Suppr超能文献

在家中进行无干扰、连续的基于激光雷达的步态特征测量。

Unobtrusive, Continuous LIDAR-Based Measurement of Gait Characteristics at Home.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:2339-2342. doi: 10.1109/EMBC46164.2021.9629474.

Abstract

This paper describes a novel approach to the unobtrusive assessment of a subset of gait characteristics using a light detection and ranging (LIDAR) device. The developed device is poised to enable unobtrusive, nearly continuous monitoring and inference of patients' gait characteristics to assess physical and cognitive states. The device provides a rapidly sampled signal representing the distance of a participant's body from the LIDAR device. The densely sampled distance estimation is processed by custom algorithms that can potentially be used to estimate various gait characteristics such as step size, cadence, double support, and even step-size symmetry.Clinical Relevance- Since gait is a complex behavior that requires seamless cooperation of multiple systems, including sensation, perception, muscular synergies, and even cognition. Subtle changes in gait may, therefore, indicate issues with physical and mental functionality. In addition to the walking speed, the gait monitoring results can provide inferences about the physical and cognitive states of the unobtrusively monitored individuals using their own data as a baseline.

摘要

本文提出了一种使用光检测和测距 (LIDAR) 设备对步态特征子集进行非侵入式评估的新方法。所开发的设备有望实现对患者步态特征的非侵入式、近乎连续的监测和推断,以评估身体和认知状态。该设备提供了一个代表参与者身体与 LIDAR 设备之间距离的快速采样信号。通过定制算法处理密集采样的距离估计,这些算法有可能用于估计各种步态特征,如步幅、步频、双支撑,甚至步幅对称性。临床相关性——由于步态是一种复杂的行为,需要包括感觉、感知、肌肉协同作用甚至认知在内的多个系统的无缝协作,因此步态的细微变化可能表明身体和心理功能存在问题。除了行走速度外,步态监测结果还可以根据被监测个体自己的数据作为基线,对其身体和认知状态进行推断。

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