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Real-time swept source optical coherence tomography imaging of the human airway using a microelectromechanical system endoscope and digital signal processor

机译:使用微机电系统内窥镜和数字信号处理器对人体气道进行实时扫频源光学相干断层扫描成像

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摘要

A fast-scan-rate swept laser for optical coherence tomography (OCT) is suitable to record and analyze a 3-D image volume. However, the whole OCT system speed is limited by data streaming, processing, and storage. In this case, postprocessing is a common technique. Endoscopic clinical applications prefer onsite diagnosis, which requires a real-time technique. Parallel digital signal processors were applied to stream and process data directly from a data digitizer. A real-time system with 20-kHz axial line speed, which was limited only by our swept laser scan rate, was implemented. To couple with the system speed, an endoscope based on an improved 3-D microelectromechanical motor (diameter 1.5 mm, length 9.4 mm) was developed. In vivo 3-D imaging of the human airway was demonstrated.
机译:用于光学相干断层扫描(OCT)的快速扫描速率扫频激光器适用于记录和分析3D图像量。但是,整个OCT系统的速度受到数据流,处理和存储的限制。在这种情况下,后处理是一种常用技术。内窥镜临床应用更喜欢现场诊断,这需要实时技术。并行数字信号处理器被应用于直接从数据数字化仪流式传输和处理数据。实现了一个实时系统,该系统具有20 kHz轴向速度,仅受我们的扫频激光扫描速率限制。为了与系统速度相结合,开发了一种基于改进的3-D微机电马达(直径1.5毫米,长度9.4毫米)的内窥镜。证明了人体气道的体内3-D成像。

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