首页> 外文期刊>Brain: A journal of neurology >Residual cerebral activity and behavioural fragments can remain in the persistently vegetative brain.
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Residual cerebral activity and behavioural fragments can remain in the persistently vegetative brain.

机译:残留的大脑活动和行为碎片可以保留在植物人的大脑中。

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This report identifies evidence of partially functional cerebral regions in catastrophically injured brains. To study five patients in a persistent vegetative state (PVS) with different behavioural features, we employed [(18)F]fluorodeoxyglucose-positron emission tomography (FDG-PET), MRI and magnetoencephalographic (MEG) responses to sensory stimulation. Each patient's brain expressed a unique metabolic pattern. In three of the five patients, co-registered PET/MRI correlate islands of relatively preserved brain metabolism with isolated fragments of behaviour. Two patients had suffered anoxic injuries and demonstrated marked decreases in overall cerebral metabolism to 30-40% of normal. Two other patients with non-anoxic, multifocal brain injuries demonstrated several isolated brain regions with relatively higher metabolic rates, that ranged up to 50-80% of normal. Nevertheless, their global metabolic rates remained <50% of normal. MEG recordings from three PVS patients provide clear evidence for the absence, abnormality or reduction of evoked responses. Despite major abnormalities, however, these data also provide evidence for localized residual activity at the cortical level. Each patient partially preserved restricted sensory representations, as evidenced by slow evoked magnetic fields and gamma band activity. In two patients, these activations correlate with isolated behavioural patterns and metabolic activity. Remaining active regions identified in the three PVS patients with behavioural fragments appear to consist of segregated corticothalamic networks that retain connectivity and partial functional integrity. A single patient who suffered severe injury to the tegmental mesencephalon and paramedian thalamus showed widely preserved cortical metabolism, and a global average metabolic rate of 65% of normal. The relatively high preservation of cortical metabolism in this patient defines the first functional correlate of clinical- pathological reports associating permanent unconsciousness with structuraldamage to these regions. The specific patterns of preserved metabolic activity identified in these patients do not appear to represent random survivals of a few neuronal islands; rather they reflect novel evidence of the modular nature of individual functional networks that underlie conscious brain function. The variations in cerebral metabolism in chronic PVS patients indicate that some cerebral regions can retain partial function in catastrophically injured brains.
机译:该报告指出了在灾难性受伤的大脑中部分功能性大脑区域的证据。为了研究五名处于具有不同行为特征的持续性植物状态(PVS)的患者,我们采用了[(18)F]氟脱氧葡萄糖-正电子发射断层扫描(FDG-PET),MRI和磁脑电图(MEG)对感觉刺激的反应。每个病人的大脑都表现出独特的代谢模式。在五名患者中的三名中,共同注册的PET / MRI将相对保留的脑代谢岛与孤立的行为片段相关联。两名患者缺氧性损伤,表现出整体脑代谢显着下降至正常水平的30-40%。另外两名非缺氧性多灶性脑损伤患者表现出几个孤立的大脑区域,其代谢率相对较高,范围高达正常值的50-80%。然而,它们的整体代谢率仍低于正常值的50%。来自三名PVS患者的MEG录音为缺乏,异常或诱发反应减少提供了明确的证据。尽管存在重大异常,但这些数据也为皮层水平的局部残留活性提供了证据。每位患者部分保留了受限的感觉表现,如缓慢诱发的磁场和伽马射线带活动所证明。在两名患者中,这些激活与孤立的行为模式和代谢活动相关。在三名PVS患者中发现的带有行为片段的剩余活动区域似乎由分离的皮质醇网络组成,这些网络保留了连通性和部分功能完整性。一名患有中脑膜中丘脑和丘脑中下丘脑严重损伤的患者表现出广泛保存的皮质代谢,全球平均代谢率为正常水平的65%。该患者中皮质代谢的相对较高的保存率定义了临床病理学报告的第一个功能相关性,这些相关性将永久性意识丧失与这些区域的结构性损伤相关联。在这些患者中鉴定出的保留的代谢活性的特定模式似乎并不代表少数神经元岛的随机存活。相反,它们反映了有意识的大脑功能基础的各个功能网络的模块化性质的新证据。慢性PVS患者脑代谢的变化表明,某些区域可能在灾难性受伤的大脑中保留部分功能。

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