在外周神经阻滞术(USgPNB)局部麻醉剂沉积之前,利用智能针头生物电阻抗提供针尖与靶神经关系的信息。

Q3 Biochemistry, Genetics and Molecular Biology
Journal of Electrical Bioimpedance Pub Date : 2023-12-31 eCollection Date: 2023-01-01 DOI:10.2478/joeb-2023-0007
Edel Whelton, Lisa Helen, Brian O'Donnell, Martin O'Sullivan, Justina Ugwah, Walter Messina, Yineng Wang, Niamh O'Mahoney, Eric Moore
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引用次数: 0

摘要

超声引导下的周围神经阻滞(USgPNB)是指在神经旁沉积局部麻醉剂的麻醉技术,可在无需全身麻醉的情况下进行疼痛手术。局部麻醉剂沉积前的针尖位置是决定阻滞成功率和安全性的关键因素。神经穿刺和神经内注射局麻药会造成永久性神经损伤。目前,超声引导的灵敏度不足以可靠地检测针头与神经的接近程度。智能针尖的生物阻抗数据反馈可为麻醉师提供有关局部麻醉剂沉积前针尖与靶神经之间关系的信息。利用集成了双电极阻抗传感器的智能针头开发了生物阻抗,以确定 USgPNB 期间针头与神经的接近程度。在获得所有必要的伦理和监管批准后,使用智能针生物阻抗系统从七只猪模型中获得了臂丛神经、迷走神经、股神经和坐骨神经的体内数据。通过对上述外周神经进行切除和组织学分析,并通过组织学方法观察神经的结构和构造,可以计算结缔组织与神经组织的比率,从而确定该变量对绝对阻抗的影响。比值结果提供了额外的临床数据,并解释了猪模型阻抗数据的同种性,以及结缔组织和神经内脂肪的阻抗高于神经组织的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart needle electrical bioimpedance to provide information on needle tip relationship to target nerve prior to local anesthetic deposition in peripheral nerve block (USgPNB) procedures.

Ultrasound guided peripheral nerve block (USgPNB) refers to anaesthetic techniques to deposit local anesthetic next to nerves, permitting painful surgery without necessitating general anesthesia. Needle tip position prior to local anesthetic deposition is a key determinant of block success and safety. Nerve puncture and intra-neural injection of local anesthetic can cause permanent nerve injury. Currently ultrasound guidance is not sufficiently sensitive to reliably detect needle to nerve proximity. Feedback with bioimpedance data from the smart needle tip might provide the anesthetist with information as to the relationship between the needle tip and the target nerve prior to local anesthetic deposition. Bioimpedance using a smart needle integrated with a two-electrode impedance sensor has been developed to determine needle to nerve proximity during USgPNB. Having obtained all necessary ethical and regulatory approvals, in vivo data on brachial plexus, vagus, femoral and sciatic nerves were obtained from seven pig models using the smart needle bioimpedance system. The excision and histological analysis of above peripheral nerves and observation of the architecture and structure of nerves by means of histology allow the calculation of the ratios of connective tissue to neural tissue to determine the influence of this variable on absolute impedance. The ratio results give extra clinical data and explain the hetrogeneity of impedance data in the pig models and the hypothesis that connective tissue with intra-neural fat has higher impedance than neural tissue.

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来源期刊
Journal of Electrical Bioimpedance
Journal of Electrical Bioimpedance Engineering-Biomedical Engineering
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
17 weeks
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