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Assessing Neural Compensation with Visuospatial Working Memory Load using Near-Infrared Imaging

DOI:10.1109/TNSRE.2019.2956459 期刊:IEEE Transactions on Neural Systems and Rehabilitation Engineering 出版年份:2019 更新时间:2025-09-12 10:27:22
摘要: Alzheimer’s disease is characterized by the progressive deterioration of cognitive abilities particularly working memory while mild cognitive impairment (MCI) represents its prodrome. It is generally believed that neural compensation is intact in MCI but absent in Alzheimer’s disease. This study investigated the effects of increasing task load as a means to induce neural compensation through a novel visual working memory (VSWM) task using functional near-infrared spectroscopy (fNIRS). The bilateral prefrontal cortex (PFC) was explored due to its relevance in VSWM and neural compensation. A total of 31 healthy controls (HC), 12 patients with MCI and 18 patients with mild Alzheimers disease (mAD) were recruited. Although all groups showed sensitivity in terms of behavioral performance (i.e. score) towards increasing task load (level 1 to 3), only in MCI load effect on cortical response (as measured by fNIRS) was significant. At lower task load, bilateral PFC activation did not differ between MCI and HC. Neural compensation in the form of hyperactivation was only noticeable in MCI with a moderate task load. Lack of hyperactivation in mAD, coupled with significantly poorer task performance across task loads, suggested the inability to compensate due to a greater degree of neurodegeneration. Our findings provided an insight into the interaction of cognitive load theory and neural compensatory mechanisms. The experiment results demonstrated the feasibility of inducing neural compensation with the proposed VSWM task at the right amount of cognitive load. This may provide a promising avenue to develop an effective cognitive training and rehabilitation for dementia population.
作者: Wei Chun Ung,Kah Hui Yap,Esther Gunaseli M. Ebenezer,Pui See Chin,Nadira Nordin,Sook Ching Chan,Hung Loong Yip,Cheng-Kai Lu,Masashi Kiguchi,Tong Boon Tang
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This study investigated the effects of increasing task load as a means to induce neural compensation through a novel visual working memory (VSWM) task using functional near-infrared spectroscopy (fNIRS).

The study found that VSWM is similarly affected as a consequence of the atrophy in both hemispheres across the progression of AD pathology. The bilateral PFC is equally responsible for neural compensation for VSWM performance. The pattern of neural compensatory response is subjected to the influence of task loads, particularly pronounced among patients with MCI. The experiment results demonstrated the feasibility of inducing neural compensation with the proposed VSWM task at the right amount of cognitive load, providing a promising avenue to develop an effective cognitive training and rehabilitation for dementia population.

The effects due to the nature of the task on the hemodynamic responses were not further explored in this study. Another limitation was the introduction of only three difficulty levels, which may not have been sufficiently challenging for healthy controls to observe significant changes in brain activation.

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