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高分辨率光学相干断层扫描引导下的手术组织激光消融

High-resolution optical coherence tomography-guided laser ablation of surgical tissue.

作者信息

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

机构信息

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

出版信息

J Surg Res. 1999 Apr;82(2):275-84. doi: 10.1006/jsre.1998.5555.

Abstract

BACKGROUND

Optical coherence tomography (OCT) is a compact high-speed imaging technology which uses infrared light to acquire cross-sectional images of tissue on the micrometer scale. Because OCT images are based on the optical backscattering properties of tissue, changes in tissue optical properties due to surgical laser ablation should be detectable using this technique. In this work, we examine the feasibility of using real-time OCT imaging to guide the placement and observe the dynamics of surgical laser ablation in a variety of tissue types.

MATERIALS AND METHODS

More than 65 sites on five ex vivo rat organ tissue types were imaged at eight frames per second before, during, and after laser ablation. Ablation was performed with a coincident continuous wave argon laser operating at 514-nm wavelength and varying exposure powers and durations. Following imaging, tissue registration was achieved using microinjections of dye followed by routine histologic processing to confirm the morphology of the ablation site.

RESULTS

High-speed OCT imaging at eight frames per second permitted rapid tissue orientation and guided ablation in numerous organ specimens. Acquisition rates were fast enough to capture dynamic changes in optical backscatter which corresponded to thermal tissue damage during laser ablation.

CONCLUSIONS

The ability of high-resolution high-speed OCT to guide laser ablation and image the dynamic changes suggests a role in image-guided surgical procedures, such as the ablation of neoplasms. Future in vivo studies are necessary to demonstrate performance intraoperatively.

摘要

背景

光学相干断层扫描(OCT)是一种紧凑的高速成像技术,它使用红外光获取微米级组织的横截面图像。由于OCT图像基于组织的光学背散射特性,因此手术激光消融引起的组织光学特性变化应该可以通过该技术检测到。在这项工作中,我们研究了使用实时OCT成像来指导手术激光消融的放置并观察其在各种组织类型中的动态变化的可行性。

材料与方法

在激光消融前、消融期间和消融后,以每秒八帧的速度对五种离体大鼠器官组织类型上的65多个部位进行成像。使用波长为514nm的连续波氩激光进行消融,改变曝光功率和持续时间。成像后,通过微注射染料进行组织配准,然后进行常规组织学处理以确认消融部位的形态。

结果

每秒八帧的高速OCT成像能够在众多器官标本中快速进行组织定位并指导消融。采集速率足够快,能够捕捉与激光消融期间热组织损伤相对应的光学背散射动态变化。

结论

高分辨率高速OCT指导激光消融并成像动态变化的能力表明其在图像引导手术过程(如肿瘤消融)中具有作用。未来需要进行体内研究以证明其术中性能。

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