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Adaptations for bipedal walking: Musculoskeletal structure and three-dimensional joint mechanics of humans and bipedal chimpanzees (Pan troglodytes).双足行走的适应性:人类和双足黑猩猩(Pan troglodytes)的骨骼肌肉结构和三维关节力学。
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6
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Joint angular excursions during cyclical behaviors differ between tetrapod feeding and locomotor systems.在周期性行为中,四足动物的摄食和运动系统的关节角位移不同。
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12种小型灵长类动物进食的能量消耗

Energetic costs of feeding in 12 species of small-bodied primates.

作者信息

Wall Christine E, Hanna Jandy B, O'Neill Matthew C, Toler Maxx, Laird Myra F

机构信息

Department of Evolutionary Anthropology, Duke University, Durham, NC 27708, USA.

Department of Anatomy, College of Osteopathic Medicine, New York Institute of Technology, New York Institute of Technology, Old Westbury, NY 11568, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2023 Dec 4;378(1891):20220553. doi: 10.1098/rstb.2022.0553. Epub 2023 Oct 16.

DOI:10.1098/rstb.2022.0553
PMID:37839441
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10577031/
Abstract

There are no comparative, empirical studies of the energetic costs of feeding in mammals. As a result, we lack physiological data to better understand the selection pressures on the mammalian feeding apparatus and the influence of variables such as food geometric and material properties. This study investigates interspecific scaling of the net energetic costs of feeding in relation to body size, jaw-adductor muscle mass and food properties in a sample of 12 non-human primate species ranging in size from 0.08 to 4.2 kg. Net energetic costs during feeding were measured by indirect calorimetry for a variety of pre-cut and whole raw foods varying in geometric and material properties. Net feeding costs were determined in two ways: by subtracting either the initial metabolic rate prior to feeding or subtracting the postprandial metabolic rate. Interspecific scaling relationships were evaluated using pGLS and OLS regression. Net feeding costs scale negatively relative to both body mass and jaw-adductor mass. Large animals incur relatively lower feeding costs indicating that small and large animals experience and solve mechanical challenges in relation to energetics in different ways. This article is part of the theme issue 'Food processing and nutritional assimilation in animals'.

摘要

目前尚无关于哺乳动物进食能量消耗的比较性实证研究。因此,我们缺乏生理数据来更好地理解哺乳动物进食器官所面临的选择压力,以及食物几何形状和物质特性等变量的影响。本研究调查了12种体重从0.08千克到4.2千克不等的非人类灵长类动物样本中,进食净能量消耗与体型、咬肌质量和食物特性之间的种间比例关系。通过间接量热法测量了各种几何形状和物质特性不同的预切和未加工生食在进食过程中的净能量消耗。净进食成本通过两种方式确定:一是减去进食前的初始代谢率,二是减去餐后代谢率。使用pGLS和OLS回归评估种间比例关系。净进食成本与体重和咬肌质量均呈负相关。大型动物的进食成本相对较低,这表明小型和大型动物在能量方面面临和解决机械挑战的方式不同。本文是主题为“动物的食物加工与营养同化”的一部分。