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163 results for “Alligator”
Figure 4 from: Richardson DJ, Moser WE, Hammond CI, Lazo-Wasem EA, McAllister CT, Pulis EE (2017) A new species of leech of the genus Placobdella (Hirudinida, Glossiphoniidae) from the American alligator (Alligator mississippiensis) in Mississippi, USA. ZooKeys 667: 39-49. https://doi.org/10.3897/zookeys.667.10680
Figure 4 - Dorsal surface, anal region. Medial row of small but distinct papillae (indicated by arrows) lying between the anus and commencement of prominent paramedial papillae, on A Placobdella rugosa (YPM 083787) B Placobdella ornata, syntype (YPM 000256) C Placobdella ali (YPM 058254) D Placobdella multilineata (YPM 083782). Scale bars: 3 mm (A), 1 mm (B), 4 mm (C), 2 mm (D).
Figure 1 from: Richardson DJ, Moser WE, Hammond CI, Lazo-Wasem EA, McAllister CT, Pulis EE (2017) A new species of leech of the genus Placobdella (Hirudinida, Glossiphoniidae) from the American alligator (Alligator mississippiensis) in Mississippi, USA. ZooKeys 667: 39-49. https://doi.org/10.3897/zookeys.667.10680
Figure 1 - Holotype specimen of Placobdella siddalli Richardson & Moser, YPM 083857 A Dorsal surface B Ventral surface. Scale bar: 2 mm.
Figure 3 from: Richardson DJ, Moser WE, Hammond CI, Lazo-Wasem EA, McAllister CT, Pulis EE (2017) A new species of leech of the genus Placobdella (Hirudinida, Glossiphoniidae) from the American alligator (Alligator mississippiensis) in Mississippi, USA. ZooKeys 667: 39-49. https://doi.org/10.3897/zookeys.667.10680
Figure 3 - Paratype specimen of Placobdella siddalli Richardson & Moser, YPM 083876 mounted in Canada balsam, crop ceca (CC), anterior salivary gland (A), posterior salivary gland (P), proboscis (Pr). Scale bar: 2 mm.
Figure 2 from: Richardson DJ, Moser WE, Hammond CI, Lazo-Wasem EA, McAllister CT, Pulis EE (2017) A new species of leech of the genus Placobdella (Hirudinida, Glossiphoniidae) from the American alligator (Alligator mississippiensis) in Mississippi, USA. ZooKeys 667: 39-49. https://doi.org/10.3897/zookeys.667.10680
Figure 2 - Internal anatomy of Placobdella siddalli Richardson & Moser, YPM 083875. Dorsal view, anterior salivary gland (A), posterior salivary gland (P), proboscis (Pr). Scale bar: 1 mm.
Figure 6 from: Richardson DJ, Moser WE, Hammond CI, Lazo-Wasem EA, McAllister CT, Pulis EE (2017) A new species of leech of the genus Placobdella (Hirudinida, Glossiphoniidae) from the American alligator (Alligator mississippiensis) in Mississippi, USA. ZooKeys 667: 39-49. https://doi.org/10.3897/zookeys.667.10680
Figure 6 - Ventral surface of various species of Placobdella. Note the diameter of the caudal sucker relative to body length and width of individuals. A Placobdella ali (YPM 058279) B Placobdella ornata (YPM 083847) C Placobdella siddalli Richardson & Moser (YPM 083857) D Placobdella multilineata (YPM 083850) E Placobdella papillifera (YPM 083856) F Placobdella parasitica (YPM 059092) G Placobdella rugosa (YPM 056680). Scale bars: 10 mm (A, F), 2 mm (B), 3 mm (C), 5 mm (D, G), 1 mm (E).
Alligator Method Test - The Data
<p>more data at <a href="https://github.com/RGZM/alligator-mt-data">https://github.com/RGZM/alligator-mt-data</a></p>
Figure 11 in Growth and textural ageing in long bones of the American alligator Alligator mississippiensis (Crocodylia: Alligatoridae)
Figure 11. Relationships between bone texture type and femur length body-size proxy for individuals with known habitat. A, femora. B, tibiae. C, humeri.
Figure 5 in Growth and textural ageing in long bones of the American alligator Alligator mississippiensis (Crocodylia: Alligatoridae)
Figure 5. Relationships between femur length body-size proxy and element percentage maturity based on cluster analyses of long bone landmarks. A, femora: three individuals 25% mature, 21 individuals 50% mature, 61 individuals 75% mature, 24 individuals 100% mature. B, tibiae: one individual 0% mature, 16 individuals 33% mature, 24 individuals 67% mature, four individuals 100% mature. C, humeri: three individuals 0% mature, seven individuals 33% mature, 32 individuals 67% mature, six individuals 100% mature.
Data from: A novel accessory respiratory muscle in the American alligator (Alligator mississippiensis)
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Efficacy of using environmental DNA (eDNA) to detect alligator snapping turtles
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Data from: Ontogeny of the middle-ear air-sinus system in Alligator mississippiensis (Archosauria: Crocodylia)
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Data from: Associations between testosterone and immune activity in alligators depend on bacteria species and temperature
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Fatigue resistant jaw muscles facilitate long-lasting courtship behavior in the southern alligator lizard (Elgaria multicarinata)
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Data from: Ontogenetic development of otoliths in alligator gar
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Epigenetic Programming Alterations in Alligators from Environmentally Contaminated Lakes
GEO Series GSE82318. Alligator mississippiensis. 4 samples. Type: Methylation profiling by genome tiling array.
Data from: MHC class I diversity predicts non-random mating in Chinese alligators (Alligator sinensis)
The major histocompatibility complex (MHC) plays numerous important roles in kin recognition, pathogen resistance, and mate selection. Research in fish, birds, and mammals have suggested that individuals optimize MHC diversity, and therefore offspring fitness, when choosing mates. In reptiles, however, it is unclear whether female mate choice is based on genome-wide genetic characteristics such as microsatellites DNA loci, on particular functional trait loci (e.g., MHC) or on both, and MHC effects on mate choice remain relatively under-studied. Herein, we used 13 microsatellite loci and two MHC class I loci to investigate female mate choice of Chinese alligators (Alligator sinensis) in the semi-natural condition. We also determined correlations between the MHC genotype of breeding males and male reproductive success. We found that MHC-heterozygous males harbour a greater reproductive success, which possibly is the reason that those males were more preferred by the females than MHC-homozygous males. Furthermore, MHC class I amino-acid distance and functional distance of true mating pairs were higher compared with that of randomly sampled pairs. Analysis of microsatellites revealed that despite mate choice, individuals did not completely avoid inbreeding. These findings are the first evidence of MHC-associated mate choice in Chinese alligators, and they suggest that females may adopt different mating strategies after assessing MHC characteristics of potential mates.
Fig. 5 in Thermal ecology of the Pygmy Alligator Lizard, Gerrhonotus parvus Knight and Scudday, 1985 (Squamata: Anguidae), in Nuevo Léon, Mexico
Fig. 5. Specimens of (A) male Gerrhonotus parvus and (B) female Gerrhonotus parvus.
A Study to Evaluate the Efficacy and Safety of Fenestrated Cup Forceps Versus Fenestrated Alligator Forceps for Performing Transbronchial Lung Biopsy in Patients With Sarcoidosis
ClinicalTrials.gov study NCT02405897. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Data from: MHC class I diversity predicts non-random mating in Chinese alligators (Alligator sinensis)
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American alligator tooth dental lamina RNA-seq
GEO Series GSE85093. Alligator mississippiensis. 17 samples. Type: Expression profiling by high throughput sequencing.
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OpenNeuro
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