研究目的
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).
研究成果
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.
研究不足
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.
1:Experimental Design and Method Selection:
The study used a novel computerized VSWM task developed on MATLAB based on the Neuro Recall video game. The task involved three levels of difficulty with four trials each, totaling 12 trials. The bilateral prefrontal cortex (PFC) was explored due to its relevance in VSWM and neural compensation.
2:Sample Selection and Data Sources:
A total of 31 healthy controls (HC), 12 patients with MCI, and 18 patients with mild Alzheimer’s disease (mAD) were recruited. Participants were right-handed and English-speaking, matched for age, gender, and educational level.
3:List of Experimental Equipment and Materials:
Multichannel continuous OT-R40 fNIRS system (Hitachi Medical Corporation, Japan) was utilized for non-invasive measurement of task-related hemodynamic activity in the brain.
4:Experimental Procedures and Operational Workflow:
Participants underwent practice sessions to ensure they could operate a computer mouse and carry out the experimental procedures. The task involved remembering images flashed during encoding, retaining the information for retention, and identifying them by clicking on the boxes accordingly during retrieval.
5:Data Analysis Methods:
The oxy-Hb is a more sensitive measure compared to deoxy-Hb as it reacts to task load in a more reliable manner. The Platform for Optical Topography Analysis Tools, a MATLAB-based analysis platform, was used to preprocess the raw fNIRS data.
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