Bevel-Tip Needle Deflection Modeling, Simulation, and Validation in Multi-Layer Tissues
Wang, Yanzhou, Al-Zogbi, Lidia, Liu, Guanyun, Liu, Jiawei, Tokuda, Junichi, Krieger, Axel, Iordachita, Iulian
–arXiv.org Artificial Intelligence
Percutaneous needle insertions are commonly performed for diagnostic and therapeutic purposes as an effective alternative to more invasive surgical procedures. However, the outcome of needle-based approaches relies heavily on the accuracy of needle placement, which remains a challenge even with robot assistance and medical imaging guidance due to needle deflection caused by contact with soft tissues. In this paper, we present a novel mechanics-based 2D bevel-tip needle model that can account for the effect of nonlinear strain-dependent behavior of biological soft tissues under compression. Real-time finite element simulation allows multiple control inputs along the length of the needle with full three-degree-of-freedom (DOF) planar needle motions. Cross-validation studies using custom-designed multi-layer tissue phantoms as well as heterogeneous chicken breast tissues result in less than 1mm in-plane errors for insertions reaching depths of up to 61 mm, demonstrating the validity and generalizability of the proposed method.
arXiv.org Artificial Intelligence
Nov-29-2023
- Country:
- North America > United States (0.47)
- Genre:
- Research Report
- Experimental Study (0.68)
- New Finding (1.00)
- Research Report
- Industry:
- Health & Medicine
- Diagnostic Medicine > Imaging (0.66)
- Health Care Technology (0.88)
- Therapeutic Area > Oncology (1.00)
- Health & Medicine
- Technology:
- Information Technology > Artificial Intelligence > Robots (1.00)