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7 results for “Rhinopithecus”

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zenodo40/100

Figure 3 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)

Figure 3. The immunoreactive cortisol concentrations of Sichuan golden monkeys within seasons (ng/g). Sp: Spring; Su: summer; Au: autumn; Wi: winter. FM refers to the mean of nonpregnant females (F1 and F2); MM refers to the mean of males (M1, M2, and M3). *,#, §,﹠: P <0.05, bar with * was significantly higher than bar with #, and bar with § was significantly higher than bar with ﹠.

opencc-by-4.0Jul 2014View details →
zenodo40/100

Figure 5 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)

Figure 5. The fecal immunoglobulin levels of Sichuan golden monkeys over the year (ng/g). FM refers to mean of nonpregnant females (F1 and F2); MM refers to mean of males (M1, M2, and M3).

opencc-by-4.0Jul 2014View details →
zenodo40/100

Figure 2 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)

Figure 2. Immunoreactive cortisol concentrations in males (M1 was the dominant male; M2 and M3 were all-male units) within seasons (ng/g). Sp: Spring; Su: summer; Au: autumn; Wi: winter. a,b,c,d: Histograms that share the same letters do not differ from each other, whereas histograms with different letters are different at P <0.05. *,#: P <0.05, bar with # was significantly higher than bar with *.

opencc-by-4.0Jul 2014View details →
zenodo40/100

Figure 1 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)

Figure 1. Immunoreactive cortisol concentrations in nonpregnant (F1 and F2) and pregnant (F3) females within seasons (ng/g). Sp: spring; Su: summer; Au: autumn; Wi: winter. a,b,c,d: Histograms that share the same letters do not differ from each other, whereas histograms with different letters are different at P <0.05. *,#: P <0.05, bar with * was significantly higher than bar with #.

opencc-by-4.0Jul 2014View details →
zenodo40/100

Figure 4 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)

Figure 4. The immunoreactive cortisol concentrations of Sichuan golden monkeys over the year (ng/g). FM refers to mean of nonpregnant females (F1 and F2); MM refers to mean of males (M1, M2, and M3).

opencc-by-4.0Jul 2014View details →
zenodo36/100

Data from: Feeding sites promoting wildlife-related tourism might highly expose the endangered Yunnan snub-nosed monkey (Rhinopithecus bieti) to parasite transmission. DOI: 10.1038/s41598-021-95166-5

<p>An increasing number of studies have found that the implementation of feeding sites for wildlife-related tourism can affect animal health, behaviour and reproduction. Feeding sites can favour high densities, home range overlap, greater sedentary behaviour and increased interspecific contacts, all of which might promote parasite transmission. In the Yunnan snub-nosed monkey (Rhinopithecus bieti), human interventions via provisioning monkeys at specific feeding sites have led to the sub-structuring of a group into genetically differentiated sub-groups. The fed subgroup is located near human hamlets and interacts with domesticated animals. Using high-throughput sequencing, we investigated Entamoeba species diversity in a local host assemblage strongly influenced by provisioning for wildlife-related tourism. We identified 13 Entamoeba species or lineages in faeces of Yunnan snub-nosed monkeys, humans and domesticated animals (including pigs, cattle, and domestic chicken). In Yunnan snub-nosed monkeys, Entamoeba prevalence and OTU richness were higher in the fed than in the wild subgroup. Entamoeba polecki was found in monkeys, pigs and humans, suggesting that this parasite might circulates between the wild and domestic components of this local social&ndash;ecological system. The highest proportion of faeces positive for Entamoeba in monkeys geographically coincided with the presence of livestock and humans. These elements suggest that feeding sites might indirectly play a role on parasite transmission in the Yunnan snub-nosed monkey. The implementation of such sites should carefully consider the risk of creating hotspots of disease transmission, which should be prevented by maintaining a buffer zone between monkeys and livestock/humans. Regular screenings for pathogens in fed subgroup are necessary to monitor transmission risk in order to balance the economic development of human communities dependent on wildlife-related tourism, and the conservation of the endangered Yunnan snub-nosed monkey.</p>

opencc-by-4.0Jul 2021View details →
zenodo32/100

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).

opennotspecifiedMar 2013View details →

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International Brain Laboratory public data

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