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对胎盘哺乳动物的质量、代谢率和特征长度之间关系的解释。

An explanation of the relationship between mass, metabolic rate and characteristic length for placental mammals.

出版信息

PeerJ. 2015 Sep 3;3:e1228. doi: 10.7717/peerj.1228. eCollection 2015.

Abstract

The Mass, Metabolism and Length Explanation (MMLE) was advanced in 1984 to explain the relationship between metabolic rate and body mass for birds and mammals. This paper reports on a modernized version of MMLE. MMLE deterministically computes the absolute value of Basal Metabolic Rate (BMR) and body mass for individual animals. MMLE is thus distinct from other examinations of these topics that use species-averaged data to estimate the parameters in a statistically best fit power law relationship such as BMR = a(bodymass) (b) . Beginning with the proposition that BMR is proportional to the number of mitochondria in an animal, two primary equations are derived that compute BMR and body mass as functions of an individual animal's characteristic length and sturdiness factor. The characteristic length is a measureable skeletal length associated with an animal's means of propulsion. The sturdiness factor expresses how sturdy or gracile an animal is. Eight other parameters occur in the equations that vary little among animals in the same phylogenetic group. The present paper modernizes MMLE by explicitly treating Froude and Strouhal dynamic similarity of mammals' skeletal musculature, revising the treatment of BMR and using new data to estimate numerical values for the parameters that occur in the equations. A mass and length data set with 575 entries from the orders Rodentia, Chiroptera, Artiodactyla, Carnivora, Perissodactyla and Proboscidea is used. A BMR and mass data set with 436 entries from the orders Rodentia, Chiroptera, Artiodactyla and Carnivora is also used. With the estimated parameter values MMLE can calculate characteristic length and sturdiness factor values so that every BMR and mass datum from the BMR and mass data set can be computed exactly. Furthermore MMLE can calculate characteristic length and sturdiness factor values so that every body mass and length datum from the mass and length data set can be computed exactly. Whether or not MMLE can calculate a sturdiness factor value so that an individual animal's BMR and body mass can be simultaneously computed given its characteristic length awaits analysis of a data set that simultaneously reports all three of these items for individual animals. However for many of the addressed MMLE homogeneous groups, MMLE can predict the exponent obtained by regression analysis of the BMR and mass data using the exponent obtained by regression analysis of the mass and length data. This argues that MMLE may be able to accurately simultaneously compute BMR and mass for an individual animal.

摘要

质量-代谢-长度解释(MMLE)于 1984 年被提出,用于解释鸟类和哺乳动物的代谢率与体重之间的关系。本文报告了 MMLE 的一个现代化版本。MMLE 确定性地计算了个体动物的基础代谢率(BMR)和体重的绝对值。因此,MMLE 与其他使用物种平均数据来估计统计最佳拟合幂律关系(如 BMR=a(bodymass) (b) )中参数的研究不同。从 BMR 与动物体内线粒体数量成正比的假设出发,推导出两个主要的方程,这些方程将 BMR 和体重作为个体动物的特征长度和坚固性因子的函数进行计算。特征长度是与动物推进方式相关的可测量骨骼长度。坚固性因子表示动物的坚固程度或优雅程度。在同一系统发育群中,其他 8 个参数在动物中变化不大。本文通过明确处理哺乳动物骨骼肌肉的傅里叶和斯特劳哈尔动力相似性,对 MMLE 进行了现代化改进,修改了 BMR 的处理方法,并使用新数据来估计方程中出现的参数的数值。使用了一个来自啮齿目、翼手目、偶蹄目、食肉目、奇蹄目和长鼻目订单的 575 个数据点的质量和长度数据集。还使用了一个来自啮齿目、翼手目、偶蹄目和食肉目订单的 436 个 BMR 和质量数据集。使用估计的参数值,MMLE 可以计算特征长度和坚固性因子值,从而精确计算 BMR 和质量数据集中的每个 BMR 和质量数据点。此外,MMLE 可以计算特征长度和坚固性因子值,从而精确计算质量和长度数据集中的每个体重和长度数据点。MMLE 是否可以计算出坚固性因子值,从而根据个体动物的特征长度同时计算其 BMR 和体重,有待于同时报告个体动物这三个项目的数据集的分析。然而,对于许多 MMLE 同质群体,MMLE 可以预测使用质量和长度数据回归分析获得的 BMR 和质量数据的回归分析获得的指数。这表明 MMLE 可能能够准确地同时计算个体动物的 BMR 和体重。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd26/4562252/7394ffabe62a/peerj-03-1228-g001.jpg

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