. Figs. 7–11. Male legs 3–7, respectively. Figs. 12–18. Taiyutyla Tillamook. Fig. 12. Anterior gonopods, posterior view. Fig. 13. Right posterior gonopod coxite, posterior view. Figs. 14–18. Male legs 3–7, respectively. FIGS. 19–21. Taiyutyla acuphora. Fig. 19. Left anterior gonopod, posterior view. Fig. 20. Left anterior gonopod tip, mesal view. Fig. 21. Right posterior gonopod coxite, posterior view.
FIGS. 51–66. Calityla spp. Figs. 51–57. Calityla ubicki. Fig. 51. Anterior gonopods, posterior view. Fig. 52. Left posterior gonopod coxite, posterior view. Figs. 53–57. Male legs 3–7, respectively. Figs. 58–66. Calityla trinitaria. Fig. 58. Anterior gonopods, posterior view. Fig. 59 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 51–66. Calityla spp. Figs. 51–57. Calityla ubicki. Fig. 51. Anterior gonopods, posterior view. Fig. 52. Left posterior gonopod coxite, posterior view. Figs. 53–57. Male legs 3–7, respectively. Figs. 58–66. Calityla trinitaria. Fig. 58. Anterior gonopods, posterior view. Fig. 59. Tip of left anterior gonopod, posterior view. Fig. 60. Left posterior gonopod coxite, posterior view. Figs. 61–66. Male legs 3–7, respectively. Fig. 67. Femoral knob of male leg 7.
FIG. 2 in Ghost-moths of the world: a global inventory and bibliography of the Exoporia (Mnesarchaeoidea and Hepialoidea) (Lepidoptera)
FIG. 2. Relationship betweeen the number of genera of Exoporia in diOEerent regions plotted against land area (logarithmic axes)Ðdata from table 3. Regression: R2 5 0.68; p<0.003.
EAGLE Epigraphic Bibliography
<p>As available in Zotero (https://www.zotero.org/groups/247748/eagle_epigraphic_bibliography)</p>
EXOSAT Bibliography
This database table contains information about all EXOSAT publications in refereed journals that make use of EXOSAT data. Each entry is unique for every combination of publication and X-ray source. For example, a paper which discusses five X-ray sources will have generated five distinct entries in the database, each referring to a different X-ray source. Unlike EXOLOG, the EXOPUBS database also includes entries for serendipitous sources. In addition to standard database parameters such as source name, coordinates, object class, etc., the EXOPUBS includes the full reference (authors, journal, volume, page, year) and title of each publication. Note the information is not complete after the year 1991. This is a service provided by NASA HEASARC .
ASTEROID BIBLIOGRAPHY V1.0
A comprehensive compilation of asteroid-related references, produced by Clifford Cunningham (1990). [CUNNINGHAM1990]
FIGURE 2 in Checklist, Bibliography and Quantitative Data of the Arthropods of Hispaniola
FIGURE 2. Known diversity of extant insects in Hispaniola. The preliminary total is 6,784 species.
ASTEROID BIBLIOGRAPHY V2.0
Compilation of asteroid and asteroid-related references, covering the period 1621-1993.
ASTEROID BIBLIOGRAPHY V1.0
A comprehensive compilation of asteroid-related references, produced by Clifford Cunningham (1990). [CUNNINGHAM1990]
ASTEROID BIBLIOGRAPHY V2.0
Compilation of asteroid and asteroid-related references, covering the period 1621-1993.
ScienceDex guides
Understand access before you commit
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.