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637 results for “monkey”
PLATE 4 in A new species of capuchin monkey, genus Cebus Erxleben (Cebidae, Primates): found at the very brink of extinction in the Pernambuco Endemism Centre
PLATE 4. The blond capuchin showing the much lighter fur that covers (a) hand, and (b) feet, and their black and furless palms.
FIGURE 1 in A new species of capuchin monkey, genus Cebus Erxleben (Cebidae, Primates): found at the very brink of extinction in the Pernambuco Endemism Centre
FIGURE 1. Location of the new species, Cebus queirozi sp. nov. in the Pernambuco Endemism Center, according to this study, and distribution of the other Cebus species referred to the adjacent area, according to Groves (2001) and Rylands et al. (2005).
PLATE 3 in A new species of capuchin monkey, genus Cebus Erxleben (Cebidae, Primates): found at the very brink of extinction in the Pernambuco Endemism Centre
PLATE 3. The blond capuchin showing (a) head and shoulders, and (b) lateral view of the face and neck, with a furless, accentuated pendulous throat flap.
Reduced serotonergic transmission alters sensitivity to cost and reward via 5-HT1A and 5-HT1B receptors in monkeys
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54-29 Monkey Stamp
Source: Objaverse 1.0 / Sketchfab
Image distortion data from "An open-source MRI compatible frame for multimodal presurgical mapping in macaque and capuchin monkeys"
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Distribution. Widespread in the upper Amazon, extending from NW Brazil (W of rios Negro, upper Uaupés, and Amazonas-Solimoes) into SE Colombia (S of the Rio Tomo in the Orinoco Basin, and perhaps the upper Rio Guyabero), and S into the Ecuadorian Amazon and NE Peru (to the N bank of the rios Maranon and Amazonas, W as far as the Rio Chinchipe); it occurs also S of the Rio Solimoes in a small area on the lower Rio Purus. Ma's Night Monkey (A. nancymaae) replaces it in a small enclave N of the Rio Maranon between the lower rios Tigre and Pastaza. in Aotidae
Distribution. Widespread in the upper Amazon, extending from NW Brazil (W of rios Negro, upper Uaupés, and Amazonas-Solimoes) into SE Colombia (S of the Rio Tomo in the Orinoco Basin, and perhaps the upper Rio Guyabero), and S into the Ecuadorian Amazon and NE Peru (to the N bank of the rios Maranon and Amazonas, W as far as the Rio Chinchipe); it occurs also S of the Rio Solimoes in a small area on the lower Rio Purus. Ma's Night Monkey (A. nancymaae) replaces it in a small enclave N of the Rio Maranon between the lower rios Tigre and Pastaza.
Data from: Not just females: the socio-ecology of social interactions between spider monkey males
<p class="MsoNormal"><span>Male-male relationships are mostly characterized by competition. However, males also cooperate with one another if socio-ecological conditions are suitable. Due to their male philopatry, need for cooperation in home range defence and high degree of fission-fusion dynamics, spider monkeys provide an opportunity to investigate how male-male interactions are associated with socio-ecological factors, such as the presence of potentially receptive females, the degree of food availability and the likelihood of home range defence. We tested predictions about changes in social interactions between wild spider monkey males in relation to these factors. First, males did not change their interaction patterns when potentially receptive females were in the subgroup compared to when they were absent. Second, males tended to be less tolerant of one another when feeding, but spent more time grooming, in contact and proximity with one another when food availability was lower than when it was higher. Third, males exchanged fewer embraces, spent less time grooming, in proximity and in contact with one another, and spent more time vigilant at the home range boundary area than at other locations. Our findings contribute to the understanding of social flexibility and the importance of considering males in socio-ecological models of any group-living species.</span></p>
On following pages: 117. Mindoro Pallid Flying Fox (Desmalopex microleucopterus); 118. Fijian Monkey-faced Fruit Bat (Mirimiri acrodonta); 119. Bougainville Monkey-faced Fruit Bat (Pteralopex anceps); 120. Guadalcanal Monkey-faced Fruit Bat (Pteralopex atrata); 121. Montane Monkey-faced Fruit Bat (Pteralopex pulchra); 122. New Georgia Monkey-faced Fruit Bat (Pteralopex taki); 123. Greater Monkey-faced Fruit Bat (Pteralopex flanneryi), 124. Black-bellied Blossom Bat (Melonycteris melanops); 125. Fardoulis's Blossom Bat (Nesonycteris fardoulisi); 126. Woodford's Blossom Bat (Nesonycteris woodford)). in Pteropodidae
On following pages: 117. Mindoro Pallid Flying Fox (Desmalopex microleucopterus); 118. Fijian Monkey-faced Fruit Bat (Mirimiri acrodonta); 119. Bougainville Monkey-faced Fruit Bat (Pteralopex anceps); 120. Guadalcanal Monkey-faced Fruit Bat (Pteralopex atrata); 121. Montane Monkey-faced Fruit Bat (Pteralopex pulchra); 122. New Georgia Monkey-faced Fruit Bat (Pteralopex taki); 123. Greater Monkey-faced Fruit Bat (Pteralopex flanneryi), 124. Black-bellied Blossom Bat (Melonycteris melanops); 125. Fardoulis's Blossom Bat (Nesonycteris fardoulisi); 126. Woodford's Blossom Bat (Nesonycteris woodford)).
Cumulative germination of seeds ingested by black howler monkeys
<p><strong>Premise of the Study:</strong> Primates are important seed dispersers, especially for large-seeded (> 1 cm length) tropical species in continuous and fragmented rainforests.</p> <p><strong>Methods:</strong> In three forest fragments within the Montes Azules Biosphere Reserve, southern Mexico, we investigated the effect of howler monkeys´ (Alouatta pigra) gut passage on the germination rate and maximum germination (%) of native large-seeded species. One group of howler monkeys, per fragment, was followed and fresh feces collected. Large seeds were removed to compare their germination success with non-ingested seeds of the same species collected underneath parent plants.</p> <p><strong>Results:</strong> Feces contained large seeds from seven tree species and one liana species: Ampelocera hottlei, Castilla elastica, Dialium guianense, Garcinia intermedia, Pourouma bicolor, Spondias mombin, Trophis racemosa and the liana Abuta panamensis. Except for G. intermedia, ingested seeds showed significantly greater germination rates than non-ingested seeds. Non-ingested seeds of D. guianense showed negligible germination. Regarding maximum germination, ingested seeds of D. guianense, P. bicolor, S. mombin, T. racemosa and A. panamensis showed significantly greater germination percentage; while G. intermedia showed significantly lower germination percentage and no effect of seed ingestion was observed on A. hottlei and C. elastica.</p> <p><strong>Conclusions:</strong> In general, seed ingestion by howler monkeys confers greater germination rates than non-ingested seeds. Greater germination rates reduce predation probabilities and increases seedling establishment in forest fragments. Primate dispersal services contribute to germination heterogeneity within plant populations of old-growth forest species and to their persistence in forest fragments.</p>
On following pages 4 Brumback s Nıgm Monkey (Aorus brumbeckı) 5 Humboldt s Nıght Monkey (Aorus mvırgaruså 6 Spıx s Nıght Monkey (Aotus vocılerıns) 7 Hernández-Camacho s Nıght Monkey (Actus l°f96hemandezù B Andean Nıght Monkey (Actus mıoonvd 9 Ma s Nıght Monkey (Actus nencyrrıaee) 10 Black-needed Nıght Monkey (Actus mgnœps) Azara s Nngh! Monkey (Actus azarad in Aotidae
On following pages 4 Brumback s Nıgm Monkey (Aorus brumbeckı) 5 Humboldt s Nıght Monkey (Aorus mvırgaruså 6 Spıx s Nıght Monkey (Aotus vocılerıns) 7 Hernández-Camacho s Nıght Monkey (Actus l°f96hemandezù B Andean Nıght Monkey (Actus mıoonvd 9 Ma s Nıght Monkey (Actus nencyrrıaee) 10 Black-needed Nıght Monkey (Actus mgnœps) Azara s Nngh! Monkey (Actus azarad
On following pages 14 Brown-headed Spıder Monkey (Ateles fuscıceps) 15 Black Spider Monkey (Areias chamekl. 16 Red-faced Black Spıder Monkey (Areias paniscus) 17 Whne-wmskered Spodev Monkey (Areias margmatus) 18 Whıtebellıed Spıdeı Monkey (Areias belzeburh), 19 Vanegated Spıder Monkey (Areias hybndus) in Atelidae
On following pages 14 Brown-headed Spıder Monkey (Ateles fuscıceps) 15 Black Spider Monkey (Areias chamekl. 16 Red-faced Black Spıder Monkey (Areias paniscus) 17 Whne-wmskered Spodev Monkey (Areias margmatus) 18 Whıtebellıed Spıdeı Monkey (Areias belzeburh), 19 Vanegated Spıder Monkey (Areias hybndus)
On following pages 21 Gray Woo ly Monkey (Lagothnx cana) 22 Poeopıg s Woolly Monkey (Layothnx poøpplgll) 23 Pefuvıan Yellow taıled Woolly Monkey (Oreonıx Ilavıaıuda) 24 Southern Munquı (Brachyreles ııachnoıdes) 25 Nonhem Munqu (Brachyteles hypoxanthusl in Atelidae
On following pages 21 Gray Woo ly Monkey (Lagothnx cana) 22 Poeopıg s Woolly Monkey (Layothnx poøpplgll) 23 Pefuvıan Yellow taıled Woolly Monkey (Oreonıx Ilavıaıuda) 24 Southern Munquı (Brachyreles ııachnoıdes) 25 Nonhem Munqu (Brachyteles hypoxanthusl
Raw Data for Fairly flexible: Brown-tufted capuchins and a squirrel monkey adjust their motor responses in a foraging task
<p>Raw Data for Manuscript entitled: </p> <p>Fairly flexible: Brown-tufted capuchins and a squirrel monkey adjust their motor responses in a foraging task</p>
On following pages: 2. Humboldt's Squirrel Monkey (Saimiri cassiquiarensis); 3. Ecuadorian Squirrel Monkey (Saimiri sciureus); 6. Black-capped Squirrel Monkey (Saimiri boliviensis); 7. Black-headed Squirrel Monkey (Saimiri vanzolinii macrodon); 4. Golden-backed Squirrel Monkey (Saimiri ustus); 5. Guianan Squirrel Monkey (Saimiri). in Cebidae
On following pages: 2. Humboldt's Squirrel Monkey (Saimiri cassiquiarensis); 3. Ecuadorian Squirrel Monkey (Saimiri sciureus); 6. Black-capped Squirrel Monkey (Saimiri boliviensis); 7. Black-headed Squirrel Monkey (Saimiri vanzolinii macrodon); 4. Golden-backed Squirrel Monkey (Saimiri ustus); 5. Guianan Squirrel Monkey (Saimiri).
Subspecies and Distribution. S.s.sciureusLinnaeus,1758—GuianasandNBrazil,NoftheAmazonRiverfromtheriosNegroandDemini(AmazonasState),Etotherivermouth,andSoftheAmazonRiverbetweentheRioXingu-Iriri(ParaState)EtotheRioPindaré(MaranhaoState),extendingStoc.6°SalongtheupperreachesoftheRioXingu. S. s. collins: Osgood, 1916 — N Brazil, Marajo I in the estuary of the Amazon River (Para State), but further studies are needed to identify the extent of its occurrence, which may well be much larger; the identity of the squirrel monkeys on other islands in the Amazon estuary (Gurupa, Caviana, and Mexiana) has yet to be ascertained. in Cebidae
Subspecies and Distribution. S.s.sciureusLinnaeus,1758—GuianasandNBrazil,NoftheAmazonRiverfromtheriosNegroandDemini(AmazonasState),Etotherivermouth,andSoftheAmazonRiverbetweentheRioXingu-Iriri(ParaState)EtotheRioPindaré(MaranhaoState),extendingStoc.6°SalongtheupperreachesoftheRioXingu. S. s. collins: Osgood, 1916 — N Brazil, Marajo I in the estuary of the Amazon River (Para State), but further studies are needed to identify the extent of its occurrence, which may well be much larger; the identity of the squirrel monkeys on other islands in the Amazon estuary (Gurupa, Caviana, and Mexiana) has yet to be ascertained.
Broadband local field potential in area MT of marmoset monkey
<p>Broadband local field potential (0.1-500 Hz) in area MT of marmoset monkey.</p>
On following pages: 50. Grivet Monkey (Chlorocebus aethiops); 51. Tantalus Monkey (Chlorocebus tantalus); 52. Green (Chlorocebus pygerythrus); 55. Bale Mountains Monkey (Chlorocebus djiamdjamensis); 56. L'Hoest's Monkey (Allochrocebus Monkey (Chlorocebus sabaeus); 53. Malbrouck Monkey (Chlorocebus cynosuros); 54. Vervet Monkey Ihoest): 57. Preuss's Monkey (Allochrocebus preussi); 58. Sun-tailed Monkey (Allochrocebus solatus). in Cercopithecidae
On following pages: 50. Grivet Monkey (Chlorocebus aethiops); 51. Tantalus Monkey (Chlorocebus tantalus); 52. Green (Chlorocebus pygerythrus); 55. Bale Mountains Monkey (Chlorocebus djiamdjamensis); 56. L'Hoest's Monkey (Allochrocebus Monkey (Chlorocebus sabaeus); 53. Malbrouck Monkey (Chlorocebus cynosuros); 54. Vervet Monkey Ihoest): 57. Preuss's Monkey (Allochrocebus preussi); 58. Sun-tailed Monkey (Allochrocebus solatus).
On following pages: 79. Silver Monkey (Cercopithecus doggetti); 80. Virungas Golden Monkey (Cercopithecus kandti); 81. Sykes's Monkey (Cercopithecus albogularis). in Cercopithecidae
On following pages: 79. Silver Monkey (Cercopithecus doggetti); 80. Virungas Golden Monkey (Cercopithecus kandti); 81. Sykes's Monkey (Cercopithecus albogularis).
On following pages: 124. Black-shanked Douc (Pygathrix nigripes); 125. Tonkin Snub-nosed Monkey (Rhinopithecus (Rhinopithecus brelichi); 128. Golden Snub-nosed Monkey (Rhinopithecus roxellana); 129. Stryker's Snub-nosed Monkey avunculus); 126. Yunnan Snub-nosed Monkey (Rhinopithecus biet); 127. Guizhou Snub-nosed Monkey (Rhinopithecus strykeri); 130. Pig-tailed Langur (Simias concolor); 131. Proboscis Monkey (Nasalis larvatus). in Cercopithecidae
On following pages: 124. Black-shanked Douc (Pygathrix nigripes); 125. Tonkin Snub-nosed Monkey (Rhinopithecus (Rhinopithecus brelichi); 128. Golden Snub-nosed Monkey (Rhinopithecus roxellana); 129. Stryker's Snub-nosed Monkey avunculus); 126. Yunnan Snub-nosed Monkey (Rhinopithecus biet); 127. Guizhou Snub-nosed Monkey (Rhinopithecus strykeri); 130. Pig-tailed Langur (Simias concolor); 131. Proboscis Monkey (Nasalis larvatus).
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.