Thayer School of Engineering, Dartmouth College, Hanover, NH, USA.
Geisel School of Medicine, Dartmouth College, Hanover, NH, USA.
Commun Biol. 2023 Mar 30;6(1):341. doi: 10.1038/s42003-023-04701-9.
Hyperspectral imaging and spectral analysis quantifies fluorophore concentration during fluorescence-guided surgery. However, acquisition of the multiple wavelengths required to implement these methods can be time-consuming and hinder surgical workflow. To this end, a snapshot hyperspectral imaging system capable of acquiring 64 channels of spectral data simultaneously was developed for rapid hyperspectral imaging during neurosurgery. The system uses a birefringent spectral demultiplexer to split incoming light and redirect wavelengths to different sections of a large format microscope sensor. Its configuration achieves high optical throughput, accepts unpolarized input light and exceeds channel count of prior image-replicating imaging spectrometers by 4-fold. Tissue-simulating phantoms consisting of serial dilutions of the fluorescent agent characterize system linearity and sensitivity, and comparisons to performance of a liquid crystal tunable filter based hyperspectral imaging device are favorable. The new instrument showed comparable, if not improved, sensitivity at low fluorophore concentrations; yet, acquired wide-field images at more than 70-fold increase in frame rate. Image data acquired in the operating room during human brain tumor resection confirm these findings. The new device is an important advance in achieving real-time quantitative imaging of fluorophore concentration for guiding surgery.
高光谱成象和光谱分析定量测量荧光引导手术过程中的荧光团浓度。然而,为了实现这些方法,需要采集多个波长,这可能会耗费大量时间,并影响手术流程。为此,开发了一种能够同时采集 64 个光谱数据通道的快照高光谱成象系统,以便在神经外科手术中快速进行高光谱成象。该系统使用双折射光谱分束器将入射光分解,并将波长重新引导到大格式显微镜传感器的不同部分。其配置实现了高光通量,接受非偏振输入光,并且通道数比以前的图像复制成像光谱仪多 4 倍。由荧光剂的连续稀释组成的组织模拟体对系统的线性度和灵敏度进行了特征描述,并且与基于液晶可调谐滤波器的高光谱成象设备的性能比较结果是有利的。新仪器在低荧光团浓度下显示出可比甚至改善的灵敏度;然而,它以超过 70 倍的帧率获得了宽场图像。在人类脑瘤切除手术过程中在手术室中采集的图像数据证实了这些发现。该新设备是实现实时定量荧光团浓度成象以指导手术的重要进展。