Hazenberg Constantijn E V B, Wulms Suzan C A, Klaassen Jurre, van Herwaarden Joost A
Department of Vascular Surgery, University Medical Center Utrecht;
Technical Medicine, University of Twente.
J Vis Exp. 2023 Apr 21(194). doi: 10.3791/64956.
Vascular surgeons and interventional radiologists face chronic exposure to low-dose radiation during endovascular procedures, which may impact their health in the long term due to their stochastic effects. The presented case shows the feasibility and efficacy of combining Fiber Optic RealShape (FORS) technology and intravascular ultrasound (IVUS) to reduce operator exposure during the endovascular treatment of obstructive peripheral arterial disease (PAD). FORS technology enables real-time, three-dimensional visualization of the full shape of guidewires and catheters, embedded with optical fibers that use laser light instead of fluoroscopy. Hereby, radiation exposure is reduced, and spatial perception is improved while navigating during endovascular procedures. IVUS has the capacity to optimally define vessel dimensions. Combining FORS and IVUS in a patient with iliac in-stent restenosis, as shown in this case report, enables passage of the stenosis and pre- and post-percutaneous transluminal angioplasty (PTA) plaque assessment (diameter improvement and morphology), with a minimum dose of radiation and zero contrast agent. The aim of this article is to describe the method of combining FORS and IVUS stepwise, to show the potential of merging both techniques in view of reducing radiation exposure and improving navigation tasks and treatment success during the endovascular procedure for the treatment of PAD.
血管外科医生和介入放射科医生在血管内手术过程中面临低剂量辐射的长期暴露,由于其随机效应,这可能会对他们的健康产生长期影响。本文介绍的病例显示了结合光纤真实形状(FORS)技术和血管内超声(IVUS)以减少阻塞性外周动脉疾病(PAD)血管内治疗期间操作人员暴露的可行性和有效性。FORS技术能够对嵌入使用激光而非荧光透视的光纤的导丝和导管的完整形状进行实时三维可视化。由此,在血管内手术过程中导航时,可减少辐射暴露并改善空间感知。IVUS能够最佳地确定血管尺寸。如本病例报告所示,在一名患有髂动脉支架内再狭窄的患者中结合使用FORS和IVUS,能够以最小剂量的辐射和零造影剂通过狭窄部位,并在经皮腔内血管成形术(PTA)前后进行斑块评估(直径改善和形态)。本文的目的是逐步描述结合FORS和IVUS的方法,以展示将这两种技术合并在减少PAD血管内治疗过程中的辐射暴露、改善导航任务和治疗成功率方面的潜力。