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基于医学成像的工具手柄设计的跨学科方法。

Interdisciplinary approach to tool-handle design based on medical imaging.

机构信息

Laboratory for Intelligent CAD Systems, Faculty of Mechanical Engineering, University of Maribor, Smetanova Ulica 17, 2000 Maribor, Slovenia.

出版信息

Biomed Res Int. 2013;2013:159159. doi: 10.1155/2013/159159. Epub 2013 Sep 19.

Abstract

Products are becoming increasingly complex; therefore, designers are faced with a challenging task to incorporate new functionality, higher performance, and optimal shape design. Traditional user-centered design techniques such as designing with anthropometric data do not incorporate enough subject data to design products with optimal shape for best fit to the target population. To overcome these limitations, we present an interdisciplinary approach with medical imaging. The use of this approach is being presented on the development of an optimal sized and shaped tool handle where the hand is imaged using magnetic resonance imaging machine. The obtained images of the hand are reconstructed and imported into computer-aided design software, where optimal shape of the handle is obtained with Boolean operations. Methods can be used to develop fully customized products with optimal shape to provide best fit to the target population. This increases subjective comfort rating, performance and can prevent acute and cumulative trauma disorders. Provided methods are especially suited for products where high stresses and exceptional performance is expected (high performance tools, professional sports, and military equipment, etc.). With the use of these interdisciplinary methods, the value of the product is increased, which also increases the competitiveness of the product on the market.

摘要

产品变得越来越复杂;因此,设计师面临着一项具有挑战性的任务,即融入新的功能、更高的性能和最佳的形状设计。传统的以人为中心的设计技术,如使用人体测量数据进行设计,并没有纳入足够的主体数据来设计最佳形状的产品,以最佳贴合目标人群。为了克服这些局限性,我们提出了一种跨学科的方法,即使用医学成像。这种方法的应用是在手用磁共振成像机成像的情况下开发最佳尺寸和形状的工具手柄。手部的图像被重建并导入计算机辅助设计软件,在那里通过布尔运算获得手柄的最佳形状。可以使用这些方法来开发具有最佳形状的完全定制产品,以最佳贴合目标人群。这提高了主观舒适度评分、性能,并可以预防急性和累积性创伤障碍。所提供的方法特别适合于需要高应力和卓越性能的产品(高性能工具、专业运动和军事装备等)。通过使用这些跨学科方法,可以提高产品的价值,从而提高产品在市场上的竞争力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebdf/3792520/0310e05cdcff/BMRI2013-159159.001.jpg

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