Nown Thomas H, Upadhyay Priti, Kerr Andrew, Andonovic Ivan, Tachtatzis Christos, Grealy Madeleine A
IEEE Rev Biomed Eng. 2023;16:672-686. doi: 10.1109/RBME.2022.3187840. Epub 2023 Jan 5.
Movement sonification is emerging as a useful tool for rehabilitation, with increasing evidence in support of its use. To create such a system requires component considerations outside of typical sonification design choices, such as the dimension of movement to sonify, section of anatomy to track, and methodology of motion capture. This review takes this emerging and highly diverse area of literature and keyword-code existing real-time movement sonification systems, to analyze and highlight current trends in these design choices, as such providing an overview of existing systems. A combination of snowballing through relevant existing reviews and a systematic search of multiple databases were utilized to obtain a list of projects for data extraction. The review categorizes systems into three sections: identifying the link between physical dimension to auditory dimension used in sonification, identifying the target anatomy tracked, identifying the movement tracking system used to monitor the target anatomy. The review proceeds to analyze the systematic mapping of the literature and provide results of the data analysis highlighting common and innovative design choices used, irrespective of application, before discussing the findings in the context of movement rehabilitation. A database containing the mapped keywords assigned to each project are submitted with this review.
运动声化正逐渐成为康复领域的一种有用工具,支持其应用的证据越来越多。创建这样一个系统需要考虑典型声化设计选择之外的组件因素,例如要声化的运动维度、要跟踪的解剖部位以及运动捕捉方法。本综述梳理了这一新兴且高度多样化的文献领域,并对现有的实时运动声化系统进行关键词编码,以分析和突出这些设计选择的当前趋势,从而概述现有系统。通过对相关现有综述进行滚雪球式检索,并对多个数据库进行系统搜索,获取了用于数据提取的项目列表。该综述将系统分为三个部分:确定声化中使用的物理维度与听觉维度之间的联系、确定所跟踪的目标解剖部位、确定用于监测目标解剖部位的运动跟踪系统。在结合运动康复背景讨论研究结果之前,该综述继续分析文献的系统映射,并给出数据分析结果,突出所使用的常见和创新设计选择,而不考虑其应用领域。本综述还提交了一个包含分配给每个项目的映射关键词的数据库。