Longitudinal multiparametric MRI of traumatic spinal cord injury in animal models

被引:5
|
作者
Chen, Li Min [1 ,2 ,4 ]
Wang, Feng [1 ,2 ]
Mishra, Arabinda [1 ,2 ]
Yang, Pai-Feng [1 ,2 ]
Sengupta, Anirban [1 ,2 ]
Reed, Jamie L. [1 ,2 ]
Gore, John C. [1 ,2 ,3 ]
机构
[1] Vanderbilt Univ, Inst Imaging Sci, Nashville, TN USA
[2] Vanderbilt Univ, Med Ctr, Dept Radiol & Radiol Sci, Nashville, TN USA
[3] Vanderbilt Univ, Dept Biomed Engn, Nashville, TN USA
[4] Vanderbilt Univ, Inst Imaging Sci, Med Ctr, Dept Radiol & Radiol Sci, Nashville, TN 37232 USA
基金
美国国家卫生研究院;
关键词
Cervical spinal cord; Nonhuman primate; Hand; Sensorimotor; Multi-parametric MRI; BOLD; DTI; QMT; CEST; EXCHANGE SATURATION-TRANSFER; MAGNETIZATION TRANSFER CONTRAST; STATE FUNCTIONAL CONNECTIVITY; CLINICAL-PRACTICE GUIDELINE; IN-VIVO MT; HUMAN BRAIN; NEURONAL-ACTIVITY; AXONAL INJURY; QUANTITATIVE INTERPRETATION; MULTIPLE-SCLEROSIS;
D O I
10.1016/j.mri.2023.06.007
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Multi-parametric MRI (mpMRI) technology enables non-invasive and quantitative assessments of the structural, molecular, and functional characteristics of various neurological diseases. Despite the recognized importance of studying spinal cord pathology, mpMRI applications in spinal cord research have been somewhat limited, partly due to technical challenges associated with spine imaging. However, advances in imaging techniques and improved image quality now allow longitudinal investigations of a comprehensive range of spinal cord pathological features by exploiting different endogenous MRI contrasts. This review summarizes the use of mpMRI techniques including blood oxygenation level-dependent (BOLD) functional MRI (fMRI), diffusion tensor imaging (DTI), quantitative magnetization transfer (qMT), and chemical exchange saturation transfer (CEST) MRI in monitoring different aspects of spinal cord pathology. These aspects include cyst formation and axonal disruption, demyelination and remyelination, changes in the excitability of spinal grey matter and the integrity of intrinsic functional circuits, and non-specific molecular changes associated with secondary injury and neuroinflammation. These approaches are illustrated with reference to a nonhuman primate (NHP) model of traumatic cervical spinal cord injuries (SCI). We highlight the benefits of using NHP SCI models to guide future studies of human spinal cord pathology, and demonstrate how mpMRI can capture distinctive features of spinal cord pathology that were previously inaccessible. Furthermore, the development of mechanism-based MRI biomarkers from mpMRI studies can provide clinically useful imaging indices for understanding the mechanisms by which injured spinal cords progress and repair. These biomarkers can assist in the diagnosis, prognosis, and evaluation of therapies for SCI patients, potentially leading to improved outcomes.
引用
收藏
页码:184 / 200
页数:17
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