Bos Ronald A, Haarman Claudia J W, Stortelder Teun, Nizamis Kostas, Herder Just L, Stienen Arno H A, Plettenburg Dick H
Department of Biomechanical Engineering, Delft University of Technology, Mekelweg 2, 2628 CD Delft, The Netherlands.
Department of Biomechanical Engineering, University of Twente, Drienerlolaan 5, 7522 NB Enschede, The Netherlands.
J Neuroeng Rehabil. 2016 Jun 29;13(1):62. doi: 10.1186/s12984-016-0168-z.
The development of dynamic hand orthoses is a fast-growing field of research and has resulted in many different devices. A large and diverse solution space is formed by the various mechatronic components which are used in these devices. They are the result of making complex design choices within the constraints imposed by the application, the environment and the patient's individual needs. Several review studies exist that cover the details of specific disciplines which play a part in the developmental cycle. However, a general collection of all endeavors around the world and a structured overview of the solution space which integrates these disciplines is missing. In this study, a total of 165 individual dynamic hand orthoses were collected and their mechatronic components were categorized into a framework with a signal, energy and mechanical domain. Its hierarchical structure allows it to reach out towards the different disciplines while connecting them with common properties. Additionally, available arguments behind design choices were collected and related to the trends in the solution space. As a result, a comprehensive overview of the used mechatronic components in dynamic hand orthoses is presented.
动态手部矫形器的开发是一个快速发展的研究领域,已经产生了许多不同的设备。这些设备中使用的各种机电部件形成了一个庞大且多样的解决方案空间。它们是在应用、环境和患者个体需求所施加的限制内做出复杂设计选择的结果。有几项综述研究涵盖了在开发周期中起作用的特定学科的细节。然而,缺少对世界各地所有相关努力的总体汇总以及对整合这些学科的解决方案空间的结构化概述。在本研究中,总共收集了165个单独的动态手部矫形器,并将其机电部件分类到一个具有信号、能量和机械领域的框架中。其层次结构使其能够涉及不同学科,同时将它们与共同属性联系起来。此外,收集了设计选择背后的现有论据,并将其与解决方案空间中的趋势相关联。结果,给出了动态手部矫形器中使用的机电部件的全面概述。