Department of Neurology, Institute of Neurosciences Kolkata, 185/1 AJC Bose Road, Kolkata, 700017, India.
Department of Biomedical Science and Technology (School of Biological Sciences) and Department of Sports Science (School of Rehabilitation Sciences and Physical Education), Ramakrishna Mission Vivekananda Educational and Research Institute (RKMVERI), Kolkata, West Bengal, India; JIVAN - Centre for Research in Biological Sciences, Ramakrishna Mission Seva Pratishthan (RKMSP), Kolkata, West Bengal, India.
Parkinsonism Relat Disord. 2023 Aug;113:105483. doi: 10.1016/j.parkreldis.2023.105483. Epub 2023 Jun 13.
Gait differentiation in progressive supranuclear palsy (PSP) and vascular parkinsonism (VaP) is sometimes difficult to detect with the naked eye. Here, we compared specific gait parameters, neuro-morphometric indices, and their associations between patients with PSP Richardson's syndrome (PSP-RS) and VaP. A total of 18 PSP-RS and 13 VaP patients were recruited. Spatio-temporal gait parameters (GAITRite®) and neuroanatomical morphometry (FreeSurfer pipeline) were assessed. The groups were compared using unpaired t-tests involving 10000 random permutations after statistically controlling for total UPDRS-III and H&Y scores. Statistically significant differences between the groups were decided at < 5% Benjamini-Hochberg False Discovery Rate (FDR) for multiple-comparison related corrections. Spearman's correlations were performed to assess the significant associations (p < 0.05) between the gait parameters and morphometry indices. Among all the spatio-temporal gait parameters, PSP-RS patients displayed greater stride time, step time, swing time, and stance time variabilities compared to VaP. Morphometric analyses showed that thalamus, and caudate volumes were significantly lower, but cerebellar cortex, hippocampus, amygdala, accumbens, and putamen volumes were higher in PSP-RS than VaP. Moreover, the bilateral insula was significantly thinner in VaP than in PSP-RS. Correlation analyses support the involvement of limbic structures besides cerebellum in postural control during self-paced walking of PSP-RS patients. Our findings underline the importance of examining individual brain regions to understand the association of cortical and subcortical morphometric estimates and gait variability parameters in PSP-RS and VaP. This study suggests the involvement of the limbic system in addition to the classical neural structures for motor control and gait.
在进行性核上性麻痹(PSP)和血管性帕金森病(VaP)的步态区分时,有时仅凭肉眼难以察觉。在此,我们比较了 PSP Richardson 综合征(PSP-RS)和 VaP 患者的特定步态参数、神经形态计量学指标及其相关性。共纳入 18 例 PSP-RS 患者和 13 例 VaP 患者。使用 GAITRite®评估时空步态参数,使用 FreeSurfer 管道评估神经解剖形态计量学。在经过统计学控制总 UPDRS-III 和 H&Y 评分后,使用涉及 10000 次随机置换的非配对 t 检验比较两组间差异。对于多比较相关校正,仅当组间差异具有统计学意义(p<0.05)时,才决定使用 Benjamini-Hochberg 错误发现率(FDR)<5%进行判断。使用 Spearman 相关性分析评估步态参数与形态计量学指标之间的显著相关性(p<0.05)。在所有时空步态参数中,PSP-RS 患者的步幅时间、步长时间、摆动时间和站立时间变异性均大于 VaP 患者。形态计量学分析显示,PSP-RS 患者的丘脑和尾状核体积明显较小,而小脑皮质、海马、杏仁核、伏隔核和壳核体积明显较大。此外,与 PSP-RS 患者相比,VaP 患者的双侧脑岛明显较薄。相关性分析支持在 PSP-RS 患者的自我调节步行过程中,除了小脑之外,边缘结构也参与了姿势控制。本研究强调了检查单个脑区的重要性,以了解 PSP-RS 和 VaP 中皮质和皮质下形态计量学估计值与步态变异性参数的相关性。该研究提示了边缘系统在运动控制和步态方面除了经典神经结构之外的参与。