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Self-Lubricanting Slippery Surface with Wettability Gradients for Anti-Sticking of Electrosurgical Scalpel

机译:具有润湿性梯度的自润滑滑面用于电外科手术刀的防打结

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摘要

Soft tissue sticking on electrosurgical scalpels in minimally invasive surgery can increase the difficulty of operation and easily lead to medical malpractice. It is significant to develop new methods for anti-sticking of soft tissue on electrosurgical scalpels. Based on the characteristics of biomimetic ultra-slippery surface, a self-lubricating slippery surface with wettability gradients on electrosurgical scalpel was designed and fabricated. Non-uniformly distributed cylindrical micro pillars, which constitute the wettability gradients, were prepared by an electrolytic etching process and the theoretic of the spontaneous liquid spreading process was analyzed. The silicophilic property of wettability gradients surface was modified by octadecyltrichlorosilane (OTS) self-assembling coat with biocompatible liquid lubricant dimethyl silicone oil. The contact angle of gradient’s surface at different temperatures was measured. The transportation behaviors of both water and dimethyl silicone oil on the wettability gradient’s surface were investigated; the results illustrate that the wettability gradient’s slippery surface can successfully self-lubricate from regions with low pillar density to regions with high pillar density, ascribed to the unbalanced Young’s force. The anti-sticking capability of the electrosurgical scalpel with self-lubricating slippery surface was tested. Both the adhesion force and adhesion mass under different cycles were calculated. The results suggest that the as-prepared slippery surface has excellent anti-sticking ability associated with better durability.
机译:在微创手术中,软组织粘附在电外科手术刀上会增加手术难度,并容易导致医疗事故。开发在电外科手术刀上抗软组织粘附的新方法具有重要意义。根据仿生超滑表面的特点,设计并制造了电外科手术刀上具有润湿性梯度的自润滑滑面。通过电解刻蚀工艺制备了构成润湿梯度的不均匀分布的圆柱微柱,并分析了自发液体扩散过程的理论。通过具有生物相容性液体润滑剂二甲基硅油的十八烷基三氯硅烷(OTS)自组装涂层,改善了润湿性梯度表面的亲硅性。测量了不同温度下梯度表面的接触角。研究了水和二甲基硅油在润湿性梯度表面的传输行为。结果表明,由于不平衡的杨氏力,可湿性梯度的光滑表面可以成功地从低柱密度的区域自动润滑到高柱密度的区域。测试了具有自润滑光滑表面的电外科手术刀的抗粘能力。计算了不同循环下的粘附力和粘附质量。结果表明,所制备的光滑表面具有优异的抗粘能力和更好的耐久性。

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