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Electromechanical reshaping of costal cartilage grafts: A new surgical treatment modality.

机译:肋软骨移植物的机电重塑:一种新的外科治疗方法。

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摘要

OBJECTIVES/HYPOTHESIS: Needle electrode-based electromechanical reshaping (EMR) is a novel, ultra-low-cost nascent surgical technology to reshape cartilage with low morbidity. EMR uses direct current to induce mechanical relaxation in cartilage that is first deformed into a required geometry, which in turn leads to permanent shape change. The objective of this study was to determine the effect of EMR voltage and time on the shape change of costal cartilage grafts. STUDY DESIGN: EMR of ex vivo porcine costal cartilage. METHODS: Graft specimens obtained from the central core of porcine costal cartilage were bent at a 90-degree angle with a custom jig and then reshaped via EMR. The effects of voltage (3-7 V) and application time (1-5 minutes) on the amount of shape change were systematically examined. Bend angles were analyzed using analysis of variance and paired t tests to determine significant reshaping times at each voltage setting. RESULTS: There is a threshold for voltage and time above which the retention of bend angle is statistically significant in treated specimens compared to the control (P < .05). Above the threshold of 3 V, shape retention initially increased with application time for all voltages tested and was then observed to reach a plateau. Shape retention was noted to be greatest at 6 V without a rise in temperature. CONCLUSIONS: EMR provides a novel method to bend and shape costal cartilage grafts for use in facial plastic surgery. A low voltage can reshape cartilage grafts within several minutes and without the heat generation. This study demonstrates the feasibility of EMR and brings this minimally invasive procedure closer to clinical implementation.
机译:目的/假设:基于针电极的机电整形(EMR)是一种新颖的,超低成本的新生外科手术技术,可以重塑低发病率的软骨。 EMR使用直流电引起软骨的机械松弛,该机械松弛首先变形为所需的几何形状,进而导致永久的形状变化。这项研究的目的是确定EMR电压和时间对肋软骨移植物形状变化的影响。研究设计:离体猪肋软骨EMR。方法:从猪肋软骨中央核心获得的移植标本用定制夹具弯曲成90度角,然后通过EMR重塑。系统地检查了电压(3-7 V)和施加时间(1-5分钟)对形状变化量的影响。使用方差分析和成对的t检验分析弯曲角度,以确定每种电压设置下的重整时间。结果:有一个电压和时间阈值,超过该阈值,与对照组相比,处理过的样品的弯曲角保持率在统计学上显着(P <.05)。在高于3 V的阈值时,对于所有测试电压,形状保持率最初都随施加时间而增加,然后观察到达到平稳状态。在不升高温度的情况下,在6 V时形状保持力最大。结论:EMR提供了一种弯曲和整形用于面部整形外科的肋软骨移植物的新方法。低电压可以在几分钟内重塑软骨移植物,而不会产生热量。这项研究证明了EMR的可行性,并使这种微创手术更接近于临床实施。

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