Shmuylovich Leonid, O'Brien Christine M, Nwosu Karen, Achilefu Samuel
Biophotonics Research Center, Department of Radiology, Washington University in Saint Louis School of Medicine, Saint Louis, MO.
Division of Dermatology, Department of Medicine, Washington University in Saint Louis School of Medicine, Saint Louis, MO.
Res Sq. 2023 Jul 12:rs.3.rs-3084024. doi: 10.21203/rs.3.rs-3084024/v1.
Disparities in surgical outcomes often result from subjective than objective decisions dictated by surgical training, experience, and available resources. To improve outcomes, surgeons have adopted advancements in robotics, endoscopy, and intra-operative imaging including fluorescence-guided surgery (FGS), which highlight tumors in real-time without using ionizing radiation. However, like many medical innovations, technical, economic, and logistic challenges have hindered widespread adoption of FGS beyond high-resource centers. To overcome these impediments, we developed the fully-wearable and battery-powered fluorescence imaging augmented reality Raspberry Pi-based goggle system (FAR-Pi). Novel device design ensures distance-independent coalignment between real and augmented FAR-Pi views and offers higher spatial resolution, depth of focus, and fluorescence detection sensitivity than existing bulkier, pricier, and wall-powered technologies. When paired with pan-tumor targeting fluorescent agents such as LS301, FAR-Pi objectively identifies tumors in vivo. As an open-source, affordable, and adaptable system, FAR-Pi is poised to democratize access to FGS and improve health outcomes worldwide.
手术结果的差异往往源于手术培训、经验和可用资源所决定的主观因素而非客观因素。为了改善手术结果,外科医生采用了机器人技术、内窥镜技术以及术中成像技术的进步,包括荧光引导手术(FGS),该技术无需使用电离辐射就能实时突出显示肿瘤。然而,与许多医学创新一样,技术、经济和后勤方面的挑战阻碍了FGS在高资源中心以外的广泛应用。为了克服这些障碍,我们开发了基于树莓派的完全可穿戴且由电池供电的荧光成像增强现实护目镜系统(FAR-Pi)。新颖的设备设计确保了真实视图与增强后的FAR-Pi视图之间与距离无关的校准,并且与现有的更笨重、更昂贵且需外接电源的技术相比,具有更高的空间分辨率、焦深和荧光检测灵敏度。当与泛肿瘤靶向荧光剂(如LS301)配合使用时,FAR-Pi能够在体内客观地识别肿瘤。作为一个开源、经济实惠且适应性强的系统,FAR-Pi有望使FGS的获取更加普及,并改善全球的健康状况。