IEEE Trans Neural Syst Rehabil Eng. 2019 Aug;27(8):1511-1520. doi: 10.1109/TNSRE.2019.2926786. Epub 2019 Jul 4.
Virtual reality is a trending, widely accessible, and contemporary technology of increasing utility to biomedical and health applications. However, most implementations of virtual reality environments are tailored to specific applications. We describe the complete development of a novel, open-source virtual reality environment that is suitable for multipurpose biomedical and healthcare applications. This environment can be interfaced with different hardware and data sources, ranging from gyroscopes to fMRI scanners. The developed environment simulates an immersive (first-person perspective) run in the countryside, in a virtual landscape with various salient features. The utility of the developed VR environment has been validated via two test applications: an application in the context of motor rehabilitation following injury of the lower limbs and an application in the context of real-time functional magnetic resonance imaging neurofeedback, to regulate brain function in specific brain regions of interest. Both applications were tested by pilot subjects that unanimously provided very positive feedback, suggesting that appropriately designed VR environments can indeed be robustly and efficiently used for multiple biomedical purposes. We attribute the versatility of our approach on three principles implicit in the design: selectivity, immersiveness, and adaptability. The software, including both applications, is publicly available free of charge, via a GitHub repository, in support of the Open Science Initiative. Although using this software requires specialized hardware and engineering know-how, we anticipate our contribution to catalyze further progress, interdisciplinary collaborations and replicability, with regards to the usage of virtual reality in biomedical and health applications.
虚拟现实是一种流行的、广泛可及的、具有现代技术的方法,越来越多地应用于生物医学和健康应用。然而,大多数虚拟现实环境的实现都针对特定的应用进行了定制。我们描述了一种新颖的、开源的虚拟现实环境的完整开发过程,该环境适用于多种生物医学和医疗保健应用。这个环境可以与不同的硬件和数据源进行接口,从陀螺仪到 fMRI 扫描仪。开发的环境模拟了一个沉浸式的(第一人称视角)在乡村中奔跑的体验,在一个具有各种显著特征的虚拟景观中。通过两个测试应用程序验证了所开发的 VR 环境的实用性:一个是在下肢受伤后的康复运动中的应用程序,另一个是在实时功能磁共振成像神经反馈中的应用程序,以调节特定感兴趣脑区的大脑功能。两个应用程序都由试点对象进行了测试,他们一致提供了非常积极的反馈,这表明经过适当设计的 VR 环境确实可以稳健高效地用于多种生物医学目的。我们将我们的方法的多功能性归因于设计中隐含的三个原则:选择性、沉浸感和适应性。该软件包括两个应用程序,都通过 GitHub 存储库免费提供,以支持开放科学倡议。虽然使用此软件需要专门的硬件和工程知识,但我们预计我们的贡献将促进进一步的进展、跨学科合作和可重复性,以及在生物医学和健康应用中使用虚拟现实。