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双标记水((3)HH (18)O)在潮湿环境中测定哺乳动物的 H 2O 通量和 CO 2 产生量的应用。

Use of doubly-labeled water ((3)HH (18)O) for determination of H 2O flux and CO 2 production by a mammal in a humid environment.

机构信息

Laboratory of Biomedical and Environmental Sciences, University of California and Biology Department, 90024, Los Angeles, CA, USA.

出版信息

Oecologia. 1983 Aug;59(1):54-7. doi: 10.1007/BF00388071. Epub 2004 Sep 13.

Abstract

The accuracy of the doubly labeled water ((3)HH(18)O) technique for estimating H2O flux and CO2 production in pocket gophers was evaluated in laboratory experiments. Experiments were conducted under conditions of elevated humidity in order to determine the influence of unlabeled H2O vapor input on H2O flux and CO2 production rates which are determined from isotope turnover. High humidity is commonplace in burrows of many small mammals, including those of the pocket gopher, and theoretically could introduce substantial errors when determining these rates with isotopic procedures.Water influx that was estimated from tritium turnover was not significantly different from actual H2O influx which was determined from feeding rates. Also, (3)HH(18)O techniques yielded estimates of CO2 production that were not significantly different from values determined from energy intake rates. Such close agreement was not anticipated. The unexpected accuracy probably results due to offsetting errors associated with (1) the influx of unlabeled H2O vapor through the skin and lungs of labeled pocket gophers and (2) the effects of biological fractionation of isotopes in the body H2O of labeled pocket gophers.

摘要

双标记水 ((3)HH(18)O) 技术用于估算囊鼠 H2O 通量和 CO2 产量的准确性在实验室实验中进行了评估。实验是在高湿度条件下进行的,以确定未标记 H2O 蒸汽输入对由同位素周转确定的 H2O 通量和 CO2 产生率的影响。高湿度在许多小型哺乳动物的洞穴中很常见,包括囊鼠的洞穴,并且在使用同位素方法确定这些速率时理论上可能会引入大量误差。从氚周转估计的水通量与通过喂养率确定的实际 H2O 通量没有显著差异。此外,(3)HH(18)O 技术产生的 CO2 产生量的估计值与从能量摄入率确定的值没有显著差异。这种密切的一致性是出乎意料的。这种意外的准确性可能归因于与以下因素相关的抵消误差:(1) 标记囊鼠的皮肤和肺部中未标记 H2O 蒸汽的通量,以及 (2) 标记囊鼠体内 H2O 同位素的生物分馏的影响。

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