A Cost-Effective, Adjustable, Dynamic Subcortical Stimulation Device - Technical Note.

Q3 Health Professions
Justin W Silverstein, Jacob D Greisman, Nicholas B Dadario, Jung Park, Randy S D'Amico
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引用次数: 1

Abstract

Brain mapping and neuromonitoring remain the gold standard for identifying and preserving functional neuroanatomic regions during safe, maximal brain tumor resection. Subcortical stimulation (SCS) can identify white matter tracts and approximate their distance from the leading edge of an advancing resection cavity. Dynamic (continuous) devices permitting simultaneous suction and stimulation have recently emerged as time-efficient alternatives to traditional static (discontinuous) techniques. However, the high cost, fixed cap size, and fixed tube diameter of commercially available suction devices preclude universal adoption. Our objective is to modify available suction devices into monopolar probes for subcortical stimulation mapping. We describe our technique using a novel, cost-effective, dynamic SCS technique as part of our established neuromonitoring protocol. We electrified and insulated a conventional variable suction device using an alligator clip and red rubber catheter, respectively. We adjusted the catheter's length to expose metal on both sides, effectively converting the suction device into a monopolar stimulation probe capable of cortical and subcortical monopolar stimulation that does not differ from commercially available discontinuous or continuous devices. We fashioned a dynamic SCS suction probe using inexpensive materials compatible with all suction styles and sizes. Qualitative and quantitative analysis in future prospective case series is needed to assess efficacy and utility.

一种具有成本效益的、可调节的、动态的皮层下刺激装置-技术说明。
在安全、最大的脑肿瘤切除过程中,脑制图和神经监测仍然是识别和保存功能神经解剖区域的金标准。皮层下刺激(SCS)可以识别白质束,并估计其与切除腔前缘的距离。动态(连续)设备允许同时抽吸和增产,最近作为传统静态(不连续)技术的高效替代方案出现。然而,高成本,固定帽尺寸和固定管直径的商业可用的吸装置妨碍普遍采用。我们的目标是将现有的吸引装置改造成单极探针,用于皮层下刺激制图。我们使用一种新颖的、具有成本效益的动态SCS技术来描述我们的技术,作为我们建立的神经监测协议的一部分。我们分别使用鳄鱼夹和红色橡胶导管对传统的可变吸入装置进行通电和绝缘。我们调整导管的长度以暴露两侧的金属,有效地将吸引装置转换为单极刺激探头,能够进行皮层和皮层下单极刺激,与市售的不连续或连续装置没有区别。我们使用廉价的材料制作了一种动态SCS吸力探头,可与所有吸力类型和大小兼容。需要在未来的前瞻性病例系列中进行定性和定量分析,以评估疗效和效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Neurodiagnostic Journal
The Neurodiagnostic Journal Health Professions-Medical Laboratory Technology
CiteScore
1.00
自引率
0.00%
发文量
26
期刊介绍: The Neurodiagnostic Journal is the official journal of ASET - The Neurodiagnostic Society. It serves as an educational resource for Neurodiagnostic professionals, a vehicle for introducing new techniques and innovative technologies in the field, patient safety and advocacy, and an avenue for sharing best practices within the Neurodiagnostic Technology profession. The journal features original articles about electroencephalography (EEG), evoked potentials (EP), intraoperative neuromonitoring (IONM), nerve conduction (NC), polysomnography (PSG), autonomic testing, and long-term monitoring (LTM) in the intensive care (ICU) and epilepsy monitoring units (EMU). Subject matter also includes education, training, lab management, legislative and licensure needs, guidelines for standards of care, and the impact of our profession in healthcare and society. The journal seeks to foster ideas, commentary, and news from technologists, physicians, clinicians, managers/leaders, and professional organizations, and to introduce trends and the latest developments in the field of neurodiagnostics. Media reviews, case studies, ASET Annual Conference proceedings, review articles, and quizzes for ASET-CEUs are also published in The Neurodiagnostic Journal.
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