Dual-task clinical and functional MRI correlates in Parkinson's disease with postural instability and gait disorders

步态 物理医学与康复 缘上回 认知 平衡(能力) 神经心理学 额中回 心理学 帕金森病 额上回 执行职能 额下回 医学 神经科学 功能磁共振成像 疾病 内科学
作者
Elisabetta Sarasso,Andrea Gardoni,Noemi Piramide,Maria Antonietta Volonté,Elisa Canu,Andrea Tettamanti,Massimo Filippi,Federica Agosta
出处
期刊:Parkinsonism & Related Disorders [Elsevier BV]
卷期号:91: 88-95 被引量:34
标识
DOI:10.1016/j.parkreldis.2021.09.003
摘要

Dual-task is a challenge for Parkinson's disease patients with postural instability and gait disorders (PD-PIGD).This study investigated clinical, cognitive and functional brain correlates of dual-task deficits in PD-PIGD patients using quantitative gait analysis, neuropsychological evaluations and functional MRI (fMRI).Twenty-three PD-PIGD patients performed a clinical assessment of gait/balance abilities. Single and dual-task Timed-Up-and-Go tests were monitored using an optoelectronic system to study turning velocity. Patients underwent executive-attentive function evaluation and two fMRI tasks: motor-task (foot anti-phase movements), and dual-task (foot anti-phase movements while counting backwards by threes starting from 100). Twenty-three healthy subjects underwent neuropsychological and fMRI assessments.Dual-task in PD-PIGD patients resulted in worse gait performance, particularly during turning. Performing the dual-task relative to the motor-fMRI task, healthy subjects showed widespread increased recruitment of sensorimotor, cognitive and cerebellar areas and reduced activity of inferior frontal and supramarginal gyri, while PD-PIGD patients showed increased recruitment of inferior frontal gyrus and supplementary motor area and reduced activity of primary motor, supramarginal and caudate areas. Dual-task gait alterations in patients correlated with balance and executive deficits and with altered dual-task fMRI brain activity of frontal areas.This study suggested the correlation between dual-task gait difficulties, postural instability and executive dysfunction in PD-PIGD patients. FMRI results suggest that an optimized recruitment of motor and cognitive networks is associated with a better dual-task performance in PD-PIGD. Future studies should evaluate the effect of specific gait/balance and dual-task trainings to improve gait parameters and optimize brain functional activity during dual-tasks.
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