Effect of Zolpidem in the Aftermath of Traumatic Brain Injury: An MEG Study.

IF 0.9 Q4 CLINICAL NEUROLOGY
Case Reports in Neurological Medicine Pub Date : 2020-03-20 eCollection Date: 2020-01-01 DOI:10.1155/2020/8597062
Praveen Sripad, Jessica Rosenberg, Frank Boers, Christian P Filss, Norbert Galldiks, Karl-Josef Langen, Ralf Clauss, N Jon Shah, Jürgen Dammers
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引用次数: 9

Abstract

In the past two decades, many studies have shown the paradoxical efficacy of zolpidem, a hypnotic used to induce sleep, in transiently alleviating various disorders of consciousness such as traumatic brain injury (TBI), dystonia, and Parkinson's disease. The mechanism of action of this effect of zolpidem is of great research interest. In this case study, we use magnetoencephalography (MEG) to investigate a fully conscious, ex-coma patient who suffered from neurological difficulties for a few years due to traumatic brain injury. For a few years after injury, the patient was under medication with zolpidem that drastically improved his symptoms. MEG recordings taken before and after zolpidem showed a reduction in power in the theta-alpha (4-12 Hz) and lower beta (15-20 Hz) frequency bands. An increase in power after zolpidem intake was found in the higher beta/lower gamma (20-43 Hz) frequency band. Source level functional connectivity measured using weighted-phase lag index showed changes after zolpidem intake. Stronger connectivity between left frontal and temporal brain regions was observed. We report that zolpidem induces a change in MEG resting power and functional connectivity in the patient. MEG is an informative and sensitive tool to detect changes in brain activity for TBI.

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唑吡坦在创伤性脑损伤后的作用:一项MEG研究。
在过去的二十年中,许多研究显示了唑吡坦这种用于诱导睡眠的催眠药物在短暂缓解各种意识障碍(如创伤性脑损伤(TBI)、肌张力障碍和帕金森病)方面的矛盾功效。唑吡坦的这种作用机制是目前研究的热点。在这个病例研究中,我们使用脑磁图(MEG)来研究一个完全清醒的,前昏迷患者,由于创伤性脑损伤而遭受神经系统困难几年。受伤后的几年里,病人一直在服用唑吡坦,这极大地改善了他的症状。唑吡坦前后的脑磁图记录显示,β - α (4-12 Hz)和β - α (15-20 Hz)频段的功率有所降低。服用唑吡坦后,在高β /低γ (20-43 Hz)频段发现功率增加。使用加权相位滞后指数测量的源级功能连通性显示服用唑吡坦后的变化。左额叶和颞叶脑区之间的连通性更强。我们报道唑吡坦诱导患者MEG静息功率和功能连通性的变化。脑磁图是一种信息丰富、灵敏的工具,可以检测脑外伤患者的脑活动变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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发文量
26
审稿时长
11 weeks
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