IEEE Trans Biomed Eng. 2023 Aug;70(8):2279-2288. doi: 10.1109/TBME.2023.3240725. Epub 2023 Jul 18.
Thromboembolism in blood vessels can lead to stroke or heart attack and even sudden death unless brought under control. Sonothrombolysis enhanced by ultrasound contrast agents has shown promising outcome on effective treatment of thromboembolism. Intravascular sonothrombolysis was also reported recently with a potential for effective and safe treatment of deep thrombosis. Despite the promising treatment results, the treatment efficiency for clinical application may not be optimized due to the lack of imaging guidance and clot characterization during the thrombolysis procedure. In this paper, a miniaturized transducer was designed to have an 8-layer PZT-5A stacked with an aperture size of 1.4 × 1.4 mm and assembled in a customized two-lumen 10-Fr catheter for intravascular sonothrombolysis. The treatment process was monitored with internal-illumination photoacoustic tomography (II-PAT), a hybrid imaging modality that combines the rich contrast of optical absorption and the deep penetration of ultrasound detection. With intravascular light delivery using a thin optical fiber integrated with the intravascular catheter, II-PAT overcomes the penetration depth limited by strong optical attenuation of tissue. In-vitro PAT-guided sonothrombolysis experiments were carried out with synthetic blood clots embedded in tissue phantom. Clot position, shape, stiffness, and oxygenation level can be estimated by II-PAT at clinically relevant depth of ten centimeters. Our findings have demonstrated the feasibility of the proposed PAT-guided intravascular sonothrombolysis with real-time feedback during the treatment process.
血管中的血栓栓塞可导致中风或心脏病发作,甚至猝死,除非加以控制。超声对比剂增强的声溶栓已显示出对血栓栓塞有效治疗的良好效果。最近也有报道称,血管内声溶栓具有有效和安全治疗深静脉血栓的潜力。尽管治疗效果很有前景,但由于溶栓过程中缺乏成像引导和血栓特征化,临床应用的治疗效率可能无法得到优化。本文设计了一种小型化换能器,其由 8 层 PZT-5A 堆叠而成,孔径尺寸为 1.4×1.4mm,并组装在定制的双腔 10Fr 导管中,用于血管内声溶栓。使用与血管内导管集成的薄光纤进行血管内光输送,II-PAT 克服了组织强光学衰减限制的穿透深度。在含有组织体模的合成血凝块的体外 PAT 引导声溶栓实验中,可以在临床相关的十厘米深度估计血凝块的位置、形状、硬度和氧合水平。我们的研究结果表明,所提出的基于 PAT 的血管内声溶栓具有在治疗过程中实时反馈的可行性。