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用于前列腺消融微创成像的实时光学相干断层扫描

Real-time optical coherence tomography for minimally invasive imaging of prostate ablation.

作者信息

Boppart S A, Herrmann J M, Pitris C, Stamper D L, Brezinski M E, Fujimoto J G

机构信息

Research Laboratory of Electronics, Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Comput Aided Surg. 2001;6(2):94-103. doi: 10.1002/igs.1013.

Abstract

OBJECTIVE

Numerous ablation techniques have been developed to alleviate urethral obstruction and improve urodynamics in benign prostatic hyperplasia. Most techniques, however, rely on visual observation of surface changes for ablation end points. The feasibility of using real-time optical coherence tomography (OCT) for minimally invasive imaging to guide and monitor prostate resection is demonstrated with representative techniques of laser and radiofrequency ablation. Empiric comparisons of ablation dynamics are made, and the use of OCT as a high-resolution, subsurface modality for image guidance is evaluated.

MATERIALS AND METHODS

Optical coherence tomography is a high-resolution, high-speed near-infrared imaging technique analogous to ultrasound imaging, except that reflections of light are detected rather than sound. High-speed OCT is used to image the dynamic process of laser and radiofrequency ablation of in vitro human prostate tissue. OCT images of ablation sites are compared with corresponding histology.

RESULTS

Based on comparisons between OCT images and corresponding histology, OCT imaged transurethral prostate tissue morphology, including urethral sinuses and submucosal glands. Real-time OCT imaging provided rapid feedback and control of ablation dynamics. The compact and portable OCT technology is amenable to minimally invasive beam-delivery devices.

CONCLUSIONS

Optical coherence tomography offers a minimally invasive means of assessing transurethral prostate morphology. Real-time OCT has the potential to provide image guidance of prostate resection for many of the existing surgical treatments directed at alleviating urethral obstruction associated with benign prostatic hyperplasia.

摘要

目的

已开发出多种消融技术来缓解良性前列腺增生引起的尿道梗阻并改善尿动力学。然而,大多数技术依赖于对表面变化的视觉观察来确定消融终点。通过激光和射频消融的代表性技术,证明了使用实时光学相干断层扫描(OCT)进行微创成像以指导和监测前列腺切除术的可行性。对消融动力学进行了经验性比较,并评估了将OCT用作高分辨率、表面下成像方式进行图像引导的情况。

材料与方法

光学相干断层扫描是一种高分辨率、高速近红外成像技术,类似于超声成像,不同之处在于检测的是光的反射而非声音。使用高速OCT对体外人前列腺组织的激光和射频消融动态过程进行成像。将消融部位的OCT图像与相应的组织学图像进行比较。

结果

基于OCT图像与相应组织学的比较,OCT可对经尿道前列腺组织形态进行成像,包括尿道窦和黏膜下腺。实时OCT成像可提供消融动力学的快速反馈和控制。紧凑便携的OCT技术适用于微创光束传输设备。

结论

光学相干断层扫描提供了一种评估经尿道前列腺形态的微创方法。对于许多旨在缓解与良性前列腺增生相关的尿道梗阻的现有手术治疗,实时OCT有潜力为前列腺切除术提供图像引导。

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