非人类灵长类动物在短期头向上(HUT)和头向下(HDT)倾斜时发生的节段体积变化。

Q3 Biochemistry, Genetics and Molecular Biology
Leslie David Montgomery, Clarence Oloff
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引用次数: 1

摘要

非人类灵长类动物经常被用于生物医学研究和研究发生在人类身上的生理过程。阻抗体积描记仪测量了10只恒河猴和8只松鼠猴在以5度、10度和20度角暴露于HUT和HDT 5分钟内小腿、大腿、骨盆、腹部和胸部体积的变化。在HUT和HDT分别为10度和20度时,对三只松鼠猴的小腿、臀部和尾巴进行了测量。在HUT和HDT期间,恒河猴所有节段的体液量变化与使用的倾斜角度直接相关。然而,在松鼠猴身上发生的体积变化却大不相同。在HUT和HDT期间,它们的小腿、大腿和骨盆部分的体积都有所减少,而它们的腹部和胸部部分的反应与恒河猴相似。这些结果和松鼠猴的小腿/尾巴测量结果表明,它们可能在姿势变化期间利用尾巴作为代偿储存器,因此,在某些直立试验条件下,可能不适合作为人类的动物模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Segmental Volume Changes that Occur in Nonhuman Primates During Short Term Head Up (HUT) and Head Down (HDT) Tilt.

Segmental Volume Changes that Occur in Nonhuman Primates During Short Term Head Up (HUT) and Head Down (HDT) Tilt.

Segmental Volume Changes that Occur in Nonhuman Primates During Short Term Head Up (HUT) and Head Down (HDT) Tilt.

Segmental Volume Changes that Occur in Nonhuman Primates During Short Term Head Up (HUT) and Head Down (HDT) Tilt.

Nonhuman primates are often used in biomedical research and to investigate physiologic processes that occur in man. Impedance plethysmography was used to measure calf, thigh, pelvic, abdominal, and thoracic volume changes in ten Rhesus and eight squirrel monkeys during five-minute exposures to HUT and HDT at angles of 5, 10, and 20 degrees. Calf, rump and tail measurements were made in three squirrel monkeys at 10 and 20 degrees of HUT and HDT. Fluid volume changes in all segments of the Rhesus monkeys were found to change during HUT an HDT in direct relation to the angle of tilt used. However, the volume changes that occurred in the squirrel monkeys were found to be quite different. Their calf, thigh, and pelvic segments lost volume during both HUT and HDT while their abdominal and thoracic segments responded similarly to those of the Rhesus monkeys. These results and those of the calf/tail measurements of the squirrel monkeys suggest that they may utilize their tails as a compensatory reservoir during postural changes and therefore, may not be an appropriate animal model for man under some orthostatic test conditions.

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来源期刊
Journal of Electrical Bioimpedance
Journal of Electrical Bioimpedance Engineering-Biomedical Engineering
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
17 weeks
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