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Needle tip tracking for ultrasound-guided peripheral nerve block procedures-An observer blinded, randomised, controlled, crossover study on a phantom model

机译:针尖跟踪用于超声引导的周围神经块程序 - 幻影,随机,受控,跨幻模型的交叉研究

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Background The Onvision needle tip tracking (NTT) is a new technology consisting of a needle with an ultrasound sensor close to the needle tip and a console for computerised signal processing. The aim of the study was to evaluate NTT technology during ultrasound-guided simulated peripheral nerve block procedures in a porcine phantom model. Methods Forty anaesthesiologists performed in-plane and out-of-plane simulated nerve blocks with and without NTT guidance. The primary outcome measure was procedure time. Secondary outcomes were hand movements and the path length travelled by the hands measured by motion analysis, precision of the needle tip related to the target structure, success rates and violations of the target structure, and the participants confidence whether their procedure would be successful or not. Results Procedure time was reduced from 66.7 (SD = 47.5) seconds to 43.8 (SD = 29.2) seconds when NTT was used for out-of-plane procedures (P = 0.002). The number of hand movements of the probe hand was 13.9 (SD = 30.2) with NTT and 22.8 (SD = 30.0) without NTT (P = 0.019). No significant differences were registered during the performance of in-plane procedures. The participants confidence in a presumed block success was increased with both in-plane procedures (8.50 (SD = 1.18) with NTT vs 7.65 (SD = 1.96), P = 0.004) and out-of-plane procedures (8.50 (SD = 1.09) vs 7.10 (SD = 1.89), P = 0.0001). Conclusions The new NTT technology significantly reduced the procedure time and the number of hand movements for ultrasound-guided out-of-plane PNB procedures. No significant differences were found for the in-plane procedures.
机译:背景技术Onvision针尖跟踪(NTT)是一种新技术,该技术由具有超声传感器的针组成,靠近针尖和用于计算机化信号处理的控制台。该研究的目的是评估在猪幻像模型中超声引导的模拟外周神经块过程中的NTT技术。方法采用四十个麻醉药学,在平面内和平面外模拟神经块,具有和没有NTT引导。主要结果措施是程序时间。二次结果是手动运动和通过运动分析测量的手动的路径长度,针尖与目标结构的精度有关,成功率和违反目标结构的违规,以及参与者的局限性是否会成功。结果,当NTT用于外平面程序时,从66.7(SD = 47.5)秒减少到43.8(SD = 29.2)秒(P = 0.002)。探针手的手动次数为13.9(SD = 30.2),NTT和22.8(SD = 30.0),没有NTT(p = 0.019)。在平面内程序期间没有注册显着差异。参与者在面内程序(8.50(SD = 1.18)中的内部程序(SD = 1.96),P = 0.004)和平面外程序(8.50(SD = 1.09 )VS 7.10(SD = 1.89),P = 0.0001)。结论新的NTT技术显着降低了超声引导外平面PNB程序的程序时间和手动运动次数。没有针对面内程序发现显着差异。

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