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Real-time three-dimensional optical coherence tomography image-guided core-needle biopsy system

机译:实时三维光学相干断层扫描图像引导的芯针活检系统

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摘要

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.
机译:光学相干断层扫描(OCT)等光学成像模式的进步,使我们能够以高分辨率和实时方式观察组织的微观结构。当前,芯针活检是由诸如乳腺和肺部肿块的超声成像和X射线计算机断层扫描(CT)等外部成像方式指导的。这些图像引导的过程通常在使用超声成像时受到空间分辨率的限制,或者在使用X射线CT时受到时间分辨率(快速实时反馈功能)的限制。一种可行的方法是在小规格针头内进行OCT,以光学方式成像组织的微观结构。然而,迄今为止,还没有开发出能够在同一针内结合三维OCT成像和组织活检以进行真正的OCT引导的芯针活检的系统或芯针装置。我们已经开发并演示了集成的芯针活检系统,该系统利用基于导管的3-D OCT对目标组织定位进行实时图像引导,在进行物理活检之前立即对组织进行成像,并对活检样本进行随后的OCT成像用于即时评估。在芯针放置过程中获取的活检活体外肿瘤标本的OCT图像与相应的组织学相关联,并且3-D OCT体积内任意平面的计算可视化可实现对标本组织类型和活检质量的反馈。这些结果证明了在活检过程中通过在针头和组织内成像对实时3-D OCT进行针头活检指导的潜力。

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