Lotz Simon, Göb Madita, Böttger Sven, Ha-Wissel Linh, Hundt Jennifer, Ernst Floris, Huber Robert
Institute of Biomedical Optics, Universität zu Lübeck, Peter-Monnik-Weg 4, 23562 Lübeck, Germany.
Institute for Robotic and Cognitive Systems, Universität zu Lübeck, Ratzeburger Allee 160, 23562 Lübeck, Germany.
Biomed Opt Express. 2024 May 30;15(6):3993-4009. doi: 10.1364/BOE.525524. eCollection 2024 Jun 1.
We demonstrate large-area robotically assisted optical coherence tomography (LARA-OCT), utilizing a seven-degree-of-freedom robotic arm in conjunction with a 3.3 MHz swept-source OCT to raster scan samples of arbitrary shape. By combining multiple fields of view (FOV), LARA-OCT can probe a much larger area than conventional OCT. Also, nonplanar and curved surfaces like skin on arms and legs can be probed. The lenses in the LARA-OCT scanner with their normal FOV can have fewer aberrations and less complex optics compared to a single wide field design. This may be especially critical for high resolution scans. We directly use our fast MHz-OCT for tracking and stitching, making additional machine vision systems like cameras, positioning, tracking or navigation devices obsolete. This also eliminates the need for complex coordinate system registration between OCT and the machine vision system. We implemented a real time probe-to-surface control that maintains the probe alignment orthogonal to the sample by only using surface information from the OCT images. We present OCT data sets with volume sizes of 140 × 170 × 20 mm, captured in 2.5 minutes.
我们展示了大面积机器人辅助光学相干断层扫描技术(LARA - OCT),它利用七自由度机器人手臂结合3.3兆赫兹扫频源光学相干断层扫描技术对任意形状的样本进行光栅扫描。通过组合多个视场(FOV),LARA - OCT能够探测比传统光学相干断层扫描大得多的区域。此外,还能探测诸如手臂和腿部皮肤等非平面和曲面。与单一宽视场设计相比,LARA - OCT扫描仪中具有正常视场的透镜可能具有更少的像差和更简单的光学系统。这对于高分辨率扫描可能尤为关键。我们直接使用快速兆赫兹光学相干断层扫描技术进行跟踪和拼接,使相机、定位、跟踪或导航设备等额外的机器视觉系统不再必要。这也消除了光学相干断层扫描与机器视觉系统之间复杂的坐标系配准需求。我们实现了实时探头到表面控制,仅通过使用光学相干断层扫描图像中的表面信息来保持探头与样本正交对齐。我们展示了在2.5分钟内采集的体积大小为140×170×20毫米的光学相干断层扫描数据集。