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123 results for “WATSON”
Figure 5 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 5. Distribution of Scaphander gracilis, based on reliable literature records (shells) and newly sampled material (complete specimen).
On following pages: 190. Hairy Fruit-eating Bat (Artibeus hirsutus); 191. Fringed Fruit-eating Bat (Artibeus fimbriatus); 192. Ecuadorian Fruit-eating Bat (Artibeus aequatorialis); 193. Jamaican Fruit-eating Bat (Artibeus jamaicensis); 194. Dark Fruit-eating Bat (Artibeus obscurus); 195. Schwartz's Fruit-eating Bat (Artibeus schwartz); 196. Great Fruit-eating Bat (Artibeus lituratus); 197. Large Fruit-eating Bat (Artibeus amplus); 198. Flat-faced Fruit-eating Bat (Artibeus planirostris); 199. Rosenberg's Fruit-eating Bat (Artibeus rosenbergi); 200. Thomas's Fruit-eating Bat (Artibeus watson); 201. Toltec Fruit-eating Bat (Artibeus toltecus); 202. Pygmy Fruit-eating Bat (Artibeus phaeotis); 203. Gervais's Fruit-eating Bat (Artibeus cinereus); 204. Andersen's Fruit-eating Bat (Artibeus anderseni); 205. Little Fruit-eating Bat (Artibeusravus); 206. Aztec Fruit-eating Bat (Artibeus aztecus); 207. Bogota Fruit-eating Bat (Artibeus bogotensis); 208. Silvery Fruit-eating Bat (Artibeus glaucus); 209. Dwarf Fruit-eating Bat (Artibeus gnomus); 210. Jamaican Fig-eating Bat (Ariteus flavescens); 211. Tree Bat (Ardops nicholls); 212. Red Fruit Bat (Stenoderma rufum); 213. Wrinkle-faced Bat (Centurio senex): 214. Ipanema Broad-nosed Bat (Pygoderma bilabiatum); 215. Visored Bat (Sphaeronycteris toxophyllum); 216. Little White-shouldered Bat (Ametrida centurio); 217. Cuban Fig-eating Bat (Phyllops falcatus). in Phyllostomidae
On following pages: 190. Hairy Fruit-eating Bat (Artibeus hirsutus); 191. Fringed Fruit-eating Bat (Artibeus fimbriatus); 192. Ecuadorian Fruit-eating Bat (Artibeus aequatorialis); 193. Jamaican Fruit-eating Bat (Artibeus jamaicensis); 194. Dark Fruit-eating Bat (Artibeus obscurus); 195. Schwartz's Fruit-eating Bat (Artibeus schwartz); 196. Great Fruit-eating Bat (Artibeus lituratus); 197. Large Fruit-eating Bat (Artibeus amplus); 198. Flat-faced Fruit-eating Bat (Artibeus planirostris); 199. Rosenberg's Fruit-eating Bat (Artibeus rosenbergi); 200. Thomas's Fruit-eating Bat (Artibeus watson); 201. Toltec Fruit-eating Bat (Artibeus toltecus); 202. Pygmy Fruit-eating Bat (Artibeus phaeotis); 203. Gervais's Fruit-eating Bat (Artibeus cinereus); 204. Andersen's Fruit-eating Bat (Artibeus anderseni); 205. Little Fruit-eating Bat (Artibeusravus); 206. Aztec Fruit-eating Bat (Artibeus aztecus); 207. Bogota Fruit-eating Bat (Artibeus bogotensis); 208. Silvery Fruit-eating Bat (Artibeus glaucus); 209. Dwarf Fruit-eating Bat (Artibeus gnomus); 210. Jamaican Fig-eating Bat (Ariteus flavescens); 211. Tree Bat (Ardops nicholls); 212. Red Fruit Bat (Stenoderma rufum); 213. Wrinkle-faced Bat (Centurio senex): 214. Ipanema Broad-nosed Bat (Pygoderma bilabiatum); 215. Visored Bat (Sphaeronycteris toxophyllum); 216. Little White-shouldered Bat (Ametrida centurio); 217. Cuban Fig-eating Bat (Phyllops falcatus).
On following pages: 729. Narrow-nasal Leaf-eared Mouse (Phyllotis stenops); 730. Pearson's Leaf-eared Mouse (Phyllotis pearson); 731. Western Leaf-eared Mouse (Phyllotis occidens); 732. Ancash Leaf-eared Mouse definitus); 733. Lima Leaf-eared Mouse (Phyllotis limatus); 734. Master Leaf-eared Mouse (Phyllotis magisten); 735. Yellow-rumped Leaf-eared Mouse (Phyllotis xanthopygus); 736. Osgood's Leaf-eared Mouse (Phyllotis (Phyllotis osgoodi); 737. Bunch Grass Leaf-eared Mouse (Phyllotis osilae); 738. Capricorn Leaf-eared Mouse (Phyllotis caprinus); 739. Tucuman Leaf-eared Mouse (Phyllotis tucumanus); 740. Walnut Leaf-eared Mouse (Phyllotis nogalaris); 741. Darwin's Leaf-eared Mouse (Phyllotis darwinii); 742. Los Alisos Leaf-eared Mouse (Phyllotis alisosiensis); 743. Anita's Leaf-eared Mouse (Phyllotis anitae); 744. Bonarian Leaf-eared Mouse (Phyllotis bonariensis), 745. Wolffsohn's Leaf-eared Mouse (Tapecomys wolffsohni); 746. Tapecua Leaf-eared Mouse (Tapecomys primus); 747. Southern Big-eared Mouse (Loxodontomys micropus); 748. Delicate Salt Flat Mouse (Salinomys delicatus), 749. Pearson's Chaco Mouse (Andalgalomys pearson); 750. Olrog's Chaco Mouse (Andalgalomys olrogi); 751. Garlepp's Mouse (Galenomys garleppi); 752. Painted Big-eared Mouse (Auliscomys pictus); 753. Bolivian Bigeared Mouse (Auliscomys boliviensis); 754. Andean Big-eared Mouse (Auliscomys sublimis); 7565. Sumichrast's Vesper Rat (Nyctomys sumichrasti); 756. Yucatan Vesper Rat (Otonyctomys hatt); 757. Big-eared Climbing Rat (Ototylomys phyllotis); 758. La Pera Climbing Rat (Ototylomys chiapensis); 759. Peters's Climbing Rat (Tylomys nudicaudus): 760. Chiapan Climbing Rat (Tylomys bullaris); 761. Tumbala Climbing Rat (Tylomys tumbalensis); 762. Watson's Climbing Rat (Tylomys watson); 763. Fulvous-bellied Climbing Rat (Tylomys fulviventen; 764. Panama Climbing Rat (Tylomys panamensis); 765. Mira Climbing Rat (Tylomys mirae). in Cricetidae
On following pages: 729. Narrow-nasal Leaf-eared Mouse (Phyllotis stenops); 730. Pearson's Leaf-eared Mouse (Phyllotis pearson); 731. Western Leaf-eared Mouse (Phyllotis occidens); 732. Ancash Leaf-eared Mouse definitus); 733. Lima Leaf-eared Mouse (Phyllotis limatus); 734. Master Leaf-eared Mouse (Phyllotis magisten); 735. Yellow-rumped Leaf-eared Mouse (Phyllotis xanthopygus); 736. Osgood's Leaf-eared Mouse (Phyllotis (Phyllotis osgoodi); 737. Bunch Grass Leaf-eared Mouse (Phyllotis osilae); 738. Capricorn Leaf-eared Mouse (Phyllotis caprinus); 739. Tucuman Leaf-eared Mouse (Phyllotis tucumanus); 740. Walnut Leaf-eared Mouse (Phyllotis nogalaris); 741. Darwin's Leaf-eared Mouse (Phyllotis darwinii); 742. Los Alisos Leaf-eared Mouse (Phyllotis alisosiensis); 743. Anita's Leaf-eared Mouse (Phyllotis anitae); 744. Bonarian Leaf-eared Mouse (Phyllotis bonariensis), 745. Wolffsohn's Leaf-eared Mouse (Tapecomys wolffsohni); 746. Tapecua Leaf-eared Mouse (Tapecomys primus); 747. Southern Big-eared Mouse (Loxodontomys micropus); 748. Delicate Salt Flat Mouse (Salinomys delicatus), 749. Pearson's Chaco Mouse (Andalgalomys pearson); 750. Olrog's Chaco Mouse (Andalgalomys olrogi); 751. Garlepp's Mouse (Galenomys garleppi); 752. Painted Big-eared Mouse (Auliscomys pictus); 753. Bolivian Bigeared Mouse (Auliscomys boliviensis); 754. Andean Big-eared Mouse (Auliscomys sublimis); 7565. Sumichrast's Vesper Rat (Nyctomys sumichrasti); 756. Yucatan Vesper Rat (Otonyctomys hatt); 757. Big-eared Climbing Rat (Ototylomys phyllotis); 758. La Pera Climbing Rat (Ototylomys chiapensis); 759. Peters's Climbing Rat (Tylomys nudicaudus): 760. Chiapan Climbing Rat (Tylomys bullaris); 761. Tumbala Climbing Rat (Tylomys tumbalensis); 762. Watson's Climbing Rat (Tylomys watson); 763. Fulvous-bellied Climbing Rat (Tylomys fulviventen; 764. Panama Climbing Rat (Tylomys panamensis); 765. Mira Climbing Rat (Tylomys mirae).
FIGURES 10–12 in Hidden in plain sight: a morphological study revealing three new species of the skipper genus Drephalys Watson, 1893 (Lepidoptera: Hesperiidae) from Brazil
FIGURES 10–12. Male genitalia of Drephalys species. Structures as presented in figures 7–9. 10. D. heraclides. 11. D. phoenice. 12. D. phoenicoides.
FIGURES 7–9 in Hidden in plain sight: a morphological study revealing three new species of the skipper genus Drephalys Watson, 1893 (Lepidoptera: Hesperiidae) from Brazil
FIGURES 7–9. Male genitalia of Drephalys species. Tegumen, uncus, gnathos and saccus in lateral view; right valva in left, right and dorsal views; tegumen and uncus in dorsal view; aedeagus in left lateral and dorsal views; detail of the everted cornuti. 7. D. dracarys sp. n., 8. D. electrinus sp. n., 9. D. citrinus sp. n.
FIGURES 1–6 in Hidden in plain sight: a morphological study revealing three new species of the skipper genus Drephalys Watson, 1893 (Lepidoptera: Hesperiidae) from Brazil
FIGURES 1–6. Species of Drephalys in dorsal and ventral views. 1–2, D. dracarys sp. n. 3–4, D. electrinus sp. n. 5–6, D. citrinus sp. n.
FIGURE 4 in A new species of the genus Zographetus Watson, 1893 from China (Lepidoptera: Hesperiidae)
FIGURE 4. Habitat of the holotype of Zographetus rienki: Nanling National Nature Reserve of Guangdong. Photographed by Guoxi Xue.
FIGURE 5 in A new species of the genus Zographetus Watson, 1893 from China (Lepidoptera: Hesperiidae)
FIGURE 5. Habitat of the female paratype of Zographetus rienki: Mt. Shengtangshan, Dayaoshan National Nature Reserve of Guangxi. Photographed by Guoxi Xue.
FIGURE 1 in A new species of the genus Zographetus Watson, 1893 from China (Lepidoptera: Hesperiidae)
FIGURE 1. Adults of Zographetus rienki. A. male, from Hainan. B. male, from Guangdong. C. female. a. dorsal side. b. ventral side. Scale bar = 1 cm.
Cytoscape session for the potato knowledge graph extracted with IBM Watson's supervised NLP model
<p>2 cytoscape session files (.cys) representing the genotypic-phenotypic knowledge networks retrieved from scientific literature using IBM Watson. Input to these files were the following: </p> <ul> <li>cytoscapeSession_trainingSet: A training set of 34 full-test articles about potato flesh color</li> <li>cytoscapesession_testSet: A testing set of a 4023 abstracts from PubMed.</li> </ul> <p> </p>
FIGURE 2 in A new species of the genus Zographetus Watson, 1893 from China (Lepidoptera: Hesperiidae)
FIGURE 2. Male genitalia of Zographetus rienki. A. genital capsule, lateral view, aedeagus removed. B. ditto, oblique lateral view. C. ditto, anterior dorsal view. D. ditto, ventral view. E. ditto, dorsal view. F. aedeagus, dorsal view. G. ditto, lateral view.
FIGURE 3 in A new species of the genus Zographetus Watson, 1893 from China (Lepidoptera: Hesperiidae)
FIGURE 3. Female genitalia of Zographetus rienki. A. lateral view. B. oblique lateral view. C. ventral view. D. ditto, en- larged.
FIGURE 2 in Calliostoma frumari García, 2007 is a junior synonym of Ancistrobasis costulata (Watson, 1879) (Gastropoda: Seguenziidae)
FIGURE 2: Ancistrobasis costulata (Watson, 1879) morphotypes; A. MNHN unnumbered, MD55 specimen from Espírito Santo (MD55 sta. CB78, H 4.5, D 6.6 mm), apertural view; B–E. MZSP 70312, from Canopus; B. apertural view (H 3.4, D 5.0 mm); C. apical view; D. umbilical view; E. protoconch detail; F. MZSP 93485, from Canopus, apertural view (H 3.5, D 4.8 mm); G. MNHN unnumbered, MD55 specimen from Espírito Santo, apertural view (H 4.0, D 5.0 mm). H. MZSP 70313, from Canopus, apertural view (H 3.5, D 4.1 mm); I–K. same, specimen #2; I. apertural view (H 3.4, D 4.2 mm); J. apical view; K. umbilical view; L. same, specimen #4, protoconch detail under SEM.
Potential distribution prediction of Amaranthus palmeri S. Watson in China under current and future climate scenarios
<p>The vicious invasive alien plant <a name="_Hlk99445053"></a><em>Amaranthus palmeri</em> poses a serious threat to ecological security and food security due to its strong adaptability, competitiveness, and herbicide resistance. Predicting its potential habitats under current and future climate change is critical for monitoring and early warning. In this study, we used two sets of climate data, namely, WorldClim1.4 and RCPs (the historical climate data of WorldClim version 1.4 and future climate data of RCPs), WorldClim2.1 and SSPs (the historical climate data of WorldClim version 2.1 and future climate data of SSPs), to analyze the dominant environmental variables affecting the habitat suitability and predict the potential distribution of <em>A. palmeri </em>to climate change in China based on the MaxEnt model. The results show that (i) Temperature has a greater impact on the distribution of <em>A. palmeri</em>. The relative contributions of temperature-related variables count to 70 % or more, and the annual mean temperature (bio1) reached more than 40 %. (ii) At present, the potentially suitable area is widely distributed in the central-east and parts of southwest China, and the high suitable area is focused on the North China Plain. The potential suitable area predicted by WorldClim1.4 and WorldClim2.1 both accounts for about 31% of China's total land area. (iii) Future climate change will expand the suitable habitats to high latitudes and altitudes. The overall suitable area maximum increased to 44.93% under SSPs and 38.91% under RCPs. We conclude that climate change would increase the risk of <em>A. palmeri</em> expanding to high latitudes and altitudes, the results have practical implications for the effective long-term management in response to the global warming of <em>A. palmeri</em>.</p>
FIGURE 6 in A new species and morphological notes on the remarkable termitophilous genus Austrospirachtha Watson from Australia (Coleoptera: Staphylinidae: Aleocharinae)
FIGURE 6. Termite species from the nest from which Austrospirachtha carrijoi sp. nov. individuals were collected. Australitermes sp.: a, lateral view; c, dorsal view of the head. Nasutitermes sp.: b, lateral view; d, dorsal view of the head.
FIGURE 2 in A new species and morphological notes on the remarkable termitophilous genus Austrospirachtha Watson from Australia (Coleoptera: Staphylinidae: Aleocharinae)
FIGURE 2. Austrospirachtha carrijoi sp. nov., female, paratype: a, tergite II and sternite II "ring" modification by secondary sclerotization; b, habitus ventral.
FIGURE 1 in A new species and morphological notes on the remarkable termitophilous genus Austrospirachtha Watson from Australia (Coleoptera: Staphylinidae: Aleocharinae)
FIGURE 1. Austrospirachtha carrijoi sp. nov., female, holotype: a, habitus lateral; b, habitus dorsal. About 2.4 mm from the curvature of the abdomen to the apex of mandibula.
FIGURE 3 in A new species and morphological notes on the remarkable termitophilous genus Austrospirachtha Watson from Australia (Coleoptera: Staphylinidae: Aleocharinae)
FIGURE 3. Austrospirachtha carrijoi sp. nov., female, paratype: a, head ventral; b, mandibles (dorsal view); c, labrum (dorsal view); d, maxilla (dorsal view); e, meso-metathorax and first tergite attached to metanotum (seen through transparence as the meso-metanotum); f, elytron (dorsal view); g, elytron, close-up (dorsal view), details with arrows pointing to the three main bristles; h, tergite VIII (dorsal view); i, tergite VII (dorsal view), distal region, detail of chaetotaxy; j, sternite VIII (dorsal view); k, tergites IX and X (dorsal view).
FIGURE 4 in A new species and morphological notes on the remarkable termitophilous genus Austrospirachtha Watson from Australia (Coleoptera: Staphylinidae: Aleocharinae)
FIGURE 4. Austrospirachtha carrijoi sp. nov., and A. mimetes illustrations. a–e, Austrospirachtha carrijoi sp. nov.: a, dorsal view of abdomen; b, sternite IV (dorsal view); c, sternite V (dorsal view); d, sternite VI (dorsal view); e, sternite VII (dorsal view); f–j, A. mimetes: f, dorsal view of abdomen; g, sternite IV (dorsal view); h, sternite V (dorsal view); i, sternite VI (dorsal view); j, sternite VII (dorsal view). ps: primary sclerotization, se: secondary sclerotization. Blue arrows indicate pseudoappendages.
Effect of Education and Tele-consultancy Intervention Based on Watson Human Care Theory Individuals With COPD
ClinicalTrials.gov study NCT04256070. IPD Sharing: NO. Countries: 1. Publications: 2.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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