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A non-invasive system for epidural space detection: comparison with Compuflo®

机译:用于硬膜外腔检测的非侵入性系统:与Compuflo®的比较

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Epidural blockade is a method often used in clinical practice to obtain pain relief during labor. Basically, the epidural puncture blocks the nerve impulses from the lower spinal segments with a consequent decrease of sensation in the lower half of the body. In this arena, the correct localization of the epidural space is crucial to perform the procedure. The loss of resistance (LOR) technique is the most popular approach to localize the epidural space. The LOR is caused by the fact that the ligamentum flavum is much harder than the epidural space, therefore when the needle tip pierces this ligamentum, there is an abrupt decrease of pressure (known as LOR). Although, there are several commercially available tools to support the clinicians in this task, the large part of epidural punctures is performed without any support. Our group of research has developed a novel and noninvasive tool to detect the LOR during epidural puncture. The aim of this study is to compare the output collected by the proposed system (i.e., the Epidural Space Management Tool, ESMT) with the output provided by a commercial system (i.e., CompuFlo®, Milestone Scientific, Inc.). Experiments were performed by an expert anesthesiologist (M.C.) on a simple simulator that allows mimicking the real scenario. Results showed a good agreement between the trends of the output of the two mentioned systems. Finally, the proposed system (ESMT), showed promising results in terms of LOR detection during all the five procedures performed on the simulator.
机译:硬膜外阻滞是一种通常在临床实践中用于缓解分娩时疼痛的方法。基本上,硬膜外穿刺会阻挡来自下脊柱节段的神经冲动,从而降低身体下半部分的感觉。在这个舞台上,硬膜外腔的正确定位对于执行手术至关重要。阻力损失(LOR)技术是定位硬膜外腔的最流行方法。 LOR是由黄韧带比硬膜外腔硬得多的事实引起的,因此,当针尖刺穿该韧带时,压力会突然下降(称为LOR)。尽管有几种商业上可用的工具来支持临床医生完成此任务,但硬膜外穿刺的很大一部分是在没有任何支持的情况下进行的。我们的研究小组开发了一种新颖的非侵入性工具来检测硬膜外穿刺期间的LOR。这项研究的目的是将提议的系统(即硬膜外空间管理工具,ESMT)收集的输出与商业系统(即,Milestone Scientific,Inc.)提供的输出进行比较。实验由专业麻醉师(M.C.)在一个简单的模拟器上进行,该模拟器可以模拟真实情况。结果表明,上述两个系统的输出趋势之间有很好的一致性。最后,在模拟器上执行的所有五个过程中,所提出的系统(ESMT)在LOR检测方面均显示出令人鼓舞的结果。

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