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首页> 外文期刊>Scientific reports. >Choroidal fissure acts as an overflow device in cerebrospinal fluid drainage: morphological comparison between idiopathic and secondary normal-pressure hydrocephalus
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Choroidal fissure acts as an overflow device in cerebrospinal fluid drainage: morphological comparison between idiopathic and secondary normal-pressure hydrocephalus

机译:脉络膜裂缝作为脑脊液排水中的溢流装置:特发性和二次正常压力脑积水之间的形态学比较

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To clarify the pathogenesis of two different types of adult-onset normal-pressure hydrocephalus (NPH), we investigated cerebrospinal fluid distribution on the high-field three-dimensional MRI. The subarachnoid spaces in secondary NPH were smaller than those in the controls, whereas those in idiopathic NPH were of similar size to the controls. In idiopathic NPH, however, the basal cistern and Sylvian fissure were enlarged in concurrence with ventricular enlargement towards the z-direction, but the convexity subarachnoid space was severely diminished. In this article, we provide evidence that the key cause of the disproportionate cerebrospinal fluid distribution in idiopathic NPH is the compensatory direct CSF communication between the inferior horn of the lateral ventricles and the ambient cistern at the choroidal fissure. In contrast, all parts of the subarachnoid spaces were equally and severely decreased in secondary NPH. Blockage of CSF drainage from the subarachnoid spaces could cause the omnidirectional ventricular enlargement in secondary NPH.
机译:为了阐明两种不同类型的成人发病常压脑积水(NPH)的发病机制,我们研究了高场三维MRI上的脑脊液分布。次级NPH中的蛛网膜下腔空间小于对照中的蛛网膜下腔空间,而那些特性NPH的蛛网膜瘤空间与对照的尺寸相似。然而,在特性NPH中,基础粪便和Sylvian裂缝并发在Z方向上的腔室扩大,但凸状瘤空间严重减少。在本文中,我们提供了证实性NPH中不成比例的脑脊液分布的关键原因是横向心室的次喇叭和脉络裂裂缝之间的次角之间的补偿性直接CSF通信。相反,蛛网膜下腔空间的所有部分在次级NPH中同等地和严重降低。从蛛网膜下腔空间的CSF排水堵塞可能导致次级NPH中的全向心室扩大。

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