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Fig. 37 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 37. Digital rendering of the isolated right maxilloturbinal from Phascolarctos cinereus (TMM M- 2946) shown in (A) lateral, (B) rostral, (C) medial, and (D) caudal views. Labels indicate caudal and rostral ends of the maxilloturbinal for the lateral and medial views. Scale bar equals 1 cm.
Fig. 44. Character 16 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 44. Character 16 (presence or absence of rostral portion of endoturbinal I) optimized on Meredith et al. (2009) topology. For character state 16.0, the rostral portion of endoturbinal I is present. For character state 16.1, the rostral portion is absent. States for this character are illustrated in figure 39.
Fig. 46. Character 11 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 46. Character 11 (presence or absence of an uncinate process of nasoturbinal) optimized on Meredith et al. (2009) topology. Character state 11.0 is the presence of an uncinate process; 11.1 is the absence of the uncinate process. States for this character are illustrated in figure 14. Abbreviation: NA, not applicable.
Fig. 32 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 32. Coronal CT images showing caudalmost attachment of the maxilloturbinal (char. 3). (A) maxilloturbinal attaches to the floor of the nasal cavity (char. 3.0), Phalanger orientalis, C201 (AMNH 157211); (B) maxilloturbinal attaches to the lateral wall of the nasal cavity (char. 3.1), Macrotis lagotis, C370 (AMNH 74486). Both scale bars equal 5 mm. Abbreviations: Endo, endoturbinal; ONS, ossified nasal septum.
Fig. 10 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 10. Coronal CT images showing the morphology of the ossified rostral nasoturbinal (char. 6). (A) rostral nasoturbinal is well developed as a slender ventromedial directed process (char. 6.0), Dasyurus hallucatus, C160 (TMM M-6921), scale bar equals 5 mm; (B) rostral nasoturbinal is a small, robust bony process with a ventromedial inflection (char. 6.1), Dromiciops gliroides, C136 (FMNH 127463), scale bar equals 1 mm. Abbreviations: Endo, endoturbinal; ONS, ossified nasal septum.
Fig. 17 in Comparative Morphology Of The Internal Nasal Skeleton Of Adult Marsupials Based On X-Ray Computed Tomography
Fig. 17. Coronal CT slice through the nasal cavity of Didelphis virginiana, C432 (TMM M-2517) showing two different terminology schemes for naming ectoturbinals and endoturbinals. Left side of figure is labeled with terminology following Allen (1882), which is used in this paper. Right side of figure is labeled using terminology of Paulli (1900a). Scale bar equals 5 mm. Abbreviations: Ecto, ectoturbinal; Endo, endoturbinal.
Figure 1 from: Michalik P, Piacentini L, Lipke E, Ramirez M (2013) The enigmatic Otway odd-clawed spider (Progradungula otwayensis Milledge, 1997, Gradungulidae, Araneae): Natural history, first description of the female and micro-computed tomography of the male palpal organ. ZooKeys 335: 101-112. https://doi.org/10.3897/zookeys.335.6030
Figure 1 - Distribution map of Progradungula otwayensis in the Great Otway National Park, Victoria (Australia). Red marks indicate localities for the present study; black circles indicate localities given by Milledge (1997).
Figure 4 from: Michalik P, Piacentini L, Lipke E, Ramirez M (2013) The enigmatic Otway odd-clawed spider (Progradungula otwayensis Milledge, 1997, Gradungulidae, Araneae): Natural history, first description of the female and micro-computed tomography of the male palpal organ. ZooKeys 335: 101-112. https://doi.org/10.3897/zookeys.335.6030
Figure 4 - Female genitalia. A Lateral view of the dome-shaped genital area (compare also to Fig. 3A) (MACN-Ar 30667) B Sagital section through genital area obtained by micro-CT (MACN-Ar 30667) C Posterior view of genital area (MACN-Ar 30667). Spermathecae in anterior (D) and ventral view (E) (ZIMG II/28128). Abbreviation: B bursa; EF epigastric furrow; GP genital pockets; Gl glands; PF postepigastric fold; Sp spermathecae; Ue uterus externus.
Figure 3 from: Michalik P, Piacentini L, Lipke E, Ramirez M (2013) The enigmatic Otway odd-clawed spider (Progradungula otwayensis Milledge, 1997, Gradungulidae, Araneae): Natural history, first description of the female and micro-computed tomography of the male palpal organ. ZooKeys 335: 101-112. https://doi.org/10.3897/zookeys.335.6030
Figure 3 - Somatic characters of the female of Progradungula otwayensis. A Lateral view of prosoma and opisthosoma (ZIMG II/28128) B Dorsal view of prosoma (MV) C Ventral view of Prosoma (MV) D Frontal view of ocular area (ZIMG II/28128) E Ventral view of opisthosoma F Tarsus of leg I G Tarsus of leg IV H Calamistrum. I Ventral view of spinnerets. Scale bar in F–H is 500 µm.
Figure 2 from: Michalik P, Piacentini L, Lipke E, Ramirez M (2013) The enigmatic Otway odd-clawed spider (Progradungula otwayensis Milledge, 1997, Gradungulidae, Araneae): Natural history, first description of the female and micro-computed tomography of the male palpal organ. ZooKeys 335: 101-112. https://doi.org/10.3897/zookeys.335.6030
Figure 2 - A Habitat with supporting web (blue arrow) and sturdy thread (red arrows) connecting with the retreat in the hollow of a Nothofagus cunninghamii tree B Catching ladder in front of a hollow in a large tree fern C Immature male of Progradungula otwayensis holding the catching ladder.
Figure 5 from: Michalik P, Piacentini L, Lipke E, Ramirez M (2013) The enigmatic Otway odd-clawed spider (Progradungula otwayensis Milledge, 1997, Gradungulidae, Araneae): Natural history, first description of the female and micro-computed tomography of the male palpal organ. ZooKeys 335: 101-112. https://doi.org/10.3897/zookeys.335.6030
Figure 5 - Right male palp of Progradungula otwayensis (ZIMG II/28127). A Prolateral view; the arrow marks the section plane of Fig. 5B B Section of the volume rendered male palp C Surface model of the spermophor superimposed on the volume rendering of the male palp (prolateral, ventral and retrolateral views). The cymbium, subtegulum and tegulum are partly removed in the prolateral view to show tendons, muscles and hematodochae. The arrow points to the opening of the embolus. Abbreviation: Cb cymbium; E embolus; m29 muscle 29; m30 muscle 30; mA median apophysis; mH median hematodocha; PE process of embolus; S spermophor; St subtegulum; Te tegulum; tm29 tendon of muscle 29; tm30 tendon of muscle 30.
Figure 5 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 5 - Donacia semicuprea. Volume rendering of the virtual sections – sagittal, right to the median – through the abdomina of a mating pair. The opening of the bursa copulatrix (circle) is armed with a conspicuous ring muscle. C: the compound muscle inserting at the manubrium and extending to the lateral rims of the basal orifice of the median lobe; M: median lobe; P: paramere.
Figure 1 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 1 - Schematic drawing of the sclerotised part of a Donaciinae aedeagus. The given terms of orientation do not refer to the position within the male abdomen nor within the female during copulation since these structures are rotated during mating. The median lobe is shaded grey. Paramere, tegminal ring and manubrium compose the tegmen.
Figure 6 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 6 - Donacia semicuprea, Volume rendering of ca. 390 virtual sections – sagittal, paramedian, tilted to the right – through the abdomina of a mating pair. The bursa is elongate, as seen from the proximal wall (arrow). The yellow shining areas inside the female abdomen are parts of the left ovary. P: paramere.
Figure 3 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 3 - Lilioceris lilii, copulating pair. Volume rendering of the virtual sections right to the median, digitally stained. The terminal part of the spermathecal duct can be seen immediately left to the bursa wall. The shape of the bursa is nearly globular. B: bursa copulatrix; C: the compound muscle inserting at the manubrium and extending to the lateral rims of the basal orifice of the median lobe; E: endophallus; M: median lobe.
Figure 2 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 2 - Lilioceris lilii. Virtual section – sagittal, median - through the abdomina of a mating pair. The endophallus is fully inflated (2a), the flagellum is positioned over the opening of the spermathecal duct (2b).
Figure 4 from: Schmitt M, Uhl G (2015) Functional morphology of the copulatory organs of a reed beetle and a shining leaf beetle (Coleoptera: Chrysomelidae: Donaciinae, Criocerinae) using X-ray micro-computed tomography. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 193–203. https://doi.org/10.3897/zookeys.547.7143
Figure 4 - Lilioceris lilii, as Fig. 3, the opening of the bursa copulatrix and the adjacent part of the bursa wall (circle) do not show significant muscle layers but are mere membranes. B: bursa copulatrix; M: median lobe.
Myocardial Stress Perfusion Computed Tomography in the Evaluation of Patients With Acute Chest Pain Using a Novel 3rd Generation Dual-source CT System
ClinicalTrials.gov study NCT02308475. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Low-dose Whole Body Computed Tomography Scanning
ClinicalTrials.gov study NCT03425032. IPD Sharing: NO. Countries: 0. Publications: 2.
Low-Dose Chest Computed Tomography Screening for Lung Cancer in Survivors of Hodgkin's Disease
ClinicalTrials.gov study NCT00601146. IPD Sharing: NO. Countries: 1. Publications: 0.
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Allen Brain Atlas
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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.