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User-centered virtual environment assessment and design for cognitive rehabilitation applications.

机译:以用户为中心的虚拟环境评估和认知康复应用设计。

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摘要

Virtual environment (VE) design for cognitive rehabilitation necessitates a new methodology to ensure the validity of the resulting rehabilitation assessment. We propose that benchmarking the VE system technology utilizing a user-centered approach should precede the VE construction. Further, user performance baselines should be measured throughout testing as a control for adaptive effects that may confound the metrics chosen to evaluate the rehabilitation treatment. To support these claims we present data obtained from two modules of a user-centered head-mounted display (HMD) assessment battery, specifically resolution visual acuity and stereoacuity.;Resolution visual acuity and stereoacuity assessments provide information about the image quality achieved by an HMD based upon its unique system parameters. When applying a user-centered approach, we were able to quantify limitations in the VE system components (e.g., low microdisplay resolution) and separately point to user characteristics (e.g., changes in dark focus) that may introduce error in the evaluation of VE based rehabilitation protocols.;Based on these results, we provide guidelines for calibrating and benchmarking HMDs. In addition, we discuss potential extensions of the assessment to address higher level usability issues. We intend to test the proposed framework within the Human Experience Modeler (HEM), a testbed created at the University of Central Florida to evaluate technologies that may enhance cognitive rehabilitation effectiveness. Preliminary results of a feasibility pilot study conducted with a memory impaired participant showed that the HEM provides the control and repeatability needed to conduct such technology comparisons. Further, the HEM affords the opportunity to integrate new brain imaging technologies (i.e., functional Near Infrared Imaging) to evaluate brain plasticity associated with VE based cognitive rehabilitation.
机译:用于认知康复的虚拟环境(VE)设计需要一种新的方法来确保所得康复评估的有效性。我们建议使用以用户为中心的方法对VE系统技术进行基准测试应先于VE构建。此外,应在整个测试过程中测量用户性能基准,以作为自适应效果的对照,自适应效果可能会混淆为评估康复治疗而选择的指标。为了支持这些主张,我们提供了从以用户为中心的头戴式显示器(HMD)评估电池的两个模块获得的数据,特别是分辨率视敏度和立体视力。分辨率视敏度和立体视力评估提供了有关HMD实现的图像质量的信息基于其独特的系统参数。当应用以用户为中心的方法时,我们能够量化VE系统组件中的限制(例如,低微显示器分辨率),并分别指向可能在基于VE的评估中引入错误的用户特征(例如,暗焦点的变化)基于这些结果,我们提供了校准和基准测试HMD的指南。此外,我们讨论了评估的潜在扩展,以解决更高级别的可用性问题。我们打算在人类体验建模器(HEM)中测试提议的框架,该模型是在中佛罗里达大学创建的一个测试平台,用于评估可增强认知康复效果的技术。与记忆障碍的参与者进行的可行性试验研究的初步结果表明,HEM提供了进行此类技术比较所需的控制和可重复性。此外,HEM提供了整合新的脑部成像技术(即功能性近红外成像)以评估与基于VE的认知康复相关的脑可塑性的机会。

著录项

  • 作者

    Fidopiastis, Cali Michael.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Health Sciences Rehabilitation and Therapy.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 319 p.
  • 总页数 319
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:47

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