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Devices for accurate placement of epidural Tuohy needle for Anaesthesia administration

机译:精确放置硬膜外Tuohy针进行麻醉的装置

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摘要

The aim of this project is to design two sterile devices for epidural needle insertion which can measure in real time (i) the depth of needle tip during insertion and (ii) interspinous pressure changes through a pressure measurement device as the epidural needle is advanced through the tissue layers. The length measurement device uses a small wireless camera with video processing computer algorithms which can detect and measure the moving needle. The pressure measurement device uses entirely sterile components including a pressure transducer to accurately measure syringe saline in mmHg. The data from these two devices accurately describe a needle insertion allowing comparison or review of insertions. The data was then cross-referenced to pre-measured data from MRI or ultrasound scan to identify how ligament thickness correlates to our measured depth and pressure data. The developed devices have been tested on a porcine specimen during insertions performed by experienced anaesthetists. We have obtained epidural pressures for each ligament and demonstrated functionality of our devices to measure pressure and depth of epidural needle during insertion. This has not previously been possible to monitor in real-time. The benefits of these devices are (i) to provide an alternative method to identify correct needle placement during the procedure on real patients. (ii) The data describing the speed, depth and pressure during insertion can be used to configure an epidural simulator, simulating the needle insertion procedure. (iii) Our pressure and depth data can be compared to pre-measured MRI and ultrasound to identify previously unknown links between epidural pressure and depth with BMI, obesity and body shapes.
机译:该项目的目的是设计两个用于硬膜外针头插入的无菌设备,该设备可以实时测量(i)插入过程中针尖的深度,以及(ii)硬膜外针头通过时通过压力测量设备的棘突间压力变化组织层。长度测量设备使用带有视频处理计算机算法的小型无线摄像机,该算法可以检测和测量动针。压力测量设备使用完全无菌的组件,包括压力传感器,以mmHg精确地测量注射器盐水。来自这两个设备的数据准确地描述了针头插入,从而可以比较或查看插入。然后将数据与MRI或超声扫描中的预测数据进行交叉引用,以识别韧带厚度与我们测得的深度和压力数据之间的关系。经验丰富的麻醉师在插入过程中对已开发的设备在猪标本上进行了测试。我们已经获得了每个韧带的硬膜外压力,并演示了我们的设备在插入过程中测量硬膜外针的压力和深度的功能。以前不可能进行实时监视。这些设备的优点是:(i)提供了一种替代方法,可以在对实际患者的手术过程中识别正确的针头位置。 (ii)描述插入过程中的速度,深度和压力的数据可用于配置硬膜外模拟器,以模拟针头插入过程。 (iii)我们的压力和深度数据可与预先测量的MRI和超声进行比较,以识别硬膜外压力,肥胖与体型与硬膜外压力和深度之间的未知联系。

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