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A forward-imaging needle-type OCT probe for image guided stereotactic procedures

机译:前向成像针型OCT探头用于图像引导的立体定向手术

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摘要

A forward-imaging needle-type optical coherence tomography (OCT) probe with Doppler OCT (DOCT) capability has the potential to solve critical challenges in interventional procedures. A case in point is stereotactic neurosurgery where probes are advanced into the brain based on predetermined coordinates. Laceration of blood vessels in front of the advancing probe is an unavoidable complication with current methods. Moreover, cerebrospinal fluid (CSF) leakage during surgery can shift the brain rendering the predetermined coordinates unreliable. In order to address these challenges, we developed a forward-imaging OCT probe (740 μm O.D.) using a gradient-index (GRIN) rod lens that can provide real-time imaging feedback for avoiding at-risk vessels (8 frames/s with 1024 A-scans per frame for OCT/DOCT dual imaging) and guiding the instrument to specific targets with 12 μm axial resolution (100 frames/s with 160 A-scans per frame for OCT imaging only). The high signal-to-background characteristic of DOCT provides exceptional sensitivity in detecting and quantifying the blood flow within the sheep brain parenchyma in real time. The OCT/DOCT dual imaging also demonstrated its capability to differentiate the vessel type (artery/vein) on rat’s femoral vessels. We also demonstrated in ex vivo human brain that the location of the tip of the OCT probe can be inferred from micro-anatomical landmarks in OCT images. These findings demonstrate the suitability of OCT guidance during stereotactic procedures in the brain and its potential for reducing the risk of cerebral hemorrhage.
机译:具有多普勒OCT(DOCT)功能的前向成像针型光学相干断层扫描(OCT)探头具有解决介入程序中关键挑战的潜力。一个典型的例子是立体定向神经外科手术,其中基于预定坐标将探针推进大脑。前进探针前面的血管裂开是当前方法不可避免的并发症。此外,手术期间的脑脊液(CSF)泄漏会使大脑移动,从而使预定坐标不可靠。为了解决这些挑战,我们开发了一种使用梯度折射率(GRIN)棒状透镜的前向成像OCT探头(OD 740μmOD),该透镜可提供实时成像反馈,从而避免了有风险的血管(8帧/秒,对于OCT / DOCT双重成像,每帧1024次A扫描),并将仪器引导至轴向分辨率为12μm的特定目标(100帧/秒,对于OCT成像,每帧160次A扫描)。 DOCT的高信噪比特性可在实时检测和定量羊脑实质内的血流方面提供出色的灵敏度。 OCT / DOCT双重成像还证明了它有能力区分大鼠股血管上的血管类型(动脉/静脉)。我们还证明了在离体人脑中,OCT探针尖端的位置可以从OCT图像中的微观解剖界标中推断出来。这些发现证明了OCT指导在脑部立体定向手术过程中的适用性及其降低脑出血风险的潜力。

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