Providing captive or laboratory animals with the best possible living conditions has led to many ideas about how caging environments can be enhanced and the animals' lives can be enriched. This study focused primarily on 2 issues: more efficient use of existing caging and providing animals with a measure of control over their environments. We designed a new springloaded folding perching apparatus that, when modified for size, could be added to almost any caging system. Experiment 1 measured usage by animals in standard laboratory caging for rhesus macaque monkeys (Macaca mulatta). Experiment 2 measured usage by this same species in social groups in a 5-acre outdoor-indoor field setting, where several other forms of enrichment were available to the animals. Results indicated that the folding perches were used in both environments. Animals quickly learned to fold down the devices to use as a place to perch, even in the presence of permanent fixed perches. The folding perches did not significantly affect existing behavioral repertoires, but they altered how the animal used the cage. Increased animal presence near folding perches during experiment 2 suggests that these devices actually were preferred. The preference results can only partially be explained by novelty. The folding perches afforded animals a measure of control over their immediate environment without interfering in research or animal care efforts. Including at least 1 folding perch per cage satisfies both the letter and the spirit of regulations on environmental enhancement for captive primates.
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Biomimetics (Basel)
December 2024
School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China.
Birds use their claws to perch on branches, which helps them to recover energy and observe their surroundings; however, most biomimetic flapping-wing aircraft can only fly, not perch. This study was conducted on the basis of bionic principles to replicate birds' claw and wing movements in order to design a highly biomimetic flapping-wing aircraft capable of perching. First, a posture conversion module with a multi-motor hemispherical gear structure allows the aircraft to flap, twist, swing, and transition between its folded and unfolded states.
View Article and Find Full Text PDFPharmaceutics
April 2021
Bioactives from Natural Resources Research Collaboration for Excellence in Pharmaceutical Sciences, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom 73000, Thailand.
Chemotherapy is a vital option for cancer treatment; however, its therapeutic outcomes are limited by dose-dependent toxicity and the occurrence of chemoresistance. siRNAs have emerged as an attractive therapeutic option enabling specific interference with target genes. Combination therapy using chemotherapeutic agents along with gene therapy could be a potential strategy for cancer management, which not only improves therapeutic efficacy but also decreases untoward effects from dose reduction.
View Article and Find Full Text PDFJ Biomol Struct Dyn
August 2022
Supramolecular Chemistry Research Unit and Department of Chemistry, Faculty of Science, Mahasarakham University, Maha Sarakham, Thailand.
Hepatitis C virus (HCV) NS3/4A serine protease is a promising drug target for the discovery of anti-HCV drugs. However, its amino acid mutations, particularly A156T, commonly lead to rapid emergence of drug resistance. Paritaprevir and glecaprevir, the newly FDA-approved HCV drugs, exhibit distinct resistance profiles against the A156T mutation of HCV NS3/4A serine protease.
View Article and Find Full Text PDFParasitol Res
November 2020
Chongqing Key Laboratory of Animal Biology, College of Life Sciences, Chongqing Normal University, Chongqing, 401331, People's Republic of China.
Two myxosporean species of the genus Sphaeromyxa were isolated from the gallbladders of marine fish in the South China Sea. Sphaeromyxa scorpaena n. sp.
View Article and Find Full Text PDFJ Anat
May 2019
Department of Zoology, Weber State University, Ogden, UT, USA.
During flight, birds employ one of two hindlimb postures. Perching birds utilize a flexed posture with their folded legs tucked beneath the body, whereas shorebirds and raptors use an extended posture with straightened legs trailing behind the body. Maintenance of either posture during flight requires the hindlimbs to hold their position for prolonged periods.
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