arXiv:2506.03017cs.RO2025-06

通过气动旋转活检机构实现狭窄管道内多方向精准取样。

Adjusting Tissue Puncture Omnidirectionally In Situ with Pneumatic Rotatable Biopsy Mechanism and Hierarchical Airflow Management in Tortuous Luminal Pathways

  • 采用分级气流控制,实现无扭转的多角度活检。
  • 0.3兆帕压力下可实现360度均匀分布的6个取样方向。
  • 适合复杂腔道内微创、多向组织活检,如消化道或血管。

经内腔导管在体组织活检是一种低创、并发症少的疾病诊断方法。然而,由于摩擦引起的滞后效应和狭小空间限制,传统内窥镜导管难以通过远端弯曲或近端扭转调整取样方向。本文提出一种气动驱动的机器人导管,可在不扭转导管的前提下实现体内多方向精准取样。导管远端集成了气动弯曲执行器与气动旋转活检机构(PRBM)。通过分级气流控制,低气压下调节取样方向,高气压下展开活检针,实现快速原位多向取样。本文详细描述了该机器人导管的设计、建模与表征,包括活检针重复部署测试、穿刺力测量及模拟实验验证。原型机在0.3兆帕正压下可实现360度均匀分布的6个取样方向。该系统为狭窄腔道内微创多向活检提供了新策略。

原文摘要 · Abstract (English)

In situ tissue biopsy with an endoluminal catheter is an efficient approach for disease diagnosis, featuring low invasiveness and few complications. However, the endoluminal catheter struggles to adjust the biopsy direction by distal endoscope bending or proximal twisting for tissue sampling within the tortuous luminal organs, due to friction-induced hysteresis and narrow spaces. Here, we propose a pneumatically-driven robotic catheter enabling the adjustment of the sampling direction without twisting the catheter for an accurate in situ omnidirectional biopsy. The distal end of the robotic catheter consists of a pneumatic bending actuator for the catheter's deployment in torturous luminal organs and a pneumatic rotatable biopsy mechanism (PRBM). By hierarchical airflow control, the PRBM can adjust the biopsy direction under low airflow and deploy the biopsy needle with higher airflow, allowing for rapid omnidirectional sampling of tissue in situ. This paper describes the design, modeling, and characterization of the proposed robotic catheter, including repeated deployment assessments of the biopsy needle, puncture force measurement, and validation via phantom tests. The PRBM prototype has six sampling directions evenly distributed across 360 degrees when actuated by a positive pressure of 0.3 MPa. The pneumatically-driven robotic catheter provides a novel biopsy strategy, potentially facilitating in situ multidirectional biopsies in tortuous luminal organs with minimum invasiveness.

内窥镜活检气动机器人

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