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重复性轻度脑震荡会导致神经活动紊乱,且与脑震荡病史无关。

Repetitive subconcussion results in disrupted neural activity independent of concussion history.

作者信息

Solar Kevin Grant, Ventresca Matthew, Zamyadi Rouzbeh, Zhang Jing, Jetly Rakesh, Vartanian Oshin, Rhind Shawn G, Dunkley Benjamin T

机构信息

Neurosciences and Mental Health, Hospital for Sick Children Research Institute, Toronto, ON, Canada M5G 0A4.

Defence Research and Development Canada, Toronto Research Centre, Toronto, ON, Canada M3K 2C9.

出版信息

Brain Commun. 2024 Oct 8;6(5):fcae348. doi: 10.1093/braincomms/fcae348. eCollection 2024.

DOI:10.1093/braincomms/fcae348
PMID:39440300
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11495223/
Abstract

Concussion is a public health crisis that results in a complex cascade of neurochemical changes that can have life-changing consequences. Subconcussions are generally considered less serious, but we now realize repetitive subconcussions can lead to serious neurological deficits. Subconcussions are common in contact sports and the military where certain personnel are exposed to repetitive occupational blast overpressure. Post-mortem studies show subconcussion is a better predictor than concussion for chronic traumatic encephalopathy-a progressive and fatal neurodegenerative tauopathy, only diagnosable post-mortem-thus, an in vivo biomarker would be transformative. Magnetoencephalography captures the dynamics of neuronal electrochemical action, and functional MRI shows that functional connectivity is associated with tauopathy patterns. Therefore, both imaging modalities could provide surrogate markers of tauopathy. In this cross-sectional study, we examined the effects of repetitive subconcussion on neuronal activity and functional connectivity using magnetoencephalography and functional MRI, and on neurological symptoms and mental health in a military sample. For magnetoencephalography and outcome analyses, 81 participants were split into 'high' and 'low' blast exposure groups using the generalized blast exposure value: = 41 high blast (26.4-65.7 years; 4 females) and = 40 low blast (28.0-63.3 years; 8 females). For functional MRI, two high blast male participants without data were excluded: = 39 (29.6-65.7 years). Magnetoencephalography revealed disrupted neuronal activity in participants with a greater history of repetitive subconcussions, including neural slowing (higher delta activity) in right fronto-temporal lobes and subcortical regions (hippocampus, amygdala, caudate, pallidum and thalamus), and functional dysconnectivity in the posterior default mode network (lower connectivity at low and high gamma). These abnormalities were independent of concussion or traumatic stress history, and magnetoencephalography showed functional dysconnectivity not detected in functional MRI. Besides magnetoencephalography changes, those with higher blast exposure had poorer somatic and cognitive outcomes, with no blast-related differences in mental health or associations between neurological symptoms and neuronal activity. This study suggests that repetitive subconcussions have deleterious effects on brain function and that magnetoencephalography provides an avenue for both treatment targets by identifying affected brain regions and in prevention by identifying those at risk of cumulative subconcussive neurotrauma.

摘要

脑震荡是一场公共卫生危机,它会引发一系列复杂的神经化学变化,这些变化可能会产生改变人生的后果。次脑震荡通常被认为不太严重,但我们现在意识到,反复发生的次脑震荡会导致严重的神经功能缺损。次脑震荡在接触性运动和军队中很常见,在这些环境中,某些人员会暴露于重复性的职业爆炸超压之下。尸检研究表明,对于慢性创伤性脑病(一种进行性致命的神经退行性tau蛋白病,只能在死后诊断),次脑震荡比脑震荡是更好的预测指标。因此,一种体内生物标志物将具有变革性意义。脑磁图可捕捉神经元电化学活动的动态变化,功能磁共振成像显示功能连接性与tau蛋白病模式相关。因此,这两种成像方式都可以提供tau蛋白病的替代标志物。在这项横断面研究中,我们使用脑磁图和功能磁共振成像,研究了重复性次脑震荡对军事样本中神经元活动和功能连接性的影响,以及对神经症状和心理健康的影响。对于脑磁图和结果分析,81名参与者使用广义爆炸暴露值分为“高”和“低”爆炸暴露组:高爆炸组n = 41(26.4 - 65.7岁;4名女性),低爆炸组n = 40(28.0 - 63.3岁;8名女性)。对于功能磁共振成像,排除了两名没有数据的高爆炸男性参与者:n = 39(29.6 - 65.7岁)。脑磁图显示,有更多重复性次脑震荡病史的参与者存在神经元活动紊乱,包括右额颞叶和皮质下区域(海马体、杏仁核、尾状核、苍白球和丘脑)的神经减慢(更高的δ波活动),以及后默认模式网络中的功能失调(低γ波和高γ波时连接性降低)。这些异常与脑震荡或创伤应激史无关,并且脑磁图显示出功能磁共振成像未检测到的功能失调。除了脑磁图变化外,爆炸暴露较高的参与者的躯体和认知结果较差,在心理健康方面没有与爆炸相关的差异,神经症状与神经元活动之间也没有关联。这项研究表明,重复性次脑震荡对脑功能有有害影响,脑磁图通过识别受影响的脑区为治疗靶点提供了途径,并通过识别有累积性次脑震荡神经创伤风险的人来预防。

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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1299/11495223/ce7880131029/fcae348f1.jpg
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