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野外生理学:在自然环境中研究生物机能。

Field Physiology: Studying Organismal Function in the Natural Environment.

机构信息

National Marine Mammal Foundation, San Diego, California, USA.

Department of Ecology and Evolutionary Biology, School of Biological Science, University of California Irvine, Irvine, California, USA.

出版信息

Compr Physiol. 2021 Jun 30;11(3):1979-2015. doi: 10.1002/cphy.c200005.

Abstract

Continuous physiological measurements collected in field settings are essential to understand baseline, free-ranging physiology, physiological range and variability, and the physiological responses of organisms to disturbances. This article presents a current summary of the available technologies to continuously measure the direct physiological parameters in the field at high-resolution/instantaneous timescales from freely behaving animals. There is a particular focus on advantages versus disadvantages of available methods as well as emerging technologies "on the horizon" that may have been validated in captive or laboratory-based scenarios but have yet to be applied in the wild. Systems to record physiological variables from free-ranging animals are reviewed, including radio (VHF/UFH) telemetry, acoustic telemetry, and dataloggers. Physiological parameters that have been continuously measured in the field are addressed in seven sections including heart rate and electrocardiography (ECG); electromyography (EMG); electroencephalography (EEG); body temperature; respiratory, blood, and muscle oxygen; gastric pH and motility; and blood pressure and flow. The primary focal sections are heart rate and temperature as these can be, and have been, extensively studied in free-ranging organisms. Predicted aspects of future innovation in physiological monitoring are also discussed. The article concludes with an overview of best practices and points to consider regarding experimental designs, cautions, and effects on animals. © 2021 American Physiological Society. Compr Physiol 11:1979-2015, 2021.

摘要

连续的生理测量在野外环境中是至关重要的,有助于理解基线、自由活动的生理机能、生理范围和变异性,以及生物体对干扰的生理反应。本文概述了目前可用于连续测量野外自由活动动物的直接生理参数的技术,这些技术具有高分辨率/瞬时时间尺度。特别关注可用方法的优缺点,以及新兴技术的“前景”,这些技术可能已经在圈养或实验室场景中得到验证,但尚未在野外应用。本文回顾了从自由活动动物记录生理变量的系统,包括无线电(VHF/UHF)遥测、声学遥测和数据记录器。本文在七个部分中讨论了在野外连续测量的生理参数,包括心率和心电图(ECG);肌电图(EMG);脑电图(EEG);体温;呼吸、血液和肌肉氧;胃 pH 值和运动;以及血压和血流。主要聚焦的部分是心率和体温,因为这些参数在自由活动的生物中已经得到了广泛的研究。还讨论了生理监测未来创新的预期方面。本文最后概述了最佳实践和实验设计、注意事项以及对动物的影响方面需要考虑的问题。美国生理学会综合生理学 11:1979-2015, 2021。

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