Department of Neuroscience, Central Clinical School, Monash University;
Department of Biomedical Engineering, The Johns Hopkins University.
J Vis Exp. 2022 Feb 4(180). doi: 10.3791/63340.
Multiple lines of research provide compelling evidence for a role of the cerebellum in a wide array of cognitive and affective functions, going far beyond its historical association with motor control. Structural and functional neuroimaging studies have further refined understanding of the functional neuroanatomy of the cerebellum beyond its anatomical divisions, highlighting the need for the examination of individual cerebellar subunits in healthy variability and neurological diseases. This paper presents a standardized pipeline for examining cerebellum grey matter morphometry that combines high-resolution, state-of-the-art approaches for optimized and automated cerebellum parcellation (Automatic Cerebellum Anatomical Parcellation using U-Net Locally Constrained Optimization; ACAPULCO) and voxel-based registration of the cerebellum (Spatially Unbiased Infra-tentorial Template; SUIT) for volumetric quantification. The pipeline has broad applicability to a range of neurological diseases and is fully automated, with manual intervention only required for quality control of the outputs. The pipeline is freely available, with substantial accompanying documentation, and can be run on Mac, Windows, and Linux operating systems. The pipeline is applied in a cohort of individuals with Friedreich ataxia (FRDA), and representative results, as well as recommendations on group-level inferential statistical analyses, are provided. This pipeline could facilitate reliability and reproducibility across the field, ultimately providing a powerful methodological approach for characterizing and tracking cerebellar structural changes in neurological diseases.
多项研究提供了令人信服的证据,表明小脑在广泛的认知和情感功能中发挥作用,远远超出了其与运动控制的历史联系。结构和功能神经影像学研究进一步完善了对小脑功能神经解剖的理解,超越了其解剖分区,强调了需要在健康变异性和神经疾病中检查单个小脑亚单位。本文提出了一种标准化的小脑灰质形态学检查流水线,该流水线结合了高分辨率、最先进的方法,用于优化和自动化小脑分区(使用 U-Net 局部约束优化的自动小脑解剖分区;ACAPULCO)和小脑的基于体素的配准(无偏向性下脑模板;SUIT),以进行容积量化。该流水线广泛适用于一系列神经疾病,完全自动化,仅需要对输出进行质量控制的人工干预。该流水线是免费提供的,并附有大量的文档,可在 Mac、Windows 和 Linux 操作系统上运行。该流水线应用于弗里德里希共济失调症(FRDA)患者的队列中,并提供了代表性的结果,以及关于组水平推断性统计分析的建议。该流水线可以促进该领域的可靠性和可重复性,最终为描述和跟踪神经疾病中小脑结构变化提供一种强大的方法学方法。