Misra Sarthak, Reed Kyle B, Douglas Andrew S, Ramesh K T, Okamura Allison M
Proc IEEE RAS EMBS Int Conf Biomed Robot Biomechatron. 2008 Oct 19:224-231. doi: 10.1109/BIOROB.2008.4762872.
The asymmetry of a bevel-tip needle results in the needle naturally bending when it is inserted into soft tissue. As a first step toward modeling the mechanics of deflection of the needle, we determine the forces at the bevel tip. In order to find the forces acting at the needle tip, we measure rupture toughness and nonlinear material elasticity parameters of several soft tissue simulant gels and chicken tissue. We incorporate these physical parameters into a finite element model that includes both contact and cohesive zone models to simulate tissue cleavage. We investigate the sensitivity of the tip forces to tissue rupture toughness, linear and nonlinear tissue elasticity, and needle tip bevel angle. The model shows that the tip forces are sensitive to the rupture toughness. The results from these studies contribute to a mechanics-based model of bevel-tip needle steering, extending previous work on kinematic models.
斜面尖端针的不对称性导致针在插入软组织时自然弯曲。作为模拟针偏转力学的第一步,我们确定斜面尖端处的力。为了找到作用在针尖的力,我们测量了几种软组织模拟凝胶和鸡肉组织的断裂韧性和非线性材料弹性参数。我们将这些物理参数纳入一个有限元模型,该模型包括接触模型和粘结区模型以模拟组织切割。我们研究了尖端力对组织断裂韧性、线性和非线性组织弹性以及针尖斜面角度的敏感性。该模型表明,尖端力对断裂韧性敏感。这些研究结果有助于建立一个基于力学的斜面尖端针转向模型,扩展了先前关于运动学模型的工作。