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在体内测量第一掌骨背侧骨间肌的个体特异性肌肉模型参数。

Measuring subject specific muscle model parameters of the first dorsal interosseous in vivo.

作者信息

Infantolino Benjamin W, Challis John H

机构信息

Division of Science, Pennsylvania State University, PO Box 7009, Berks Campus, Tulpehocken Road, Reading, PA, 19610, USA,

出版信息

Ann Biomed Eng. 2014 Jun;42(6):1331-9. doi: 10.1007/s10439-014-1002-z. Epub 2014 Apr 12.

Abstract

Subject specific musculoskeletal models typically base some or all of their parameters on a source other than the subject being modeled. Evidence demonstrates that cadaveric measurements do not always scale appropriately to every subject, yet many musculoskeletal models still rely heavily on cadaveric based data. This study focused on the First Dorsal interosseous (FDI) given its unique function as the sole abductor of the second metacarpophalangeal joint. There were two purposes to this study: (1) to describe the procedures that can be used in vivo to determine the properties of a model of the FDI. (2). To determine the model parameters required to characterize the FDI for a group of four subjects. Parameters were determined using ultrasound imaging and a custom-built finger dynamometer. Some parameters were measured directly while other parameters had to be estimated using a least-squares criterion. For example, the parameters for the force-length properties were determined by fitting a model to experimentally determined data, with maximum isometric force values ranging from 86 to 102 N, and optimum lengths from 41 to 53 mm. It was shown that full characterization is possible for the FDI with parameters that are physiologically reasonable, but which showed variability between subjects. This model and approach for parameter identification will allow for more detailed analysis of the function of the FDI.

摘要

特定个体的肌肉骨骼模型通常将其部分或全部参数基于被建模个体以外的来源。有证据表明,尸体测量数据并不总是能适当地按比例应用于每个个体,但许多肌肉骨骼模型仍然严重依赖基于尸体的数据。鉴于第一背侧骨间肌(FDI)作为第二掌指关节唯一外展肌的独特功能,本研究聚焦于该肌肉。本研究有两个目的:(1)描述可在体内用于确定FDI模型特性的程序。(2)确定一组四名受试者的FDI特征所需的模型参数。参数通过超声成像和定制的手指测力计来确定。一些参数直接测量,而其他参数则必须使用最小二乘法准则进行估计。例如,力-长度特性的参数通过将模型拟合到实验确定的数据来确定,最大等长力值范围为86至102 N,最佳长度为41至53 mm。结果表明,使用生理上合理但个体间存在差异的参数,可以对FDI进行全面表征。该模型和参数识别方法将允许对FDI的功能进行更详细的分析。

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