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Novel clinical device tracking and tissue event characterization using proximally placed audio signal acquisition and processing

机译:使用近端放置音频信号采集和处理的新型临床装置跟踪和组织事件表征

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We propose a new and complementary approach to image guidance for monitoring medical interventional devices (MID) with human tissue interaction and surgery augmentation by acquiring acoustic emission data from the proximal end of the MID outside the patient to extract dynamical characteristics of the interaction between the distal tip and the tissue touched or penetrated by the MID. We conducted phantom based experiments (n?=?955) to show dynamic tool/tissue interaction during tissue needle passage (a) and vessel perforation caused by guide wire artery perforation (b). We use time-varying auto-regressive (TV-AR) modelling to characterize the dynamic changes and time-varying maximal energy pole (TV-MEP) to compute subsequent analysis of MID/tissue interaction characterization patterns. Qualitative and quantitative analysis showed that the TV-AR spectrum and the TV-MEP indicated the time instants of the needle path through different phantom objects (a) and clearly showed a perforation versus other generated artefacts (b). We demonstrated that audio signals acquired from the proximal part of an MID could provide valuable additional information to surgeons during minimally invasive procedures.
机译:我们提出了一种新的和互补的方法来监测医疗介入装置(中期)通过从患者外部的中部近端获取声发射数据来提出人体组织相互作用和手术增强,以提取远端之间相互作用的动态特性尖端和中间的组织触动或渗透。我们进行了基于幻像的实验(n?=α955),以显示在组织针通道(a)和由导丝动脉穿孔(b)引起的血管穿孔期间的动态工具/组织相互作用。我们使用时变自自动回归(TV-AR)建模来表征动态变化和时变的最大能量极(TV-MEP),以计算中/组织交互表征模式的后续分析。定性和定量分析表明,TV-AR光谱和TV-MEP指示通过不同的虚线物体(a)的针路径的时间瞬间,并且清楚地显示了穿孔与其他产生的伪影(b)。我们证明,在微创手术期间,从MID的近端部分获取的音频信号可以为外科医生提供有价值的附加信息。

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