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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Characterization of the Electrosurgical Tissue Joining Process Using Dynamic Impedance and Energy Efficiency
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Characterization of the Electrosurgical Tissue Joining Process Using Dynamic Impedance and Energy Efficiency

机译:使用动态阻抗和能量效率的电外科组织连接过程的表征

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摘要

Electrosurgical tissue joining is an effective way to create hemostasis, especially in surgical procedures performed in the minimally invasive manner. The quality of tissue joints and potential thermal damages to the surroundings are the two main concerns when using electrosurgical tissue joining tools. A more robust method for quality control is still needed. The goal of this study is to characterize the joining process using dynamic impedance and energy efficiency. Three joining times (4, 6, and 8 s) and three compression levels (80%, 90%, and 95%) were used to join porcine arterial tissues while the process parameters including voltage, current, and impedance were monitored. Tensile tests were performed to evaluate the quality of tissue joints. A new index, the strength-energy coefficient (mmHg/J), which is defined as the tensile strength divided by the consumed energy, is introduced to evaluate the energy efficiency of the joining process. Strength-energy coefficient offers a new way to estimate the required joining time to achieve sufficient joining strength while minimizing the energy consumption to reduce thermal damages. The 95% compression level has the highest strength-energy coefficient for 4- and 6-s joining times. This indicates that the 95% compression level has higher energy efficiency and can form a good tissue joint with less energy and time in comparison with those required by a lower compression level. The progression of the tissue joining process was characterized by the real-time impedance measurement, which can be used as a tool for quality control.
机译:电外科组织连接是产生止血的有效方法,特别是以微创方式的微创方式进行的外科手术。组织接头的质量和周围环境的潜在热损坏是在使用电外科组织连接工具时的两个主要问题。仍然需要一种更强大的质量控制方法。本研究的目标是使用动态阻抗和能效刻来表征加入过程。使用三次接合时间(4,6和8 s)和三个压缩水平(80%,90%和95%)加入猪动脉组织,同时监测包括电压,电流和阻抗的工艺参数。进行拉伸试验以评估组织接头的质量。引入了一种新的指标,其被定义为由消耗能量除以消耗的能量的拉伸强度的强度 - 能量系数(MMHG / J)以评估连接过程的能量效率。强度 - 能量系数提供了一种新的方法来估计所需的接合时间,以实现足够的连接力,同时最小化能量消耗以减少热损坏。 95%的压缩水平具有最高的强度 - 能量系数,用于4次和6-S的加入时间。这表明95%的压缩水平具有更高的能量效率,并且可以形成良好的组织接头,与较低的压缩水平所需的那些,能量和时间较少。通过实时阻抗测量的特征在于组织连接过程的进展,可用作质量控制的工具。

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