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64 results for “Dir”
Fig. 7 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 7. Photographs and line drawings of the left lateral view of the skull of Sternotherus odoratus based on the least mature (M-2980, A) and most mature (M-2983, B) specimens from the SMRS.
Fig. 6 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 6. Photographs and line drawings of the dorsal and ventral views of the skull of Sternotherus odoratus based on the most mature specimen from the SMRS (M-2983).
Fig. 3 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 3. Continuous characters included in morphometric and growth analyses. Numbers refer to character descriptions in text. Dorsal view of skull (A), ventral view of skull (B), left lateral view of skull (C), rostral view of skull (D), dorsal view of lower jaw (E), and left lateral view of lower jaw (F).
Fig. 32 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 32. Photographs and line drawings of the dorsal surface of the parabasisphenoid in M-2990 (A), M-2978 (B), and M-2982 (C), and a caudal view of the parabasisphenoid in articulation with the prootic and pterygoid in M-2982 (D). Note the variable development of the rostrum basisphenoidale (rb), trabeculae (tr), and the caudolateral concavities that contribute to the ventral margin of the cavum labyrinthicum (cl).
Fig. 2 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 2. Relationship between carapace length and plastron length (A), condylobasal length (B), and greatest length of the skull (C) for Sternotherus odoratus from the SMRS.
Fig. 1 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 1. Phylogenetic hypotheses regarding the systematic position of Sternotherus odoratus. The sister taxon to Kinosternoidea within Cryptodira is currently a point of contention (Meylan and Gaffney, 1989; Krenz et al., 2005; Near et al., 2005). Kinosternoidea here is considered to reflect the crown-clade of Kinosternidae + Dermatemys. This usage follows Joyce et al. (2004) and reflects the unresolved position of Emarginachelys (Shaffer et al., 1997). Asterisks (*) denote extinct lineages.
Fig. 15 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 15. Photograph and line drawing of the rostroventral surface of the left quadrate and basicranium of M-2981. Note the relatively close approximation of the laterally positioned quadratojugal to the articular surface of the quadrate, and contact between the quadrate ramus of pterygoid and the articular surface of quadrate.
Fig. 28 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 28. Photographs and line drawings of the left basicranial region in posterolateral view through the fenestra postotica in M-2983 (A) and M-2995 (B). Note the increased ossification in M-2983 (a large, mature male) relative to M-2995 (an immature male). This increased ossification is especially apparent around the fenestra ovalis (fo) and the lateral margin of the foramen jugular posterius (fjp). The columella auris is absent in both specimens.
Fig. 29 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 29. Photographs and line drawings of the left basicranial region in M-2969 (A), the exoccipital and basioccipital in left lateral view in M-2960 (B), and the medial view of the prootic and opisthotic in M-2964 (C). The floor of the recessus scalae tympani is formed by a caudal shelf of the opisthotic and a rostral extension of the exoccipital. X in M-2960 marks a concavity in the basioccipital that accepts the distal end of the cochlear duct (cochlear recess). X in M-2964 marks the notch in the processus interfenestralis of the opisthotic through which the cochlear duct extends caudomedially.
Fig. 23 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 23. Photographs and line drawings of the dorsal surface of the pterygoid in M-2960 (A, left) and M-2990 (B, right). The foramen caroticum laterale, which transmits the palatine artery rostrally, was closed dorsally in M-2960 by the overlying prootic, whereas in M-2990 the dorsal margin of this foramen is formed by the pterygoid. The pterygoid falls just short of forming the entire medial margin of the foramen caroticum laterale in M-2990. This margin would have been closed medially by the parabasisphenoid. Arrows show path of internal carotid artery.
Fig. 4 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 4. Illustrations of three skeletal characters often used to estimate maturity in turtles and their graphical relationship with greatest length of the carapace for Sternotherus odoratus from the SMRS. These characters include closure of the costoperipheral fontanelles (A), closure of the ectepicondylar foramen in the humerus (B), and closure of the otic fontanelle (C). Shaded squares represent juvenile males, clear squares represent juvenile females. Shaded circles represent adult males, clear circles represent adult females. The transformation of these features during postnatal ontogeny has a variable relationship with the average carapace length at which specimens become sexually mature in southern populations of S. odoratus (dashed lines; Tinkle, 1961).
Figure 2 in Prevalence of cestodes infection among school children of urban parts of Lower Dir district, Pakistan
Figure 2. Tapeworm species eggs. (A) Taenia saginata; (B) Hymenolepis nana; (C) Hymenolepis diminuta.
Figure 1 in Euphlyctis Cyanophlyctis Schneider, 1799 (Amphibia: Dicroglossidae) in district Lower Dir, Pakistan
Figure 1. Left upper is map of Pakistan, Left lower is the Khyber Pakhtumkhwa province and the encircle represents the lower Dir district in which the red spots are showing collection sites.
Figure 2 in Euphlyctis Cyanophlyctis Schneider, 1799 (Amphibia: Dicroglossidae) in district Lower Dir, Pakistan
Figure 2. (A & B): frog specimens (C-F): sites of collection of the specimens Euphlyctis cyanophylictis in Lower Dir, Pakistan.
Figures. Exploring the Archived Web in a Highly Transformative Age. Proceedings. dir. S.Gebeil & J.-C. Peyssard
<p>Given recent global crises, the imperative to preserve and analyze online content has never been more vital to enhancing our comprehension of contemporary changes. This book, the outcome of an 5th international RESAW conference that convened experts from 50 disciplines across 17 countries in Marseille in June 2023, tackles the multifaceted challenges of web archiving. It underscores the dual roles of web archiving, as a cultural heritage and as essential source material for researchers delving into contemporary events and the evolution of digital culture. Through 20 chapters, it explores the development of web archiving and examines how technical, cultural, geopolitical, societal and environmental shifts impact its conception, study and dissemination. </p> <p> </p>
Figure 1 in Prevalence of intestinal parasitic diseases in school children of rural areas of district Lower Dir, Pakistan
Figure 1. Parts of the region studied.
Figure 1 in Prevalence of cestodes infection among school children of urban parts of Lower Dir district, Pakistan
Figure 1. Study sites of the area in Lower Dirdistrict (Khyber, Pakhtunkhwa, province, Pakistan.
Figure 3. A in Prevalence of intestinal nematodes infection in school children of urban areas of district Lower Dir, Pakistan
Figure 3. A. lumbricoides fertile egg.
Figure 2. A in Prevalence of intestinal nematodes infection in school children of urban areas of district Lower Dir, Pakistan
Figure 2. A. lumbricoides unfertile egg.
Figure 6 in Prevalence of intestinal nematodes infection in school children of urban areas of district Lower Dir, Pakistan
Figure 6. Trichuris trichiura.
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)
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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.