Unraveling the mechanisms of high-level gait control in functional gait disorders.

IF 3.2 4区 医学 Q2 CLINICAL NEUROLOGY Journal of Neural Transmission Pub Date : 2024-09-06 DOI:10.1007/s00702-024-02829-4
Angela Sandri, Chiara Bonetto, Mirta Fiorio, Francesca Salaorni, Giulia Bonardi, Christian Geroin, Nicola Smania, Michele Tinazzi, Marialuisa Gandolfi
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Abstract

Functional gait disorders (FGDs) are a disabling subset of Functional Neurological Disorders in which presenting symptoms arise from altered high-level motor control. The dual-task paradigm can be used to investigate mechanisms of high-level gait control. The study aimed to determine the objective measures of gait that best discriminate between individuals with FGDs and healthy controls and the relationship with disease severity and duration. High-level spatiotemporal gait outcomes were analyzed in 87 patients with FGDs (79.3% women, average age 41.9±14.7 years) and 48 healthy controls (60.4% women, average age 41.9±15.7 years) on single and motor, cognitive, and visual-fixation dual tasks. The area under the curve (AUC) from the receiver operator characteristic plot and the dual-task effect (DTE) were calculated for each measure. Dual-task interference on the top single-task gait characteristics was determined by two-way repeated measures ANOVA. Stride time variability and its standard deviation (SD) failed to discriminate between the two groups in single and dual-task conditions (AUC<0.80 for all). Significant group x task interactions were observed for swing time SD and stride time on the cognitive dual tasks (p<0.035 for all). Longer disease duration was associated with poor gait performance and unsteadiness in motor and cognitive DTE (p<0.003) but improvement in stride length and swing time on the visual dual tasks (p<0.041). Our preliminary findings shed light on measures of gait automaticity as a diagnostic and prognostic gait biomarker and underline the importance of early diagnosis and management in individuals with FGDs.

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揭示功能性步态障碍的高级步态控制机制。
功能性步态障碍(FGDs)是功能性神经障碍的一个致残子集,其表现症状源于高级运动控制的改变。双任务范式可用于研究高级步态控制的机制。该研究旨在确定最能区分 FGD 患者和健康对照组的步态客观测量方法,以及与疾病严重程度和病程的关系。研究分析了87名FGD患者(79.3%为女性,平均年龄为(41.9±14.7)岁)和48名健康对照者(60.4%为女性,平均年龄为(41.9±15.7)岁)在单一任务、运动、认知和视觉定点双重任务上的高水平时空步态结果。计算了每项测量的接收器运算特征图曲线下面积(AUC)和双任务效应(DTE)。通过双向重复测量方差分析确定了双重任务对最高单一任务步态特征的干扰。在单一任务和双重任务条件下,步幅时间变异性及其标准偏差(SD)无法区分两组(AUC
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来源期刊
Journal of Neural Transmission
Journal of Neural Transmission 医学-临床神经学
CiteScore
7.20
自引率
3.00%
发文量
112
审稿时长
2 months
期刊介绍: The investigation of basic mechanisms involved in the pathogenesis of neurological and psychiatric disorders has undoubtedly deepened our knowledge of these types of disorders. The impact of basic neurosciences on the understanding of the pathophysiology of the brain will further increase due to important developments such as the emergence of more specific psychoactive compounds and new technologies. The Journal of Neural Transmission aims to establish an interface between basic sciences and clinical neurology and psychiatry. It intends to put a special emphasis on translational publications of the newest developments in the field from all disciplines of the neural sciences that relate to a better understanding and treatment of neurological and psychiatric disorders.
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