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Future trends in measuring physiology in free-living animals

机译:在自由生动物中测量生理学的未来趋势

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Thus far, ecophysiology research has predominantly been conducted within controlled laboratory-based environments, owing to a mismatch between the recording technologies available for physiological monitoring in wild animals and the suite of behaviours and environments they need to withstand, without unduly affecting subjects. While it is possible to record some physiological variables for free-living animals using animal-attached logging devices, including inertial-measurement, heart-rate and temperature loggers, the field is still in its infancy. In this opinion piece, we review the most important future research directions for advancing the field of 'physiologging' in wild animals, including the technological development that we anticipate will be required, and the fiscal and ethical challenges that must be overcome. Non-invasive, multi-sensor miniature devices are ubiquitous in the world of human health and fitness monitoring, creating invaluable opportunities for animal and human physiologging to drive synergistic advances. We argue that by capitalizing on the research efforts and advancements made in the development of human wearables, it will be possible to design the non-invasive loggers needed by ecophysiologists to collect accurate physiological data from free-ranging animals ethically and with an absolute minimum of impact. In turn, findings have the capacity to foster transformative advances in human health monitoring. Thus, we invite biomedical engineers and researchers to collaborate with the animal-tagging community to drive forward the advancements necessary to realize the full potential of both fields. This article is part of the theme issue 'Measuring physiology in free-living animals (Part II)'.
机译:到目前为止,生态生理学研究主要是在受控的实验室环境中进行的,这是因为野生动物生理监测可用的记录技术与它们需要承受的一系列行为和环境之间不匹配,而不会对受试者造成不适当的影响。虽然可以使用与动物相连的记录设备记录自由生活动物的一些生理变量,包括惯性测量、心率和温度记录器,但该领域仍处于起步阶段。在这篇评论文章中,我们回顾了推进野生动物“生理记录”领域最重要的未来研究方向,包括我们预期将需要的技术发展,以及必须克服的财政和道德挑战。非侵入性、多传感器微型设备在人类健康和健康监测领域无处不在,为动物和人类生理学创造了推动协同进步的宝贵机会。我们认为,通过利用人类可穿戴设备开发过程中的研究成果和进步,将有可能设计生理学家所需的非侵入性记录器,以道德和绝对最小的影响从自由放养的动物身上收集准确的生理数据。反过来,这些发现有能力促进人类健康监测的变革性进展。因此,我们邀请生物医学工程师和研究人员与动物标签社区合作,推动实现这两个领域全部潜力所需的进步。这篇文章是“自由生活动物的生理测量(第二部分)”主题的一部分。

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