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动静脉畸形神经外科切除术中的高分辨率微多普勒成像:病例说明

High-resolution micro-Doppler imaging during neurosurgical resection of an arteriovenous malformation: illustrative case.

作者信息

Soloukey Sadaf, Verhoef Luuk, Jan van Doormaal Pieter, Generowicz Bastian S, Dirven Clemens M F, De Zeeuw Chris I, Koekkoek Sebastiaan K E, Kruizinga Pieter, Vincent Arnaud J P E, Schouten Joost W

机构信息

Departments of1Neuroscience.

2Neurosurgery, and.

出版信息

J Neurosurg Case Lessons. 2022 Nov 7;4(19). doi: 10.3171/CASE22177.

Abstract

OBJECTIVE

Given the high-risk nature of arteriovenous malformation (AVM) resections, accurate pre- and intraoperative imaging of the vascular morphology is a crucial component that may contribute to successful surgical results. Surprisingly, current gold standard imaging techniques for surgical guidance of AVM resections are mostly preoperative, lacking the necessary flexibility to cater to intraoperative changes. Micro-Doppler imaging is a unique high-resolution technique relying on high frame rate ultrasound and subsequent Doppler processing of microvascular hemodynamics. In this paper the authors report the first application of intraoperative, coregistered magnetic resonance/computed tomograpy, micro-Doppler imaging during the neurosurgical resection of an AVM in the parietal lobe.

OBSERVATIONS

The authors applied intraoperative two-dimensional and three-dimensional (3D) micro-Doppler imaging during resection and were able to identify key anatomical features including draining veins, supplying arteries and microvasculature in the nidus itself. Compared to the corresponding preoperative 3D-digital subtraction angiography (DSA) image, the micro-Doppler images could delineate vascular structures and visualize hemodynamics with higher, submillimeter scale detail, even at significant depths (>5 cm). Additionally, micro-Doppler imaging revealed unique microvascular morphology of surrounding healthy vasculature.

LESSONS

The authors conclude that micro-Doppler imaging in its current form has clear potential as an intraoperative counterpart to preoperative contrast-dependent DSA, and the microvascular details it provides could build new ground to further study cerebrovascular pathophysiology.

摘要

目的

鉴于动静脉畸形(AVM)切除术的高风险性质,对血管形态进行准确的术前和术中成像,是可能有助于手术成功的关键因素。令人惊讶的是,目前用于AVM切除术手术指导的金标准成像技术大多是术前的,缺乏适应术中变化的必要灵活性。微多普勒成像(Micro-Doppler imaging)是一种独特的高分辨率技术,它依赖于高帧率超声以及随后对微血管血流动力学的多普勒处理。在本文中,作者报告了术中联合磁共振成像/计算机断层扫描微多普勒成像在顶叶AVM神经外科切除术中的首次应用。

观察结果

作者在切除过程中应用了术中二维和三维(3D)微多普勒成像,能够识别关键的解剖特征,包括引流静脉、供血动脉以及畸形团本身的微血管。与相应的术前三维数字减影血管造影(DSA)图像相比,微多普勒图像能够以更高的亚毫米级细节描绘血管结构并可视化血流动力学,即使在较深部位(>5cm)也是如此。此外,微多普勒成像还揭示了周围健康血管独特的微血管形态。

经验教训

作者得出结论,当前形式的微多普勒成像作为术前依赖造影剂的DSA的术中对应技术具有明显潜力,其提供的微血管细节可为进一步研究脑血管病理生理学奠定新基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ebb/9644416/958ebf110ff3/CASE22177f1.jpg

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