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首页> 外文期刊>Molecular Neurobiology >A Comparison of Neuroimaging Abnormalities in Multiple Sclerosis, Major Depression and Chronic Fatigue Syndrome (Myalgic Encephalomyelitis): is There a Common Cause?
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A Comparison of Neuroimaging Abnormalities in Multiple Sclerosis, Major Depression and Chronic Fatigue Syndrome (Myalgic Encephalomyelitis): is There a Common Cause?

机译:多发性硬化,重大抑郁和慢性疲劳综合征中神经影像异常的比较(肌脑脑髓炎):有常见的原因吗?

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摘要

There is copious evidence of abnormalities in resting-state functional network connectivity states, grey and white matter pathology and impaired cerebral perfusion in patients afforded a diagnosis of multiple sclerosis, major depression or chronic fatigue syndrome (CFS) (myalgic encephalomyelitis). Systemic inflammation may well be a major element explaining such findings. Inter-patient and inter-illness variations in neuroimaging findings may arise at least in part from regional genetic, epigenetic and environmental variations in the functions of microglia and astrocytes. Regional differences in neuronal resistance to oxidative and inflammatory insults and in the performance of antioxidant defences in the central nervous system may also play a role. Importantly, replicated experimental findings suggest that the use of high-resolution SPECT imaging may have the capacity to differentiate patients afforded a diagnosis of CFS from those with a diagnosis of depression. Further research involving this form of neuroimaging appears warranted in an attempt to overcome the problem of aetiologically heterogeneous cohorts which probably explain conflicting findings produced by investigative teams active in this field. However, the ionising radiation and relative lack of sensitivity involved probably preclude its use as a routine diagnostic tool.
机译:有大量的休息状态功能网络连接状态证据,灰白质的病理学和患者的脑灌注受损的证据,得到了多发性硬化症,重症抑郁或慢性疲劳综合征(CFS)的诊断。全身炎症可能是解释这种发现的主要元素。患有患者和疾病性变异的神经成像结果可能至少部分地出现小遗传,表观遗传和环境变异的微胶质细胞和星形胶质细胞的功能。神经元抗氧化和炎症性损伤以及中枢神经系统抗氧化防御性能的区域差异也可能起到作用。重要的是,复制的实验结果表明,使用高分辨率SPECT成像可能具有区分患者的能力,该患者提供了诊断抑郁症的患者的CFS。涉及这种形式的神经影像的进一步研究似乎有必要克服了可能解释了在该领域中活跃的调查团队产生的冲突结果的异质异质队列的问题。然而,电离辐射和相对缺乏敏感性可能妨碍其用作常规诊断工具。

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