MRI-T2 Relaxometry is Increased in Mild Traumatic Brain Injury: Indications of Acute Brain Abnormalities After Injury

IF 2.9 3区 医学 Q2 NEUROSCIENCES
Mayan J. Bedggood, Christi A. Essex, Alice Theadom, Helen Murray, Patria Hume, Samantha J. Holdsworth, Richard L. M. Faull, Mangor Pedersen
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Abstract

Mild traumatic brain injury (mTBI) is a common condition, particularly pervasive in contact sports environments. A range of symptoms can accompany this type of injury and negatively impact people's lives. As mTBI diagnosis and recovery largely rely on subjective reports, more objective injury markers are needed. The current study compared structural brain MRI-T2 relaxometry between a group of 40 male athletes with mTBI within 14 days of injury and 40 age-matched male controls. Voxel-averaged T2 relaxometry within the gray matter was increased for the mTBI group compared to controls (p < 0.001), with statistically significant increased T2 relaxometry particularly in superior cortical regions. Our findings indicate subtle brain abnormalities can be identified in acute mTBI using MRI-T2 relaxometry. These brain abnormalities may reflect inflammation present in the brain and could constitute an objective injury marker to supplement current subjective methods that dominate clinical decisions regarding diagnosis and prognosis. Future research should validate this potential marker with other data types, such as blood biomarkers or histological samples.

Abstract Image

MRI-T2弛豫测量在轻度创伤性脑损伤中增加:损伤后急性脑异常的指征
轻度创伤性脑损伤(mTBI)是一种常见的疾病,在身体接触的运动环境中尤为普遍。这种类型的伤害可能伴随一系列症状,并对人们的生活产生负面影响。由于mTBI的诊断和恢复在很大程度上依赖于主观报告,因此需要更多客观的损伤标志物。目前的研究比较了40名受伤14天内患有mTBI的男性运动员和40名年龄匹配的男性对照组之间的脑结构MRI-T2弛豫测量。与对照组相比,mTBI组灰质内体素平均T2弛豫测量值增加(p < 0.001), T2弛豫测量值增加具有统计学意义,特别是在上皮层区域。我们的研究结果表明,在急性mTBI中,使用MRI-T2弛豫测量可以识别细微的大脑异常。这些脑异常可能反映了大脑中存在的炎症,并可能构成客观的损伤标志物,以补充目前主导临床诊断和预后决策的主观方法。未来的研究应该用其他数据类型来验证这一潜在的标记物,如血液生物标记物或组织学样本。
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来源期刊
Journal of Neuroscience Research
Journal of Neuroscience Research 医学-神经科学
CiteScore
9.50
自引率
2.40%
发文量
145
审稿时长
1 months
期刊介绍: The Journal of Neuroscience Research (JNR) publishes novel research results that will advance our understanding of the development, function and pathophysiology of the nervous system, using molecular, cellular, systems, and translational approaches. JNR covers both basic research and clinical aspects of neurology, neuropathology, psychiatry or psychology. The journal focuses on uncovering the intricacies of brain structure and function. Research published in JNR covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of the nervous system, with emphasis on how disease modifies the function and organization.
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