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Figure 8 in A review of the genus Leiurus Ehrenberg, 1828 (Scorpiones: Buthidae) with description of four new species from the Arabian Peninsula
Figure 8: Leiurus brachycentrus (Ehrenberg, 1829) stat. n., female. Right pedipalp. A. Femur, dorsal aspect. B. Patella, dorsal aspect. C. Patella, external aspect. D. Chela, ventral aspect. E. Chela, dorsal aspect. F. Fixed finger dentition. G. Movable finger dentition. H. Chela, external aspect. Al Mansuriah, Yemen.
Figure 15 in A review of the genus Leiurus Ehrenberg, 1828 (Scorpiones: Buthidae) with description of four new species from the Arabian Peninsula
Figure 15: Leiurus macroctenus sp. n., holotype male. Right pedipalp. A. Femur, dorsal aspect. B. Patella, dorsal aspect. C. Patella, external aspect. D. Chela, ventral aspect. E. Chela, dorsal aspect. F. Fixed finger dentition. G. Movable finger dentition. H. Chela, external aspect. Thumrait, Oman.
Metrics for continuous delivery: a rapid review
<p>This is a replication package as part of the paper submitted for ESEM'22 (ACM / IEEE International<br> Symposium on Empirical Software Engineering and Measurement (ESEM)</p>
FIG. 8 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 8. — Discocyrtus cerayanus (Roewer, 1929) n. comb., MNRJ 7244†, male genitalia, distal part: A, dorsal view; B, lateral view; C, ventral view. Scale bars: A, 50 μm; B, C, 100 μm. Colored features are the genitalic macrosetae of VP: light blue, MS A; dark blue, MS B; magenta, MS C; yellow, MS D; green, MS E.
FIG. 6 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 6. — Habitus of Discocyrtus cerayanus (Roewer, 1929) n. comb., MNRJ 7244†, in alcohol, male from Caeté, Minas Gerais, Brazil: A, dorsal view; B, ventral view; C, lateral view; D, anterior view. Scale bars: 1 cm. Photos: R. Carvalho.
FIG. 1 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 1. — Previous state of knowledge of the Paradiscocyrtus Mello-Leitão, 1927 species composition between 1929-2020: A, B, Paradiscocyrtus neglectus Mello- Leitão, 1927 (male), in vivo, from Itatiaia, Rio de Janeiro, Brazil; C, Paradiscocyrtus neglectus Mello-Leitão, 1927 (female), in vivo, same locality; D, Discocyrtus cerayanus (Roewer, 1929) n. comb. [previously Paradiscocyrtus cerayanus] (male), MNRJ 7245†, in alcohol, from Caeté, Minas Gerais, Brazil; E, F, Bunopachylus orientalis (Roewer, 1913) [of which Paradiscocyrtus trochanteralis Roewer, 1929 is recognized as junior synomyn] (male), in vivo, from Águas Mornas, Santa Catarina, Brazil. Scale bar: 1 cm. Photos: A-C, A. Kury; D, R. Carvalho; E, F, M. Medrano.
FIG. 3 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 3. — Cladogram depicting proposed external and internal phylogenetic relationships of Paradiscocyrtus Mello-Leitão, 1927, with synapomorphies for each clade mapped using ACCTRAN. This is the most frequent topology (k-values = 5, 6, 10, 15 and 20) obtained by TNT. Blue squares, nonhomoplastic synapomorphies; white circles, homoplastic synapomorphies. Number of characters above and number of states below symbols.
FIG. 5 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 5. — Brazil, showing distribution of Discocyrtus cerayanus (Roewer, 1929) n. comb. and Paradiscocyrtus neglectus Mello-Leitão, 1927. In the main map: 1) shaded areas in the background represent the regionalization ("Provinces") of the Neotropics (Morrone 2014); 2) the red-checkered area shows the Brazilian state of Ceará, misinterpreted by Mello-Leitão (in Roewer 1931) as the real meaning of "Ceraya" (type locality of D. cerayanus n. comb.) recorded by Roewer (1929). Here, "Ceraya" is interpreted as "Serra do Caraça", a mountain range from the Minas Gerais state. The inset shows the areas of endemism of the Brazilian Atlantic Rain Forest used here follow the concept exposed by DaSilva et al. (2017).
FIG. 4 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 4. — Diagnostic character states of Paradiscocyrtus Mello-Leitão, 1927 (A, C, E) in contrast to Discocyrtus s. str. (B, D, F): A, B, stylus of glans (yellow); C, D, ocularium pair of spines (green); E, F, DS shape (gray), area III armature (blue), comparative shape between area IV posterior and DS posterior borders (red), Cx IV retrolateral apophysis (black); Tr IV prolateral medial apophysis (magenta, absent in Discocyrtus s. str.). Scale bars: A, B, 50 μm; C, D, E, F, 1 mm.
FIG. 7 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 7. — Discocyrtus cerayanus (Roewer, 1929) n. comb., (SMF RII 996/53), male holotype, from "Ceraya" [Serra do Caraça, Minas Gerais], Brazil: A, habitus, dorsal view; B, same, lateral view; C, ocularium, anterior view; D, Cx IV, ventral view; E, right Tr-Fe IV, dorsal view; F, same, prolateral view; G, same, ventral view; H, same, retrolateral view; I, right Pa-Ti IV, prolateral view; J, same, ventral view. Scale bars: 1 cm.
Figure 2 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 2. Following John Ray's discovery of hermaphroditism in slugs and snails, Jan Swammerdam produced the first known image of copulating snails as part of the frontispiece of his 1667 doctoral thesis, De respiratione. Wellcome Images.
Figure 4 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 4. Colour plate from Jacob Christian Schäffer Der wunderbare und vieleicht in der Natur noch nie erschienene Eulenzwitter (1761) featuring Schäffer's hermaphrodite gypsy moth (Fig. IX in the image).
Figure 6 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 6. Without reference to Hunter's paper, the English physician and ornithologist John Latham, a co-founder of the Linnean Society, referred to the exhibit of Lady Tynte's extraordinary peahen in the Leverian Museum in A general synopsis of birds (1783), complete with this colour plate of the bird. Following a description of the white peacock, he wrote: 'I cannot close this account without mentioning a circumstance which now and then occurs in the females of this species, viz. having the external marks of the plumage of the male: two instances of which have occurred to me; the one belonging to a friend of mine in this county; the other now to be seen in the Leverian Museum. This last beautiful bird belonged to Lady Tynte, and had bred for some years; but after ceasing to lay eggs, began to put out the male eyed feathers; and at the time of its death appeared like a young male' (Latham, 1783, Vol. 2, Part 2: 672).
Figure 1 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 1. Remarkably, the drawing of a hermaphrodite rat, referred to by Johann Faber, still exists, rediscovered relatively recently in the collections of the Bibliothèque de l'Institut de France in Paris by art historian David Freedberg along with many other pictures of plants and animals produced by a scientific society known as the Academy of Linceans (or Lynxes) of which Theophilus Müller was a member (Freedberg, 2003: 243). Photo: RMN-Grand Palais (Institut de France)/René-Gabriel Ojeda.
Figure 5 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 5. The first known image of a female deer endowed with antlers, beautifully formed, was published in Miscellanea curiosa in 1684. It was submitted by German physician and alchemist Joel Langelott who wrote that the animal ('an amazing example of nature's abundance') had been captured in the area of Husamen (? perhaps Husum) in August 1597 and preserved in the hall of the Duke of Husum. A poet ('a pretty bad one') had added some verses in German to the illustration that was made from the exhibit. Upon hearing that the image was to be submitted for publication, prolific German scholar and poet Daniel Georg Morhof, an acquaintance of Langelott, took pity on the situation of the beast ('which Mother Nature in her great kindness had adorned in such a remarkable fashion') and decided that it deserved to be commended to posterity by means of a 'charming and elegant' elegy in Latin titled 'The stag speaks', which was also reproduced in Miscellanea curiosa alongside the picture. It begins: 'I was a female stag: look at me, sirs! do not believe that I was a stag: For as a female I bore antlers that should be given to males. A male neck was joined to a female body. See how that neck swells with adopted branches! Look how both sexes are mingled in a new shape And now a new shape makes a new androgyne.' (Langelott, 1680; transl. Carolinne White). Image: Bodleian library, University of Oxford.
Figure 3 in REVIEW Bounds of diversity: queer zoology in Europe from Aristotle to John Hunter
Figure 3. Hermaphrodite lobster, dissected by Frank Nicholls. Philosophical Transactions (May 1730). Reproduced with permission of the Royal Society Library.
Risk of bias assessments for the Cochrane review 'SARS-CoV-2-neutralising monoclonal antibodies to prevent COVID-19'
<p>Risk of bias assessments and support for judgement with ROB 2 tool for the Cochrane Review: SARS-CoV-2-neutralising monoclonal antibodies to prevent COVID-19.</p>
Figure 265 in Review of the genus Babycurus Karsch, 1886 (Arachnida, Scorpiones, Buthidae), with descriptions of Barbaracurus gen. n. and two new species from Oman and Yemen
Figure 265: Map showing the known distribution of genera Barbaracurus gen. n. and Babycurus in the Arabian Peninsula, Horn of Africa, Kenya and partially in Tanzania. The upper photo inset shows the type locality of Barbaracurus winklerorum sp. n.
Figures 250–251 in Review of the genus Babycurus Karsch, 1886 (Arachnida, Scorpiones, Buthidae), with descriptions of Barbaracurus gen. n. and two new species from Oman and Yemen
Figures 250–251: Barbaracurus zambonellii comb. n. female with newborns (first instar) before first ecdysis (250) and female with juveniles (second instar) after first ecdysis (251) from Eritrea, locality 15EH.
Figures 239–247 in Review of the genus Babycurus Karsch, 1886 (Arachnida, Scorpiones, Buthidae), with descriptions of Barbaracurus gen. n. and two new species from Oman and Yemen
Figures 239–247: Figures 239–244: Barbaracurus zambonellii comb. n. from Eritrea, locality 15EH. Figures 239–241. Male, metasoma and telson, lateral (239), ventral (240), and dorsal (241) views. Figures 242–244. Female, metasoma and telson, lateral (242), ventral (243), and dorsal (244) views. Figures 245–247: Barbaracurus yemenensis sp. n., Female holotype, metasoma and telson, lateral (245), dorsal (246), and ventral (247) views. Scale bars: 10 mm (239–241, 242–244, 245–247).
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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)
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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.