David Gergely, Fricke Björn, Oeschger Jan Malte, Ruthotto Lars, Fritz Francisco J, Ohana Ora, Mordhorst Laurin, Sauvigny Thomas, Freund Patrick, Tabelow Karsten, Mohammadi Siawoosh
Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Spinal Cord Injury Center, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.
Imaging Neurosci (Camb). 2024 Sep 13;2. doi: 10.1162/imag_a_00288. eCollection 2024.
Diffusion MRI (dMRI) has become a crucial imaging technique in the field of neuroscience, with a growing number of clinical applications. Although most studies still focus on the brain, there is a growing interest in utilizing dMRI to investigate the healthy or injured spinal cord. The past decade has also seen the development of biophysical models that link MR-based diffusion measures to underlying microscopic tissue characteristics, which necessitates validation through ex vivo dMRI measurements. Building upon 13 years of research and development, we present an open-source, MATLAB-based academic software toolkit dubbed ACID:omprehensive Toolbox formage Processing and Modeling of Brain, Spinal Cord, and Ex Vivoiffusion MRI Data. ACID is an extension to the Statistical Parametric Mapping (SPM) software, designed to process and model dMRI data of the brain, spinal cord, and ex vivo specimens by incorporating state-of-the-art artifact correction tools, diffusion and kurtosis tensor imaging, and biophysical models that enable the estimation of microstructural properties in white matter. Additionally, the software includes an array of linear and nonlinear fitting algorithms for accurate diffusion parameter estimation. By adhering to the Brain Imaging Data Structure (BIDS) data organization principles, ACID facilitates standardized analysis, ensures compatibility with other BIDS-compliant software, and aligns with the growing availability of large databases utilizing the BIDS format. Furthermore, being integrated into the popular SPM framework, ACID benefits from a wide range of segmentation, spatial processing, and statistical analysis tools as well as a large and growing number of SPM extensions. As such, this comprehensive toolbox covers the entire processing chain from raw DICOM data to group-level statistics, all within a single software package.
扩散磁共振成像(dMRI)已成为神经科学领域一项关键的成像技术,其临床应用日益增多。尽管大多数研究仍聚焦于大脑,但利用dMRI研究健康或受损脊髓的兴趣也在不断增加。过去十年还出现了生物物理模型的发展,这些模型将基于磁共振的扩散测量与潜在的微观组织特征联系起来,这就需要通过离体dMRI测量进行验证。基于13年的研发成果,我们推出了一个基于MATLAB的开源学术软件工具包,名为ACID:用于脑、脊髓和离体扩散磁共振成像数据处理与建模的综合工具箱。ACID是对统计参数映射(SPM)软件的扩展,旨在通过整合最先进的伪影校正工具、扩散和峰度张量成像以及能够估计白质微观结构特性的生物物理模型,来处理和模拟大脑、脊髓及离体标本的dMRI数据。此外,该软件还包括一系列用于精确扩散参数估计的线性和非线性拟合算法。通过遵循脑成像数据结构(BIDS)的数据组织原则,ACID便于进行标准化分析,确保与其他符合BIDS的软件兼容,并与使用BIDS格式的大型数据库日益增多的情况保持一致。此外,由于ACID集成到了广受欢迎的SPM框架中,它受益于广泛的分割、空间处理和统计分析工具以及大量且不断增加的SPM扩展。因此,这个综合工具箱涵盖了从原始DICOM数据到组水平统计的整个处理链,所有这些都在一个软件包中实现。