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Impact of cerebellar atrophy on cortical gray matter and cerebellar peduncles as assessed by voxel-based morphometry and high angular resolution diffusion imaging

机译:通过基于体素的形态计量学和高角度分辨率扩散成像评估的小脑萎缩对皮质灰质和小脑梗的影响

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In recent years the cerebellum has been attributed amore important role in higher-level functions than previously believed. We examined a cohort of patients suffering from cerebellar atrophy resulting in ataxia, with two main objectives: first to investigate which regions of the cerebrum were affected by the cerebellar degeneration, and second to assess whether diffusion magnetic resonance imaging (dMRI) metrics within the medial (MCP) and superior cerebellar peduncle (SCP) – namely fractional anisotropy (FA) and radial diffusivity (RD) – could be used as a biomarker in patients with this condition.Structural and dMRI data of seven patients with cerebellar atrophy (2 with spinocerebellar atrophy type 2, 1 with Friedreich’s ataxia, 4 with idiopathic cerebellar ataxia) and no visible cortical lesions or cortical atrophy were investigated with Freesurfer and voxel-based morphometry (VBM) of gray matter (GM) as well as MCP and SCP FA maps. Correlations of MCP and SCP mean FA with ataxia scores and subscores were also evaluated. Freesurfer showed that patients had significantly reduced volume of the thalamus, ventral diencephalon and pallidum. VBM also demonstrated significantly lower local GM volumes in patients, notably in the head of the caudate nucleus, posterior cingulate gyrus and orbitofrontal cortex bilaterally, as well as in Broca’s area in the left hemisphere, and a significant increase in RD in the MCP and SCP of both hemispheres. A significant correlation was found between MCP mean FA and total ataxia score (R=?0.7, p=0.03), and subscores for kinetic functions (R=?0.74, p=0.03) and oculomotor disorders (R=?0.70, p=0.04).The regions of the cerebrum found to have significantly lower local GM volumes have been described to be involved in higher-level cerebellar functions such as initiation of voluntary movements, emotional control, memory retrieval and general cognition. Our findingscorroborate recent research pointing to a more extensive corticocerebellar system than previously thought.The significant difference in the MCP and SCP dMRI metrics between patients and controls as well as the significant correlation with ataxia total score and subscores support the use of dMRI metrics as an imaging biomarker for cerebellar degeneration and ataxia.
机译:近年来,小脑在高级功能中的作用比以前认为的要重要。我们检查了一群患有小脑萎缩导致共济失调的患者,其主要目标有两个:首先调查大脑的哪些区域受到小脑变性的影响;其次评估内侧的弥漫磁共振成像(dMRI)指标(MCP)和上小脑梗(SCP)(即分数各向异性(FA)和radial骨扩散性(RD))可以用作这种情况下的生物标志物。7例小脑萎缩患者的结构和dMRI数据(2例为小脑脊髓使用Freesurfer和基于体素的灰质(GM)形态测量法(VBM)以及MCP和SCP FA图研究了2型萎缩性萎缩,1例腓特烈共济失调,4例患有特发性小脑性共济失调且无可见的皮质病变或皮质萎缩。还评估了MCP和SCP平均FA与共济失调得分和亚评分的相关性。 Freesurfer表明,患者的丘脑,腹侧中脑和苍白球的体积明显减少。 VBM还显示患者的局部GM量显着降低,特别是在双侧尾状核头部,后扣带回和眶额皮质中以及左半球的Broca区域中,MCP和SCP的RD显着增加两个半球。发现MCP平均FA与总共济失调得分(R =?0.7,p = 0.03),动力学功能(R =​​?0.74,p = 0.03)和动眼功能障碍(R =?0.70,p = 0.04)。据描述,发现大脑局部GM量明显较低的区域参与了较高水平的小脑功能,例如主动运动的启动,情绪控制,记忆恢复和一般认知。我们的发现证实了最近的研究,指出了比以前想象的更广泛的皮质小脑系统。患者与对照之间MCP和SCP dMRI指标的显着差异以及与共济失调总分和分值的显着相关性支持将dMRI指标用作影像学检查小脑变性和共济失调的生物标志物。

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