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一种具有主动肌肉模拟功能的体外肩部模拟器的开发和评估。

The development and evaluation of an in-vitro shoulder simulator with active muscle simulation.

机构信息

Laboratory for Biomechanics and Biomaterials, Department of Orthopaedic Surgery - DIAKOVERE Annastift, Hannover Medical School, Anna-Von-Borries-Str. 1-7, 30625, Hannover, Germany.

Department of Orthopedics, the First Affiliated Hospital of Anhui Medical University, 218 Jixi Road, Hefei, 230000, China.

出版信息

Sci Rep. 2023 Mar 17;13(1):4423. doi: 10.1038/s41598-023-31200-y.

Abstract

The purpose of the present study was to develop a novel active in-vitro shoulder simulator to emulate all forms of planar and non-planar glenohumeral motions with active muscle simulation on cadaver specimens or shoulder models and to critically evaluate its performance. A physiologic shoulder simulator, driven using simulated muscle force, was developed to dynamically realize accurate kinematic control in all three rotational degrees of freedom (DOF) under physiological kinetic boundaries. The control algorithm of the simulator was implemented using three parallel running independent control loops, which regulate the forces of individual muscles in the respect DOF and work asynchronously in disparate sequences adapted to specific motions (abduction, flexion/extension and rotation). Three cadaveric specimens were used to evaluate the kinematic and kinetic performance of the simulator during simulated motions. High kinematic accuracy (maximum mean deviation ≤ 2.35° and RMSE 1.13°) and repeatability (maximum and average SD of ≤ 1.21° and 0.67°) were observed in all three rotational DOF investigated. The reliabilities of all individual muscle forces actuated in the simulator during planar and non-planar motions were generally excellent, with the 95% CIs of ICC estimates of > 0.90 for most instances (30/36). A novel shoulder simulator with active muscle simulation was developed and evaluated. Its capability to reproduce kinematics and kinetics in a physiological range for all DOF was systematically evaluated for multiple kinetic and kinematic outcome variables. The presented simulator is a powerful tool for investigating the biomechanics of physiological and pathological shoulder joints and to evaluate various surgical interventions. Acquisition of reliable data in joint kinetics and translational kinematics during active motions is critical to assess shoulder pathologies and appropriate treatments. We provide a unique muscle activated physiologic shoulder simulator, which allows the comprehensive acquisition of joint kinematic and kinetic data during repeated realistic planar and non-planar motions.

摘要

本研究旨在开发一种新型主动式体外肩部模拟器,以在尸体标本或肩部模型上模拟所有形式的平面和非平面盂肱运动,并进行主动肌肉模拟,从而对其性能进行严格评估。一种基于模拟肌肉力的生理肩部模拟器被开发出来,以在生理力学边界下,在所有三个旋转自由度(DOF)中动态实现精确的运动学控制。模拟器的控制算法使用三个并行运行的独立控制回路来实现,这些回路分别调节单个肌肉在特定运动(外展、屈伸和旋转)中相应 DOF 的力,并以适应特定运动的不同顺序异步工作。三个尸体标本用于评估模拟器在模拟运动期间的运动学和动力学性能。在所有三个旋转 DOF 中,观察到高运动学精度(最大平均偏差 ≤ 2.35°和 RMSE 1.13°)和可重复性(最大和平均 SD 的 ≤ 1.21°和 0.67°)。在平面和非平面运动中,模拟器中激活的所有单个肌肉力的可靠性通常都非常好,大多数情况下(30/36)95%置信区间的 ICC 估计值大于 0.90。已经开发并评估了一种具有主动肌肉模拟功能的新型肩部模拟器。它能够在生理范围内复制所有 DOF 的运动学和动力学,已经针对多个运动学和动力学结果变量系统地评估了其性能。所提出的模拟器是研究生理和病理肩部关节生物力学以及评估各种手术干预的有力工具。在主动运动期间,关节动力学和平移运动学中获取可靠的数据对于评估肩部病变和适当的治疗方法至关重要。我们提供了一种独特的肌肉激活生理肩部模拟器,它可以在重复的真实平面和非平面运动中全面获取关节运动学和动力学数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/237f/10023710/89c03c4f4e56/41598_2023_31200_Fig1_HTML.jpg

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