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确定健康成年人的手指功能能力:将实验数据与生物力学模型进行比较。

Determining functional finger capabilities of healthy adults: comparing experimental data to a biomechanical model.

作者信息

Leitkam Samuel T, Bush Tamara Reid, Bix Laura

出版信息

J Biomech Eng. 2014 Feb;136(2):021022. doi: 10.1115/1.4026255.

Abstract

The human hand has a wide range of possible functional abilities that can change with age, disease, and injury, and can vary from individual to individual and subsequently can affect a person's quality of life. The objective of this work was to develop a theoretical model of the space that is reachable by the hand, weighted to represent three types of functionality, and to compare this model to an experimental data set obtained from a healthy hand population. A theoretical model, termed the Weighted Fingertip Space, was developed using 50th percentile published hand data and ranges of finger motion. The functional abilities calculated in the model were the abilities to position the fingertip pad, orient the fingertip pad, and apply directional forces through the fingertip pad at all the reachable points in space with respect to the palm. Following the development of this theoretical model, experimental data sets from nine individuals with healthy hands were obtained through motion capture techniques. The experimental data were then compared to the theoretical model. Comparisons between a 50th percentile theoretical model and a subject with a similar sized hand showed good agreement in weighting parameters and overall size and shape of the model spaces. The experimental data set from the entire sample, which ranged from the 2nd to 95th percentile hand sizes, showed resultant models that, on average, reached smaller volumes of space, but yielded higher values of the functional measures within those volumes. Additionally, in comparison to the theoretical model, the variability of the experimental models showed that small changes in hand dimensions and ranges of motion of the finger joints had a large influence in the functional measures of the model. Combined, these results suggest that the modeling technique can calculate functional ability of the hand, but should be used on an individualized basis for evaluating changes in function (e.g., rehabilitation). Further, scaling to hand size has the potential to yield "average" models for larger population samples.

摘要

人类的手具有广泛的潜在功能能力,这些能力会随年龄、疾病和损伤而变化,因人而异,进而会影响一个人的生活质量。这项工作的目的是建立一个手部可触及空间的理论模型,对其加权以体现三种功能类型,并将该模型与从健康手部人群获得的实验数据集进行比较。使用已公布的第50百分位数的手部数据和手指运动范围,开发了一个名为加权指尖空间的理论模型。该模型中计算的功能能力包括在相对于手掌的空间中所有可触及点处定位指尖垫、定向指尖垫以及通过指尖垫施加定向力的能力。在建立这个理论模型之后,通过动作捕捉技术获得了来自九名手部健康个体的实验数据集。然后将实验数据与理论模型进行比较。第50百分位数的理论模型与手大小相似的受试者之间的比较表明,在加权参数以及模型空间的整体大小和形状方面具有良好的一致性。来自整个样本的实验数据集,其手部大小范围从第2百分位数到第95百分位数,结果显示平均而言,生成的模型触及的空间体积较小,但在这些体积内功能测量值较高。此外,与理论模型相比,实验模型的变异性表明,手部尺寸和手指关节运动范围的微小变化对模型的功能测量有很大影响。综合来看,这些结果表明该建模技术可以计算手部的功能能力,但应在个体基础上用于评估功能变化(例如康复)。此外,按手大小进行缩放有可能为更大的人群样本生成“平均”模型。

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