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Development of orthogonal task designs in fMRI studies of higher cognition: The NIMH experience

机译:在具有较高认知能力的fMRI研究中开发正交任务设计:NIMH的经验

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This paper chronicles one researcher's journey at the National Institute of Mental Health, exploring ways to understand the neural systems responsible for the cognitive sub-processes of working memory tasks. Both the opportunities and the pitfalls with applying the idea of cognitive subtraction to neuroimaging data were well-known from studies using positron emission tomography. We took advantage of the improved temporal resolution of fMRI with a delayed-recognition task and identified the time-courses of the different stages of the task (encoding, memory delay, and recognition test) as predictor variables in a multiple regression analysis. Because these signals were temporally independent, individual components of tasks could be contrasted with one another, rather than entire tasks, reducing the problem of violations of pure insertion in cognitive subtraction. This approach enabled us to draw more detailed conclusions about the neural systems of higher cognition and the organization of prefrontal cortex than had been possible before fMRI. Further enhancements and innovations over the last 20. years by a multitude of researchers across the field have greatly expanded this knowledge, but this approach called "orthogonal task design" has remained a fundamental component of many of these modern studies.
机译:本文记录了一位研究人员在美国国家心理健康研究所的旅程,探索了理解负责工作记忆任务的认知子过程的神经系统的方法。在使用正电子发射断层扫描的研究中,将认知减法的概念应用于神经影像数据的机会和陷阱都是众所周知的。我们利用延迟识别任务改善了功能磁共振成像的时间分辨率,并在多元回归分析中将任务不同阶段(编码,记忆延迟和识别测试)的时间过程确定为预测变量。因为这些信号在时间上是独立的,所以任务的各个组成部分可以彼此对比,而不是整个任务,从而减少了认知减法中违反纯插入的问题。这种方法使我们能够比功能性磁共振成像之前得出的有关认知度更高的神经系统和额叶前皮层组织更详细的结论。在过去的20年中,该领域的众多研究人员进行了进一步的改进和创新,极大地扩展了这一知识,但是这种称为“正交任务设计”的方法仍然是许多现代研究的基本组成部分。

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