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气管组织穿刺力学性能研究。

Investigation on puncture mechanical performance of tracheal tissue.

机构信息

Harbin University of Science and Technology, Harbin, China; Key Laboratory of Advanced Manufacturing and Intelligent Technology, Ministry of Education, Harbin, China.

Harbin University of Science and Technology, Harbin, China; Key Laboratory of Advanced Manufacturing and Intelligent Technology, Ministry of Education, Harbin, China.

出版信息

J Mech Behav Biomed Mater. 2022 Jan;125:104958. doi: 10.1016/j.jmbbm.2021.104958. Epub 2021 Nov 19.

Abstract

This paper investigated the mechanical behavior of the contact between the oblique tip puncture needle and the tracheal tissue during pathological examination for the diagnosis of respiratory diseases. By analyzing the force of the oblique tip puncture needle, this paper established a theoretical model of the contact mechanics between the needle and the tracheal tissue. With the material characteristics, needle diameter and puncture angle of trachea tissue as the loading conditions, the biomechanical simulation of piercing process was carried out by using the finite element simulation method, and realistic puncture experiments on isolated porcine tracheal tissue were performed by electronic universal testing machine. The results showed that the puncture needle was mainly subjected to the combined effect of cutting force, clamping force and frictional force on the needle shaft. When the needle diameter was 22G, penetrating the tracheal tissue vertically, the force on the needle was minimal. Meanwhile, it was found that the error between the experimental and theoretical values of the puncture force did not exceed 10%, thus verifying the feasibility of the hypothetical model of the puncture force in the tracheal tissue rupture stage. It provided a theoretical basis for the intervention of surgical instruments and reduced surgical risks.

摘要

本文研究了在呼吸系统疾病诊断的病理性检查中,斜尖端穿刺针与气管组织接触的力学行为。通过分析斜尖端穿刺针的受力情况,本文建立了针与气管组织接触力学的理论模型。以组织材料特性、针的直径和穿刺角度为加载条件,利用有限元模拟方法对穿刺过程进行生物力学仿真,并通过电子万能试验机对离体猪气管组织进行了实际穿刺实验。结果表明,穿刺针主要受到针轴上切削力、夹持力和摩擦力的共同作用。当针的直径为 22G 且垂直穿刺气管组织时,针上的力最小。同时,还发现穿刺力的实验值与理论值之间的误差不超过 10%,从而验证了气管组织破裂阶段穿刺力假设模型的可行性。这为手术器械的介入提供了理论依据,降低了手术风险。

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