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急性神经血管护理中机器人辅助经颅多普勒监测:一项可行性与安全性研究

Robotic Assisted Transcranial Doppler Monitoring in Acute Neurovascular Care: A Feasibility and Safety Study.

作者信息

Fattorello Salimbeni Alvise, Kulyk Caterina, Favruzzo Francesco, De Rosa Ludovica, Viaro Federica, Pieroni Alessio, Mozzetta Stefano, Vosko Milan R, Baracchini Claudio

机构信息

Stroke Unit and Neurosonology Laboratory, Department of Neuroscience, University of Padua School of Medicine, Via Giustiniani 2, Padua, Italy.

Stroke Unit and Neurosonology Laboratory, Department of Neurology, Kepler University Hospital GmbH, Johannes Kepler University, Linz, Austria.

出版信息

Neurocrit Care. 2025 Apr;42(2):457-464. doi: 10.1007/s12028-024-02121-z. Epub 2024 Sep 19.

Abstract

BACKGROUND

Transcranial color Doppler (TCD) is currently the only noninvasive bedside tool capable of providing real-time information on cerebral hemodynamics. However, being operator dependent, TCD monitoring is not feasible in many institutions. Robotic assisted TCD (ra-TCD) was recently developed to overcome these constraints. The aim of this study was to evaluate the safety and feasibility of cerebral monitoring with a novel ra-TCD in acute neurovascular care.

METHODS

This is a two-center prospective study conducted between August 2021 and February 2022 at Padua University Hospital (Padua, Italy) and Kepler University Hospital (Linz, Austria). Adult patients with conditions impacting cerebral hemodynamics or patients undergoing invasive procedures affecting cerebral hemodynamics were recruited for prolonged monitoring (> 30 min) of the middle cerebral artery with a novel ra-TCD (NovaGuide Intelligent Ultrasound, NeuraSignal, Los Angeles, CA). Manual TCD was also performed for comparison by an experienced operator. Feasibility and safety rates were recorded.

RESULTS

A total of 92 patients (age: mean 68.5 years, range 36-91; sex: male 57 [62%]) were enrolled in the two centers: 54 in Padua, 38 in Linz. The examination was feasible in the majority of patients (85.9%); the head cradle design and its radiopacity hindered its use during carotid endarterectomy and mechanical thrombectomy. Regarding safety, only one patient (1.1%) reported a minor local edema due to prolonged probe pressure. Velocity values were similar between ra-TCD and manual TCD.

CONCLUSIONS

This novel ra-TCD showed an excellent safety and feasibility and proved to be as reliable as manual TCD in detecting blood flow velocities. These findings support its wider use for cerebral hemodynamics monitoring in acute neurovascular care. However, further technical improvements are needed to expand the range of applicable settings.

摘要

背景

经颅彩色多普勒(TCD)是目前唯一能够提供脑血流动力学实时信息的无创床边工具。然而,由于依赖操作者,TCD监测在许多机构中并不可行。最近开发了机器人辅助TCD(ra-TCD)以克服这些限制。本研究的目的是评估一种新型ra-TCD在急性神经血管护理中进行脑监测的安全性和可行性。

方法

这是一项于2021年8月至2022年2月在意大利帕多瓦大学医院(帕多瓦)和奥地利林茨开普勒大学医院进行的两中心前瞻性研究。招募了患有影响脑血流动力学的疾病的成年患者或正在接受影响脑血流动力学的侵入性手术的患者,使用新型ra-TCD(NovaGuide智能超声,NeuraSignal,加利福尼亚州洛杉矶)对大脑中动脉进行延长监测(>30分钟)。还由一名经验丰富的操作者进行手动TCD以作比较。记录可行性和安全率。

结果

两个中心共纳入92例患者(年龄:平均68.5岁,范围36 - 91岁;性别:男性57例[62%]):帕多瓦54例,林茨38例。大多数患者(85.9%)的检查是可行的;头架设计及其不透射线性在颈动脉内膜切除术和机械取栓术期间妨碍了其使用。关于安全性,只有一名患者(1.1%)报告因探头长时间施压出现轻微局部水肿。ra-TCD和手动TCD之间的速度值相似。

结论

这种新型ra-TCD显示出极好的安全性和可行性,并且在检测血流速度方面被证明与手动TCD一样可靠。这些发现支持其在急性神经血管护理中更广泛地用于脑血流动力学监测。然而,需要进一步的技术改进以扩大适用范围。

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