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一种可植入的设备,用于无线监测自由活动的小动物和相互作用的群体的各种生理行为特征。

An implantable device for wireless monitoring of diverse physio-behavioral characteristics in freely behaving small animals and interacting groups.

机构信息

Querrey Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL 60208, USA; Thayer School of Engineering, Dartmouth College, Hanover, NH 03755, USA.

Querrey Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL 60208, USA; NeuroLux Inc., Northfield, IL 60093, USA.

出版信息

Neuron. 2024 Jun 5;112(11):1764-1777.e5. doi: 10.1016/j.neuron.2024.02.020. Epub 2024 Mar 26.

Abstract

Comprehensive, continuous quantitative monitoring of intricately orchestrated physiological processes and behavioral states in living organisms can yield essential data for elucidating the function of neural circuits under healthy and diseased conditions, for defining the effects of potential drugs and treatments, and for tracking disease progression and recovery. Here, we report a wireless, battery-free implantable device and a set of associated algorithms that enable continuous, multiparametric physio-behavioral monitoring in freely behaving small animals and interacting groups. Through advanced analytics approaches applied to mechano-acoustic signals of diverse body processes, the device yields heart rate, respiratory rate, physical activity, temperature, and behavioral states. Demonstrations in pharmacological, locomotor, and acute and social stress tests and in optogenetic studies offer unique insights into the coordination of physio-behavioral characteristics associated with healthy and perturbed states. This technology has broad utility in neuroscience, physiology, behavior, and other areas that rely on studies of freely moving, small animal models.

摘要

对生物体中错综复杂的生理过程和行为状态进行全面、连续的定量监测,可以为阐明健康和疾病状态下神经回路的功能、定义潜在药物和治疗方法的效果以及跟踪疾病进展和恢复提供重要数据。在这里,我们报告了一种无线、无电池的可植入设备和一套相关算法,可实现自由活动的小动物和相互作用的群体中连续的多参数生理行为监测。通过应用于多种身体过程的机械声信号的先进分析方法,该设备可测量心率、呼吸率、身体活动、温度和行为状态。在药理学、运动学以及急性和社交应激测试以及光遗传学研究中的演示提供了独特的见解,了解与健康和失调状态相关的生理行为特征的协调。这项技术在神经科学、生理学、行为学和其他依赖于自由活动的小动物模型研究的领域具有广泛的应用。

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