首页> 美国卫生研究院文献>Neurologia medico-chirurgica >Simple Identification of Cerebrospinal Fluid Turbulent Motion Using a Dynamic Improved Motion-sensitized Driven-equilibrium Steady-state Free Precession Method Applied to Various Types of Cerebrospinal Fluid Motion Disturbance
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Simple Identification of Cerebrospinal Fluid Turbulent Motion Using a Dynamic Improved Motion-sensitized Driven-equilibrium Steady-state Free Precession Method Applied to Various Types of Cerebrospinal Fluid Motion Disturbance

机译:使用动态改进的运动敏感驱动平衡稳态无进动方法简单识别脑脊液湍流运动该方法适用于各种类型的脑脊液运动障碍

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摘要

The motion of cerebrospinal fluid (CSF) within the subarachnoid space and ventricles is greatly modulated when propagating synchronously with the cardiac pulse and respiratory cycle and path through the nerves, blood vessels, and arachnoid trabeculae. Water molecule movement that propagates between two spaces via a stoma, foramen, or duct presents increased acceleration when passing through a narrow area and can exhibit “turbulence.” Recently, neurosurgeons have started to perform fenestration procedures using neuroendoscopy to treat hydrocephalus and cystic lesions. As part of the postoperative evaluation, a noninvasive diagnostic technique to visualize the water molecules at the fenestrated site is necessary. Because turbulence is observed at this fenestrated site, an imaging technique appropriate for observing this turbulence is essential. We therefore investigated the usefulness of a dynamic improved motion-sensitized driven-equilibrium steady-state free precession (Dynamic iMSDE SSFP) sequence of magnetic resonance imaging that is superior for ascertaining turbulent motions in healthy volunteers and patients. Images of Dynamic iMSDE SSFP from volunteers revealed that CSF motion at the ventral surface of the brainstem and the third ventricle is augmented and turbulent. Moreover, our findings confirmed that this technique is useful for evaluating treatments that utilize neuroendoscopy. As a result, Dynamic iMSDE SSFP, a simple sequence for visualizing CSF motion, entails a short imaging time, can extensively visualize CSF motion, does not require additional processes such as labeling or trigger setting, and is anticipated to have wide-ranging clinical applications in the future.
机译:当与心搏脉冲和呼吸循环以及通过神经,血管和蛛网膜小梁的路径同步传播时,蛛网膜下腔和脑室内的脑脊髓液(CSF)的运动受到极大的调节。水分子运动通过气孔,孔或导管在两个空间之间传播,当穿过狭窄区域时,加速度会增加,并且可能表现出“湍流”。最近,神经外科医生已经开始使用神经内窥镜进行开窗手术,以治疗脑积水和囊性病变。作为术后评估的一部分,必须使用一种非侵入性的诊断技术来可视化开窗部位的水分子。由于在该开窗部位观察到湍流,因此必须采用适合于观察这种湍流的成像技术。因此,我们研究了磁共振成像动态改善的运动敏感型驱动平衡稳态自由进动(Dynamic iMSDE SSFP)序列的有用性,该序列对于确定健康志愿者和患者的湍流运动具有优越性。来自志愿者的动态iMSDE SSFP图像显示,脑干和第三脑室腹侧表面的CSF运动增强且湍流。此外,我们的发现证实,该技术可用于评估利用神经内窥镜检查的治疗。因此,动态iMSDE SSFP是用于可视化CSF运动的简单序列,需要很短的成像时间,可以广泛地可视化CSF运动,不需要其他过程,例如标记或触发设置,并且有望在广泛的临床应用中使用在将来。

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