White Matter Plasticity Underpins Cognitive Gains After Multidomain Adaptive Computerized Cognitive Training

Author:

Dai Xiangwei12ORCID,Liu Sihan3ORCID,Li Yumeng2,Long Shijie2,Li Xin2,Chen Chuansheng4,Yang Caishui25,Zhang Junying1,Han Zhuo Rachel3,Li He1,Wang Jun2,Zhang Zhanjun2ORCID

Affiliation:

1. Institute of Basic Research in Clinical Medicine, China Academy of Chinese Medical Sciences , Beijing , China

2. State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University , Beijing , China

3. Beijing Key Laboratory of Applied Experimental Psychology, National Demonstration Center for Experimental Psychology Education, Faculty of Psychology, Beijing Normal University , Beijing , China

4. Department of Psychological Science, University of California , Irvine, CA , USA

5. School of Systems Science, Beijing Normal University , Beijing , China

Abstract

Abstract Background This study aims to evaluate the effectiveness of computerized cognitive training (CCT) on white matter (WM) neuroplasticity and neuropsychological performance. Methods A total of 128 community older adults (64.36 ± 6.14 years) were recruited and randomly assigned to the intervention or control group. Participants in the intervention group received a home-based, multidomain, and adaptive CCT for 30 minutes, 2 days per week for 1 year. Neuropsychological assessments, diffusion magnetic resonance imaging (MRI), and T1-weighted structural MRI were performed at the pre- and post-intervention visits. Results Eighty-one of 128 participants (41 in the intervention group and 40 in the control group) completed the 1-year intervention, and 61 of them (27 in the intervention group and 34 in the control group) underwent MRI scans twice. After excluding attrition bias, a significant time-by-group interaction on the Stroop Color-Word Test (SCWT; F = 51.85, p < .001) was found, showing improvement in the intervention group and a decline in the control group. At the brain level, the intervention group exhibited increased axial diffusivity in the left posterior thalamic radiation, and this increase was significantly correlated with reduced SCWT reaction time (r = ‒0.42, p = .029). No significant time-by-group interactions were found for gray matter volume. Conclusions Our findings suggest that conducting multidomain adaptive CCT is an effective and feasible method to counteract cognitive decline in older adults, with WM neuroplasticity underpinning cognitive improvements. This study contributes to the understanding of the neural basis for the beneficial effect of CCT for older adults.

Funder

STI2030-Major Projects

State Key Program of National Natural Science of China

Funds for International Cooperation and Exchange of the National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of China

Fundamental Research Funds for the Central Public welfare research institution

Fundamental Research Funds for the China Academy of Chinese Medical Sciences

Tang Scholar

Publisher

Oxford University Press (OUP)

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