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清醒与意识丧失:植物状态下的大脑和脑干相互作用。

Wakefulness and loss of awareness: brain and brainstem interaction in the vegetative state.

机构信息

Institut National de la Santé et de la Recherche Médicale, UMR 825, IFR 96, Toulouse, France.

出版信息

Neurology. 2010 Jan 26;74(4):313-20. doi: 10.1212/WNL.0b013e3181cbcd96.

Abstract

OBJECTIVE

The ascending reticular activating system (ARAS) modulates circadian wakefulness, which is preserved in a persistent vegetative state (PVS). Its metabolism is preserved. Impairment of metabolism in the polymodal associative cortices (i.e., precuneus) is characteristic of PVS where awareness is abolished. Because the interaction of these 2 structures allows conscious sensory perception, our hypothesis was that an impaired functional connectivity between them participates in the loss of conscious perception.

METHODS

(15)O-radiolabeled water PET measurement of regional cerebral blood flow (rCBF) was performed at rest and during a proprioceptive stimulation. Ten patients in PVS and 10 controls were compared in a cross-sectional study. The functional connectivity from the primary sensorimotor cortex (S1M1) and the ARAS in both groups was also investigated.

RESULTS

Compared with controls, patients showed significantly less rCBF in posterior medial cortices (precuneus) and higher rCBF in ARAS at rest. During stimulation, bilateral Brodmann area 40 was less activated and not functionally correlated to S1M1 in PVS as it was in controls. Precuneus showed a lesser degree of deactivation in patients. Finally, ARAS whose activity was functionally correlated to that of the precuneus in controls was not in PVS.

CONCLUSIONS

Global neuronal workspace theory predicts that damage to long-distance white matter tracts should impair access to conscious perception. During persistent vegetative state, we identified a hypermetabolism in the ascending reticular activating system (ARAS) and impaired functional connectivity between the ARAS and the precuneus. This result emphasizes the functional link between cortices and brainstem in the genesis of perceptual awareness and strengthens the hypothesis that consciousness is based on a widespread neural network.

摘要

目的

上行网状激活系统(ARAS)调节昼夜节律性觉醒,而这种觉醒在持续性植物状态(PVS)中得以保留。其代谢功能得以保留。多模态联合皮质(即楔前叶)代谢功能受损是 PVS 的特征,在 PVS 中意识被消除。由于这两个结构的相互作用允许有意识的感官感知,我们的假设是它们之间功能连接的损害参与了意识感知的丧失。

方法

(15)O 放射性标记水正电子发射断层扫描(PET)测量局部脑血流(rCBF),分别在静息状态和本体感受刺激时进行。对 10 名 PVS 患者和 10 名对照者进行了横断面研究。还研究了两组中初级感觉运动皮层(S1M1)和 ARAS 的功能连接。

结果

与对照组相比,患者在静息状态下后内侧皮质(楔前叶)的 rCBF 明显减少,ARAS 的 rCBF 明显升高。在刺激期间,双侧布罗德曼区 40 的激活程度较低,与对照组相比,PVS 中的 S1M1 无功能相关性。患者的楔前叶去激活程度较低。最后,在对照组中与楔前叶功能相关的 ARAS 在 PVS 中不存在。

结论

全局神经元工作空间理论预测,长距离白质束的损伤应该会损害意识感知的获取。在持续性植物状态下,我们发现上行网状激活系统(ARAS)的代谢亢进和 ARAS 与楔前叶之间的功能连接受损。这一结果强调了皮质和脑干之间在知觉意识产生中的功能联系,并加强了意识基于广泛神经网络的假说。

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