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心室容量负荷揭示交通性脑积水对动态脑自动调节的机械弹性影响。

Ventricular Volume Load Reveals the Mechanoelastic Impact of Communicating Hydrocephalus on Dynamic Cerebral Autoregulation.

作者信息

Haubrich Christina, Czosnyka Marek, Diehl Rolf, Smielewski Peter, Czosnyka Zofia

机构信息

Department of Academic Neurosurgery, Addenbrooke's Hospital, Cambridge, United Kingdom.

Department of Neurology, University Hospital Aachen, Aachen, Germany.

出版信息

PLoS One. 2016 Jul 14;11(7):e0158506. doi: 10.1371/journal.pone.0158506. eCollection 2016.

Abstract

Several studies have shown that the progression of communicating hydrocephalus is associated with diminished cerebral perfusion and microangiopathy. If communicating hydrocephalus similarly alters the cerebrospinal fluid circulation and cerebral blood flow, both may be related to intracranial mechanoelastic properties as, for instance, the volume pressure compliance. Twenty-three shunted patients with communicating hydrocephalus underwent intraventricular constant-flow infusion with Hartmann's solution. The monitoring included transcranial Doppler (TCD) flow velocities (FV) in the middle (MCA) and posterior cerebral arteries (PCA), intracranial pressure (ICP), and systemic arterial blood pressure (ABP). The analysis covered cerebral perfusion pressure (CPP), the index of pressure-volume compensatory reserve (RAP), and phase shift angles between Mayer waves (3 to 9 cpm) in ABP and MCA-FV or PCA-FV. Due to intraventricular infusion, the pressure-volume reserve was exhausted (RAP) 0.84+/-0.1 and ICP was increased from baseline 11.5+/-5.6 to plateau levels of 20.7+/-6.4 mmHg. The ratio dRAP/dICP distinguished patients with large 0.1+/-0.01, medium 0.05+/-0.02, and small 0.02+/-0.01 intracranial volume compliances. Both M wave phase shift angles (r = 0.64; p<0.01) and CPP (r = 0.36; p<0.05) displayed a gradual decline with decreasing dRAP/dICP gradients. This study showed that in communicating hydrocephalus, CPP and dynamic cerebral autoregulation in particular, depend on the volume-pressure compliance. The results suggested that the alteration of mechanoelastic characteristics contributes to a reduced cerebral perfusion and a loss of autonomy of cerebral blood flow regulation. Results warrant a prospective TCD follow-up to verify whether the alteration of dynamic cerebral autoregulation may indicate a progression of communicating hydrocephalus.

摘要

多项研究表明,交通性脑积水的进展与脑灌注减少和微血管病变有关。如果交通性脑积水同样改变脑脊液循环和脑血流,那么两者可能都与颅内机械弹性特性有关,例如容积压力顺应性。23例接受分流术的交通性脑积水患者接受了用哈特曼氏溶液进行的脑室内恒流灌注。监测包括大脑中动脉(MCA)和大脑后动脉(PCA)的经颅多普勒(TCD)流速(FV)、颅内压(ICP)和体动脉血压(ABP)。分析涵盖脑灌注压(CPP)、压力-容积代偿储备指数(RAP)以及ABP与MCA-FV或PCA-FV之间梅耶波(3至9次/分钟)的相移角。由于脑室内灌注,压力-容积储备耗竭(RAP)为0.84±0.1,ICP从基线的11.5±5.6升高至平台期的20.7±6.4 mmHg。dRAP/dICP比值区分出颅内容积顺应性大(0.1±0.01)、中(0.05±0.02)和小(0.02±0.01)的患者。随着dRAP/dICP梯度降低,M波相移角(r = 0.64;p<0.01)和CPP(r = 0.36;p<0.05)均呈逐渐下降。本研究表明,在交通性脑积水中,CPP尤其是动态脑自动调节取决于容积-压力顺应性。结果提示,机械弹性特征的改变导致脑灌注减少和脑血流调节自主性丧失。结果值得进行前瞻性TCD随访,以验证动态脑自动调节的改变是否可能预示交通性脑积水的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfad/4944997/ecf9abf649ac/pone.0158506.g001.jpg

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