The Effects of Cardiorespiratory and Motor Skill Fitness on Intrinsic Functional Connectivity of Neural Networks in Individuals with Parkinson's Disease.

Brain plasticity (Amsterdam, Netherlands) Pub Date : 2021-10-19 eCollection Date: 2021-01-01 DOI:10.3233/BPL-200115
Behnaz Jarrahi, Sarah C McEwen, Daniel P Holschneider, Dawn M Schiehser, Andrew J Petkus, Megan E Gomez, Jack D Van Horn, Vincent Filoteo, Michael W Jakowec, Giselle M Petzinger
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引用次数: 1

Abstract

Background: Studies in aging older adults have shown the positive association between cognition and exercise related fitness, particularly cardiorespiratory fitness. These reports have also demonstrated the association of high cardiorespiratory fitness, as well as other types of fitness, on the reversal of age-related decline in neural network connectivity, highlighting the potential role of fitness on age- and disease-related brain changes. While the clinical benefits of exercise are well-documented in Parkinson’s disease (PD), the extent to which cardiorespiratory fitness (assessed by estimated VO2max testing) or motor skill fitness (assessed by the Physical Performance Test (PPT)) affects neural network connectivity in PD remains to be investigated. The purpose of this study was to explore the hypothesis that higher fitness level is associated with an increase in the intrinsic network connectivity of cognitive networks commonly affected in PD. Methods: In this cross-sectional resting state fMRI, we used a multivariate statistical approach based on high-dimensional independent component analysis (ICA) to investigate the association between two independent fitness metrics (estimated VO2max and PPT) and resting state network connectivity. Results: We found that increased estimated VO2max was associated with increased within network connectivity in cognitive networks known to be impaired in PD, including those sub-serving memory and executive function. There was a similar trend for high levels of PPT to be associated with increased within network connectivity in distinct resting state networks. The between functional network connectivity analysis revealed that cardiorespiratory fitness was associated with increased functional connectivity between somatosensory motor network and several cognitive networks sub-serving memory, attention, and executive function. Conclusion: This study provides important empirical data supporting the potential association between two forms of fitness and multiple resting state networks impacting PD cognition. Linking fitness to circuit specific modulation of resting state network connectivity will help establish a neural basis for the positive effects of fitness and specific exercise modalities and provide a foundation to identify underlying mechanisms to promote repair.

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心肺和运动技能适应度对帕金森病患者神经网络内在功能连通性的影响
背景:对老年人的研究表明认知与运动相关的健康,特别是心肺健康之间存在正相关。这些报告还表明,高心肺健康以及其他类型的健康与逆转与年龄相关的神经网络连通性下降有关,突出了健康对年龄和疾病相关的大脑变化的潜在作用。虽然运动对帕金森病(PD)的临床益处已得到充分证明,但心肺健康(通过估计的VO2max测试评估)或运动技能健康(通过物理性能测试(PPT)评估)对PD神经网络连接的影响程度仍有待研究。本研究的目的是探讨更高的健康水平与PD患者常受影响的认知网络内在网络连通性增加相关的假设。方法:在横断面静息状态fMRI中,我们使用基于高维独立分量分析(ICA)的多元统计方法来研究两个独立健身指标(估计VO2max和PPT)与静息状态网络连接之间的关系。结果:我们发现,估计最大摄血量的增加与PD中已知受损的认知网络的网络连通性增加有关,包括那些次级服务记忆和执行功能。在不同的静息状态网络中,高水平的PPT与网络内连通性的增加也有类似的趋势。功能网络间连通性分析显示,心肺健康与体感运动网络和几个服务于记忆、注意力和执行功能的认知网络之间的功能连通性增加有关。结论:本研究提供了重要的经验数据,支持两种健身形式和多种静息状态网络影响PD认知之间的潜在关联。将健身与静息状态网络连接的电路特异性调节联系起来,将有助于为健身和特定运动模式的积极作用建立神经基础,并为确定促进修复的潜在机制提供基础。
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