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手术中胰腺和肝脏主要血管的体内光声成像。

In vivo photoacoustic imaging of major blood vessels in the pancreas and liver during surgery.

机构信息

University of Delaware, Department of Biomedical Engineering, Newark, Delaware, United States.

Johns Hopkins University, Department of Electrical and Computer Engineering, Baltimore, Maryland, United States.

出版信息

J Biomed Opt. 2019 Aug;24(12):1-12. doi: 10.1117/1.JBO.24.12.121905.

Abstract

Abdominal surgeries carry considerable risk of gastrointestinal and intra-abdominal hemorrhage, which could possibly cause patient death. Photoacoustic imaging is one solution to overcome this challenge by providing visualization of major blood vessels during surgery. We investigate the feasibility of in vivo blood vessel visualization for photoacoustic-guided liver and pancreas surgeries. In vivo photoacoustic imaging of major blood vessels in these two abdominal organs was successfully achieved after a laparotomy was performed on two swine. Three-dimensional photoacoustic imaging with a robot-controlled ultrasound (US) probe and color Doppler imaging were used to confirm vessel locations. Blood vessels in the in vivo liver were visualized with energies of 20 to 40 mJ, resulting in 10 to 15 dB vessel contrast. Similarly, an energy of 36 mJ was sufficient to visualize vessels in the pancreas with up to 17.3 dB contrast. We observed that photoacoustic signals were more focused when the light source encountered a major vessel in the liver. This observation can be used to distinguish major blood vessels in the image plane from the more diffuse signals associated with smaller blood vessels in the surrounding tissue. A postsurgery histopathological analysis was performed on resected pancreatic and liver tissues to explore possible laser-related damage. Results are generally promising for photoacoustic-guided abdominal surgery when the US probe is fixed and the light source is used to interrogate the surgical workspace. These findings are additionally applicable to other procedures that may benefit from photoacoustic-guided interventional imaging of the liver and pancreas (e.g., biopsy and guidance of radiofrequency ablation lesions in the liver).

摘要

腹部手术存在较大的胃肠道和腹腔内出血风险,这可能导致患者死亡。光声成像是一种解决方案,可以通过在手术过程中提供主要血管的可视化来克服这一挑战。我们研究了在体血管可视化在光声引导肝和胰腺手术中的可行性。在对两头猪进行剖腹手术后,成功地在这两个腹部器官中实现了主要血管的在体光声成像。使用机器人控制的超声(US)探头和彩色多普勒成像进行三维光声成像,以确认血管位置。用 20 至 40 mJ 的能量可以可视化活体肝中的血管,产生 10 至 15 dB 的血管对比度。同样,用 36 mJ 的能量足以用高达 17.3 dB 的对比度可视化胰腺中的血管。我们观察到,当光源遇到肝脏中的主要血管时,光声信号更集中。这种观察结果可用于将图像平面中的主要血管与周围组织中较小血管相关的更弥散信号区分开来。对切除的胰腺和肝脏组织进行了手术后组织学分析,以探讨可能与激光相关的损伤。当 US 探头固定且光源用于检查手术工作空间时,这些发现对光声引导腹部手术具有普遍的应用前景。这些发现还适用于可能受益于光声引导肝和胰腺介入成像的其他程序(例如,肝活检和射频消融病变引导)。

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