Kowalski Bartlomiej, Akondi Vyas, Dubra Alfredo
Opt Express. 2022 Jan 3;30(1):112-124. doi: 10.1364/OE.446162.
Optical scanners are widely used in high-resolution scientific, medical, and industrial devices. The accuracy and precision of these instruments are often limited by angular speed fluctuations due to rotational inertia and by poor synchronization between scanning and light detection, respectively. Here we demonstrate that both problems can be mitigated by recording scanner orientation in synchrony with light detection, followed by data resampling. This approach is illustrated with synthetic and experimental data from a point-scanning microscope with a resonant scanner and a non-resonant scanner. Fitting of the resonant scanner orientation data to a cosine model was used to correct image warping and sampling jitter, as well as to precisely interleave image lines collected during the clockwise and counterclockwise resonant scanner portions of the rotation cycle. Vertical scanner orientation data interpolation was used to correct image distortion due to angular speed fluctuations following abrupt control signal changes.
光学扫描仪广泛应用于高分辨率的科学、医学和工业设备中。这些仪器的精度和准确性通常分别受到旋转惯性导致的角速度波动以及扫描与光检测之间同步性差的限制。在这里,我们证明通过与光检测同步记录扫描仪方向,然后进行数据重采样,可以减轻这两个问题。我们用来自带有共振扫描仪和非共振扫描仪的点扫描显微镜的合成数据和实验数据说明了这种方法。将共振扫描仪方向数据拟合到余弦模型用于校正图像扭曲和采样抖动,以及精确交错在旋转周期的顺时针和逆时针共振扫描仪部分收集的图像线。垂直扫描仪方向数据插值用于校正由于控制信号突然变化后的角速度波动引起的图像失真。