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Evaluation criteria for closed-loop adaptive dynamic discrete-continuous brain-computer interfaces: clinical study case with tetraplegic patient.

机译:闭环自适应动态离散连续脑计算机接口的评估标准:四肢瘫痪患者的临床研究案例。

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Quantifying and evaluating properly the performances is a critical issue in BCI experiments. The choice of the most adapted metrics can be difficult because they are specific to the experimental paradigm, task control, and data. In the current study evaluation criteria for closed-loop adaptive dynamic and hierarchical discrete-continuous brain-computer interfaces are examined. The challenges such as imbalanced multi-class bias for discrete decoding (classification), online computing cost and dynamic analysis of results in time are considered. There are two main objectives of the study: identifying the best suited performances metrics according to the requirements and combining several levels of evaluation in the whole BCI system (decoder and patient oriented). The main novelty of the study is the combination of several common metrics with new temporal metrics and a time dynamic approach which allows adequately reflect the performance of adaptive dynamic and hierarchical discrete-continuous brain-computer interfaces BCI systems. Additional response time and blocking error patterns reveal complementary information for BCI system performance evaluation. Developed criteria are applied to performance evaluation of 8-dimensional exoskeleton control by tetraplegic patient for both decoder and user-centered metrics.
机译:正确量化和评估性能是BCI实验中的关键问题。选择最适合的度量标准可能很困难,因为它们特定于实验范式,任务控制和数据。在当前的研究中,对用于闭环自适应动态和分层离散连续脑计算机接口的评估标准进行了研究。考虑了诸如离散解码(分类)的不平衡多类偏差,在线计算成本以及及时对结果进行动态分析等挑战。该研究有两个主要目标:根据需求确定最适合的绩效指标,并在整个BCI系统(解码器和面向患者)中组合几个评估级别。这项研究的主要新颖之处在于将几种常见指标与新的时间指标以及一种时间动态方法相结合,该方法可以充分反映自适应动态和分层离散连续脑计算机接口BCI系统的性能。额外的响应时间和阻塞错误模式揭示了用于BCI系统性能评估的补充信息。已开发的标准适用于四肢瘫痪患者针对解码器和以用户为中心的指标进行的8维外骨骼控制的性能评估。

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