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Simulated microsurgery monitoring using intraoperative multimodal surgical microscopy

机译:模拟显微外科监测使用术中术中外科手术显微镜

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We have developed an intraoperative multimodal surgical microscopy system that provides simultaneous real-time enlarged surface views and subsurface anatomic information during surgeries by integrating spectral domain optical coherence tomography (SD-OCT), optical-resolution photoacoustic microscopy (OR-PAM), and conventional surgical microscopy. By sharing the same optical path, both OCT and PAM images were simultaneously acquired. Additionally, the custom-made needle-type transducer received the generated PA signals enabling convenient surgical operation without using a water bath. Using a simple augmented device, the OCT and PAM images were projected on the view plane of the surgical microscope. To quantify the performance of our system, we measured spatial resolutions of our system. Then, three microsurgery simulation and analysis were processed: (1) ex vivo needle tracking and monitoring injection of carbon particles in biological tissues, (2) in vivo needle tracking and monitoring injection of carbon particles in tumor-bearing mice, and (3) in vivo guiding of melanoma removal in melanoma-bearing mice. The results indicate that this triple modal system is useful for intraoperative purposes, and can potentially be a vital tool in microsurgeries.
机译:我们开发了一种通过集成光谱域光学相干断层扫描(SD-OCT),光学分辨率的光声学显微镜(或PAM),在手术中提供了一种术中的多模态手术显微镜系统,其在手术期间提供同时实时放大的表面视图和地下解剖信息,以及光学分辨率的光声学显微镜(或-PAM)和常规手术显微镜。通过共享相同的光路,同时获取OCT和PAM图像。另外,定制的针型换能器接收所产生的PA信号,无需使用水浴即可实现方便的手术操作。使用简单的增强设备,将OCT和PAM图像投影在手术显微镜的视图平面上。为了量化我们的系统性能,我们测量了我们系统的空间分辨率。然后,处理了三种显微外科仿真和分析:(1)在体内针头跟踪和监测生物组织中的碳颗粒,(2)在肿瘤轴承小鼠中注射碳颗粒,(3)黑色素瘤小鼠中的黑色素瘤移除体内的体内引导。结果表明,该三重模态系统可用于术中目的,并且可能是微疗程中的重要工具。

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