扫描仪
计算机科学
计算机视觉
视野
人工智能
帧速率
利萨茹曲线
探测器
迭代重建
光学
显微镜
校准
失真(音乐)
物理
带宽(计算)
放大器
量子力学
计算机网络
作者
Cameron N. Coleal,William A Hudson,Jesse W. Wilson
摘要
Medical imaging devices are becoming increasingly compact, necessitating optimization research into different methods of actuation. Actuation influences important parameters of the imaging device such as size, weight, frame rate, field of view (FOV), and image reconstruction for imaging devices point scanning techniques. Current literature around piezoelectric fiber cantilever actuators focuses on device optimization with a fixed FOV but neglects adjustability. In this paper, we introduce an adjustable FOV piezoelectric fiber cantilever microscope and provide a characterization and optimization procedure. To overcome calibration challenges, we utilize a position sensitive detector (PSD) and address trade-offs between FOV and sparsity with a novel inpainting technique. Our work demonstrates the potential for scanner operation when sparsity and distortion dominate the FOV, extending the usable FOV for this form of actuation and others that currently only operate under ideal imaging conditions.
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