Bhatti Hamza Sohail, Khan Shamim, Zahra Madeeha, Mustafa Sonia, Ashraf Sumara, Ahmad Iftikhar
Sahiwal Teaching Hospital, Sahiwal, Pakistan.
Department of Physics, Islamia College Peshawar, Khyber Pakhtunkhwa, Pakistan.
Photodiagnosis Photodyn Ther. 2022 Dec;40:103151. doi: 10.1016/j.pdpdt.2022.103151. Epub 2022 Oct 10.
Certain types of cardiac arrhythmias are best treated with radiofrequency (RF) ablation, in which an electrode is inserted into the targeted area of the myocardium and then RF electrical current is applied to heat and destroy surrounding tissue. The resulting ablation lesion usually consists of a coagulative necrotic core surrounded by a rim region of mixed viable and non-viable cells. The characterization of the RF ablated lesion is of potential clinical importance. Here we aim to elaborate optical coherence tomography (OCT) imaging for the characterization of RF-ablated myocardial tissue. In particular, the underlying principles of OCT and its polarization-sensitive counterpart (PS-OCT) are presented, followed by the knowledge needed to interpret their optical images. Studies focused on real-time monitoring of RF lesion formation in the myocardium using OCT systems are summarized. The design and development of various hybrid probes incorporating both OCT guidance and RF ablation catheters are also discussed. Finally, the challenges related to the transmission of OCT imaging systems to cardiac clinics for real-time monitoring of RF lesions are outlined.
某些类型的心律失常最好采用射频(RF)消融治疗,即在电极插入心肌的目标区域后,施加射频电流以加热并破坏周围组织。产生的消融病灶通常由凝固性坏死核心和周围混合有存活与非存活细胞的边缘区域组成。射频消融病灶的特征具有潜在的临床重要性。在此,我们旨在阐述用于表征射频消融心肌组织的光学相干断层扫描(OCT)成像。特别介绍了OCT及其偏振敏感对应物(PS - OCT)的基本原理,随后介绍了解读其光学图像所需的知识。总结了使用OCT系统对心肌中射频病灶形成进行实时监测的相关研究。还讨论了结合OCT引导和射频消融导管的各种混合探头的设计与开发。最后,概述了将OCT成像系统应用于心脏临床以实时监测射频病灶所面临的挑战。