基于Jack虚拟仿真技术的宫颈癌腔内治疗转运过程人因工效学分析

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引用次数: 0

摘要

随着宫颈癌在女性中的发病率逐年上升,其对患者及其家属身心健康的影响也越来越显著。目前,医院常采用腔内放射治疗,而腔内治疗转移床作为妇科肿瘤腔内放射医疗辅助装置起着极其重要的作用。因此,对于腔内治疗转移床的设计,人机适应性的验证可以很好地帮助优化其结构。本文首先将在UG软件中建立的腔内治疗转移床三维模型导入到人体工程学分析软件Jack中;其次,在分析环境下,建立符合宫颈癌患者身体尺寸的人体模型以及医护人员的人体模型;然后在此基础上,建立了患者使用腔内治疗转移床时的体位以及医护人员在治疗过程中不同动作的仿真模型;最后,通过模拟分析患者下肢以及医护人员的腰、背、上肢的受力情况,分析患者和医护人员在不同的治疗任务动作下的舒适度。仿真结果的分析可以验证腔内治疗转移床设计的合理性和使用舒适性,同时结合医护人员工作姿势的分析结果,为腔内治疗转移床的结构优化提供分析方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human factor ergonomic analysis of cervical cancer intracavitary therapy transport process based on Jack virtual simulation technology
With the incidence of cervical cancer in women rising year by year, its impact on the physical and mental health of patients as well as their families is becoming more and more significant. At present, hospitals often use intracavitary radiation therapy, and intracavitary therapy transfer bed as a gynecological oncology intracavitary radiation medical auxiliary device plays an extremely important role. Therefore, for the design of intracavitary therapy transfer beds, the validation of man-machine adaptability can well help to optimize its structure. The paper firstly imports the three-dimensional model of intracavitary therapy transfer bed established in UG software into the ergonomics analysis software Jack; secondly, in the analysis environment, it establishes the human body model that conforms to the body dimensions of patients with cervical cancer as well as the human body model of healthcare workers; then, on this basis, it establishes the simulation model for the patient's posture of using the intracavitary therapy transfer bed as well as for different movements of the healthcare workers in the course of the treatment; finally, it analyzes the stresses of the patient's lower limbs, as well as the waist, back, and upper limbs of the healthcare workers through the simulation and analyzes the comfort of the patients and the healthcare personnel with respect to the different movements of the treatment task. The analysis of the simulation results can verify the rationality of the design of the intracavitary therapy transfer bed and the use of comfort, and at the same time, combined with the results of the analysis of the healthcare worker's working posture, to provide an analysis method for the structural optimization of the intracavitary therapy transfer bed.
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