Aktas Ayhan, Demircali Ali Anil, Secoli Riccardo, Temelkuran Burak, Rodriguez Y Baena Ferdinando
Mechatronics in Medicine Laboratory, Hamlyn Center, Imperial College London, London SW7 2AZ, UK.
Department of Metabolism, Digestion and Reproduction, Imperial College London, London SW7 2AZ, UK.
Biomedicines. 2023 Jul 17;11(7):2008. doi: 10.3390/biomedicines11072008.
In recent years, steerable needles have attracted significant interest in relation to minimally invasive surgery (MIS). Specifically, the flexible, programmable bevel-tip needle (PBN) concept was successfully demonstrated in vivo in an evaluation of the feasibility of convection-enhanced delivery (CED) for chemotherapeutics within the ovine model with a 2.5 mm PBN prototype. However, further size reductions are necessary for other diagnostic and therapeutic procedures and drug delivery operations involving deep-seated tissue structures. Since PBNs have a complex cross-section geometry, standard production methods, such as extrusion, fail, as the outer diameter is reduced further. This paper presents our first attempt to demonstrate a new manufacturing method for PBNs that employs thermal drawing technology. Experimental characterisation tests were performed for the 2.5 mm PBN and the new 1.3 mm thermally drawn (TD) PBN prototype described here. The results show that thermal drawing presents a significant advantage in miniaturising complex needle structures. However, the steering behaviour was affected due to the choice of material in this first attempt, a limitation which will be addressed in future work.
近年来,可操纵针在微创手术(MIS)方面引起了极大关注。具体而言,在使用2.5毫米PBN原型对绵羊模型体内化疗药物进行对流增强递送(CED)可行性评估中,成功展示了柔性、可编程斜面尖端针(PBN)的概念。然而,对于涉及深层组织结构的其他诊断和治疗程序以及药物递送操作,进一步减小尺寸是必要的。由于PBN具有复杂的横截面几何形状,随着外径进一步减小,诸如挤压等标准生产方法无法适用。本文首次尝试展示一种采用热拉伸技术制造PBN的新方法。对这里描述的2.5毫米PBN和新型1.3毫米热拉伸(TD)PBN原型进行了实验表征测试。结果表明,热拉伸在使复杂针结构小型化方面具有显著优势。然而,在首次尝试中,由于材料的选择,转向行为受到了影响,这一限制将在未来工作中解决。