Yin Hu, Zong Fangrong, Deng Xiaofeng, Zhang Dong, Zhang Yan, Wang Shuo, Wang Yu, Zhao Jizong
Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing, China.
China National Clinical Research Center for Neurological Diseases, Beijing, China.
Quant Imaging Med Surg. 2023 Mar 1;13(3):1399-1416. doi: 10.21037/qims-22-303. Epub 2023 Feb 10.
The cerebellum and cerebral cortex form the most important cortico-cerebellar system in the brain. However, diffusion magnetic resonance imaging (MRI)-based tractography of the connecting white matter between the cerebellum and cerebral cortex, which support language function, has not been extensively reported on. This work aims to serve as a guideline for facilitating the analysis of white matter tracts along the language-related cerebro-cerebellar pathway (LRCCP), which includes the corticopontine, pontocerebellar, corticorubral, rubroolivary, olivocerebellar, and dentatorubrothalamic tracts.
The LRCCP templates were developed via processing the high-resolution, population-averaged atlas available in the Human Connectome Project (HCP)-1065 dataset (2017 Q4, 1,200-subject release) in DSI Studio. The deterministic tracking was performed with the manually selected regions of interest (ROIs) on this atlas according to prior anatomic knowledge. Templates were then applied to the MRI datasets of 30 health participants acquired from a single hospital to verify the practicability of the tracking. The diffusion tensor and shape analysis metrics were calculated for all LRCCP tracts. Differences in the tracking metrics between the left and right hemispheres were compared, and the related white matter asymmetry was discussed.
The LRCCP templates were successfully created and applied to healthy participants for quantitative analysis. Significantly higher mean fractional anisotropy (FA) values were discovered on the left (L) corticorubral tract [L, 0.43±0.02 right (R), 0.41±0.02; P<0.01] and left dentatorubrothalamic tract (L, 0.47±0.02 R, 0.46±0.02; P<0.01). Significant differences in tract volume and streamline number were observed between the corticopontine, corticorubral, and dentatorubrothalamic tracts. The size of the right corticopontine and corticorubral tracts were smaller, and both had smaller streamline numbers and innervation areas when compared with the contralateral sides. The R dentatorubrothalamic tract showed a larger volume (R, 23,582.47±4,160.71 mm L, 19,821.27±2,983.91 mm; P<0.01) and innervation area (R, 2,117.37±433.98 mm L, 1,610.00±356.19 mm; P<0.01) than did the L side. No significant differences were observed in the rubroolivary tracts.
This work suggests the feasibility of applying tractography templates of the LRCCP to quantitatively evaluate white matter properties associated with language function. Lateralized diffusion metrics were observed in preliminary experiments. LRCCP tractography-based research may provide a potential quantitative method to better understanding neuroplasticity.
小脑和大脑皮层构成了大脑中最重要的皮质 - 小脑系统。然而,基于扩散磁共振成像(MRI)对支持语言功能的小脑与大脑皮层之间连接白质的纤维束成像研究尚未广泛报道。本研究旨在为促进沿语言相关脑 - 小脑通路(LRCCP)的白质纤维束分析提供指导,该通路包括皮质脑桥束、脑桥小脑束、皮质红核束、红核橄榄束、橄榄小脑束和齿状核红核丘脑束。
通过在DSI Studio中处理人类连接组计划(HCP) - 1065数据集(2017年第四季度,1200名受试者版本)中可用的高分辨率群体平均图谱,开发LRCCP模板。根据先前的解剖学知识,在该图谱上使用手动选择的感兴趣区域(ROI)进行确定性追踪。然后将模板应用于从一家医院获取的30名健康参与者的MRI数据集,以验证追踪的实用性。计算所有LRCCP纤维束的扩散张量和形状分析指标。比较左右半球追踪指标的差异,并讨论相关的白质不对称性。
成功创建了LRCCP模板并将其应用于健康参与者进行定量分析。在左侧皮质红核束[左(L),0.43±0.02;右(R),0.41±0.02;P<0.01]和左侧齿状核红核丘脑束(L,0.47±0.02;R,0.46±0.02;P<0.01)上发现平均分数各向异性(FA)值显著更高。在皮质脑桥束、皮质红核束和齿状核红核丘脑束之间观察到纤维束体积和流线数量的显著差异。右侧皮质脑桥束和皮质红核束的尺寸较小,与对侧相比,两者的流线数量和神经支配区域均较小。右侧齿状核红核丘脑束的体积(R,23,582.47±4,160.71 mm³;L,19,821.27±2,983.91 mm³;P<0.01)和神经支配区域(R,2,117.37±433.98 mm²;L,1,610.00±356.19 mm²;P<0.01)均大于左侧。红核橄榄束未观察到显著差异。
本研究表明应用LRCCP纤维束成像模板定量评估与语言功能相关的白质特性的可行性。在初步实验中观察到了侧化扩散指标。基于LRCCP纤维束成像的研究可能为更好地理解神经可塑性提供一种潜在的定量方法。