Kuo Wei-Cheng, Kim Jongsik, Shemonski Nathan D, Chaney Eric J, Spillman Darold R, Boppart Stephen A
Biomed Opt Express. 2012 Jun 1;3(6):1149-61. doi: 10.1364/BOE.3.001149. Epub 2012 Apr 30.
Advances in optical imaging modalities, such as optical coherence tomography (OCT), enable us to observe tissue microstructure at high resolution and in real time. Currently, core-needle biopsies are guided by external imaging modalities such as ultrasound imaging and x-ray computed tomography (CT) for breast and lung masses, respectively. These image-guided procedures are frequently limited by spatial resolution when using ultrasound imaging, or by temporal resolution (rapid real-time feedback capabilities) when using x-ray CT. One feasible approach is to perform OCT within small gauge needles to optically image tissue microstructure. However, to date, no system or core-needle device has been developed that incorporates both three-dimensional OCT imaging and tissue biopsy within the same needle for true OCT-guided core-needle biopsy. We have developed and demonstrate an integrated core-needle biopsy system that utilizes catheter-based 3-D OCT for real-time image-guidance for target tissue localization, imaging of tissue immediately prior to physical biopsy, and subsequent OCT imaging of the biopsied specimen for immediate assessment at the point-of-care. OCT images of biopsied ex vivo tumor specimens acquired during core-needle placement are correlated with corresponding histology, and computational visualization of arbitrary planes within the 3-D OCT volumes enables feedback on specimen tissue type and biopsy quality. These results demonstrate the potential for using real-time 3-D OCT for needle biopsy guidance by imaging within the needle and tissue during biopsy procedures.
光学成像技术的进步,如光学相干断层扫描(OCT),使我们能够高分辨率且实时地观察组织微观结构。目前,对于乳腺和肺部肿块,分别通过超声成像和X射线计算机断层扫描(CT)等外部成像技术来引导粗针活检。这些图像引导的操作在使用超声成像时常常受到空间分辨率的限制,而在使用X射线CT时则受到时间分辨率(快速实时反馈能力)的限制。一种可行的方法是在细针内进行OCT,以对组织微观结构进行光学成像。然而,迄今为止,尚未开发出一种能在同一根针内同时集成三维OCT成像和组织活检功能,以实现真正的OCT引导粗针活检的系统或粗针设备。我们已经开发并展示了一种集成的粗针活检系统,该系统利用基于导管的三维OCT进行实时图像引导,用于目标组织定位、物理活检前的组织成像,以及对活检标本进行后续的OCT成像,以便在床边即时评估。在粗针穿刺过程中获取的离体肿瘤活检标本的OCT图像与相应的组织学结果相关联,并且三维OCT体积内任意平面的计算可视化能够反馈标本组织类型和活检质量。这些结果证明了在活检过程中通过在针内和组织内成像,使用实时三维OCT进行针活检引导的潜力。