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EXPERIMENTAL STUDY ON THE ELECTROSURGICAL TISSUE JOINING PROCESS WITH PROCESS PARAMETER MONITORING FOR QUALITY CONTROL

机译:用于质量控制的过程参数监测的电组织接合过程的实验研究

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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 damage to the surroundings are the two main concerns when using electrosurgical tissue joining tools. A more robust method for quality control is still needed. In this study, we developed an experimental setup to join tissues and performed tensile tests to evaluate the quality of the tissue joint, while also monitoring the process parameters including voltage, current, impedance, temperature and thermal dose. Three joining times (4, 6, and 8 seconds) and three compression levels (80%, 90%, and 95%) were used to join porcine arterial tissues. It was found that 95% compression can form a strong joint with a shorter joining time and less energy, but the joint strength decreases when the joining time is extended to 8 seconds. A lower compression level can still form a quality joint but requires longer joining time and energy which could lead to more thermal damages. A new index, specific strength (mmHg/J), which is defined as the ratio between tensile strength and the consumed energy, is proposed. Specific strength offers a new way to estimate the required joining time to achieve sufficient joining strength while minimizing the energy consumption to reduce thermal damages.
机译:电外科组织接合是产生止血的有效方法,尤其是在以微创方式进行的外科手术中。使用电外科组织连接工具时,组织关节的质量和对周围环境的潜在热损伤是两个主要问题。仍然需要一种更强大的质量控制方法。在这项研究中,我们开发了一种用于连接组织的实验装置,并进行了拉伸测试以评估组织关节的质量,同时还监视包括电压,电流,阻抗,温度和热剂量在内的过程参数。使用三个连接时间(4、6和8秒)和三个压缩水平(80%,90%和95%)来连接猪动脉组织。已经发现95%的压缩可以以较短的接合时间和较少的能量形成牢固的接合,但是当接合时间延长至8秒时接合强度降低。较低的压缩水平仍然可以形成优质的接头,但是需要更长的接头时间和能量,这可能导致更多的热损伤。提出了一种新的指标,比强度(mmHg / J),其定义为抗拉强度与消耗的能量之比。比强度提供了一种新的方式来估算所需的连接时间,以实现足够的连接强度,同时将能耗最小化以减少热损伤。

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