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手持式投影成像设备,用于近红外荧光成像和前哨淋巴结切除术中的引导。

Handheld projective imaging device for near-infrared fluorescence imaging and intraoperative guidance of sentinel lymph node resection.

机构信息

University of Science and Technology of China, Department of Precision Machinery and Precision Instr, China.

Ohio State University, Department of Biomedical Engineering, Columbus, Ohio, United States.

出版信息

J Biomed Opt. 2019 Aug;24(8):1-4. doi: 10.1117/1.JBO.24.8.080503.

Abstract

We propose a handheld projective imaging device for orthotopic projection of near-infrared fluorescence images onto target biological tissue at visible wavelengths without any additional visual aid. The device integrates a laser diode light source module, a camera module, a projector, an ultrasonic distance sensor, a Raspberry Pi single-board computer, and a battery module in a rugged handheld unit. It is calibrated at the detected working distance for seamless coregistration between fluorescence emission and projective imaging at the target tissue site. The proposed device is able to achieve a projection resolution higher than 314  μm and a planar projection bias less than 1 mm at a projection field of view of 58  ×  108  mm2 and a working distance of 27 cm. Technical feasibility for projective imaging is verified in an ex vivo model of chicken breast tissue using indocyanine green as a fluorescence agent. Clinical utility for image-guided surgery is demonstrated in a clinical trial where sentinel lymph nodes in breast cancer patients are identified and resected under the guidance of projective imaging. Our ex vivo and in vivo experiments imply the clinical utility of deploying the proposed device for image-guided surgical interventions in resource-limited settings.

摘要

我们提出了一种手持式投影成像设备,可将近红外荧光图像在可见波长范围内直接投影到目标生物组织上,无需任何额外的视觉辅助工具。该设备将激光二极管光源模块、相机模块、投影仪、超声距离传感器、树莓派单板计算机和电池模块集成在一个坚固的手持式单元中。它在检测到的工作距离处进行校准,以实现荧光发射和目标组织部位投影成像之间的无缝配准。在所提出的设备中,在投影视场为 58×108mm2 和工作距离为 27cm 的情况下,投影分辨率高于 314μm,平面投影偏差小于 1mm。使用吲哚菁绿作为荧光剂,在鸡胸脯组织的离体模型中验证了投影成像的技术可行性。在乳腺癌患者的前哨淋巴结在投影成像引导下被识别和切除的临床试验中,证明了该设备在图像引导手术中的临床实用性。我们的离体和体内实验表明,在资源有限的情况下,部署所提出的设备用于图像引导手术干预具有临床实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0517/6983473/fc1f55f3cc50/JBO-024-080503-g001.jpg

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