[基于个体化肌肉-骨骼多体动力学的双臂护理机器人转移三维人-机器人力学建模]。

Q4 Medicine
Zhiqiang Yang, Funing Hou, Qiang Lin, Jiexin Xie, Hao Lu, Shijie Guo
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引用次数: 0

摘要

双臂护理机器人在进行转移任务时,需要一个人机力学模型来确定平衡区域,以安全稳定地支撑患者。以往的研究采用的是人-机器人二维静力平衡模型,忽略了人体体积和肌肉力矩,降低了模型的精度,限制了机器人在三维空间调整患者姿态的能力。因此,本研究提出了一种基于个体化人体肌肉-骨骼多体动力学的三维空间力学建模方法。首先,根据双臂支撑的力学特点,构建了包含身体姿态、接触位置和身体力的基础三维人机力学模型。利用被试的计算机断层扫描数据,重建三维股骨-骨盆-骶骨模型,利用人机工程学软件分析个体化肌肉骨骼动力学,推导出人体关节力,完成力学模型。然后,本研究建立了双臂机器人转移平台进行受试者转移实验,结果表明所构建的力学模型比以往方法具有更高的精度。综上所述,本研究提供了一个适应个体转移的三维人-机器人力学模型,在护理和康复机器人等各种场景中具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Three-dimensional human-robot mechanics modeling for dual-arm nursing-care robot transfer based on individualized musculoskeletal multibody dynamics].

During transfer tasks, the dual-arm nursing-care robot require a human-robot mechanics model to determine the balance region to support the patient safely and stably. Previous studies utilized human-robot two-dimensional static equilibrium models, ignoring the human body volume and muscle torques, which decreased model accuracy and confined the robot ability to adjust the patient's posture in three-dimensional spatial. Therefore, this study proposes a three-dimensional spatial mechanics modeling method based on individualized human musculoskeletal multibody dynamics. Firstly, based on the mechanical features of dual-arm support, this study constructed a foundational three-dimensional human-robot mechanics model including body posture, contact position and body force. With the computed tomography data from subjects, a three-dimensional femur-pelvis-sacrum model was reconstructed, and the individualized musculoskeletal dynamics was analyzed using the ergonomics software, which derived the human joint forces and completed the mechanic model. Then, this study established a dual-arm robot transfer platform to conduct subject transfer experiments, showing that the constructed mechanics model possessed higher accuracy than previous methods. In summary, this study provides a three-dimensional human-robot mechanics model adapting to individual transfers, which has potential application in various scenarios such as nursing-care and rehabilitating robots.

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来源期刊
生物医学工程学杂志
生物医学工程学杂志 Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
4868
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