Suppr超能文献

构建近红外荧光成像系统用于生物组织成像。

Construction of a near infrared fluorescence system for imaging of biological tissues.

机构信息

Department of Urology, General Hospital of Northern Theater Command, Shenhe District, No. 83, Wenhua Rd, Shenyang, 110000, China.

Department of Graduate School, China Medical University, Shenyang, China.

出版信息

Sci Rep. 2024 Jan 18;14(1):1626. doi: 10.1038/s41598-024-51583-w.

Abstract

Surgical procedures often rely on unaided visual observation or endoscopic assistance, which may pose challenges in cases involving intricate anatomical relationships. Real-time imaging technologies capable of intraoperative visualization of target organs have the potential to enhance the precision of surgical procedures by facilitating accurate identification, separation, and protection of vital tissues or organs. Despite these advantages, the widespread adoption of such technologies has been hindered by factors such as the prohibitive cost of equipment. This study aims to optimize and develop a device based on Indocyanine Green (ICG) for fluorescence imaging. The objective is to monitor changes in the average fluorescence intensity of ICG in the bladder, offering valuable guidance for surgeries involving the bladder. 1. Male rabbits were administered 0.01 mg/ml ICG via the renal pelvis and ear vein to obtain fluorescence images of the ureter, bladder, and small intestine. 2. After ligating the bilateral ureters of male rabbits, a retrograde bladder perfusion of 5 ml 0.01 mg/ml ICG was conducted to capture fluorescence images of the bladder over time. The average fluorescence intensity was computed using Image Pro Plus 6.0, and the corresponding curve was generated using Prism 8.0. Using a similar methodology, the average fluorescence intensity of male rabbits without ureteral ligation was measured and plotted over time. 1. The developed device facilitated imaging of the ureter, bladder, and small intestine. 2. The bladder's average fluorescence intensity exhibited changes over time in response to urine production and ureteral ligation, contrasting with observations without ureteral ligation. We have successfully constructed and optimized a modular fluorescence imaging system for organs and tissues. This system proves effective in imaging experiments involving hollow organs in animals and offers valuable insights for relevant surgical procedures.

摘要

手术过程通常依赖于徒手视觉观察或内窥镜辅助,而在涉及复杂解剖关系的情况下,这可能会带来挑战。能够在术中可视化目标器官的实时成像技术有可能通过促进对重要组织或器官的准确识别、分离和保护来提高手术的精度。尽管有这些优势,但由于设备成本过高,这些技术的广泛采用受到了阻碍。本研究旨在优化和开发一种基于吲哚菁绿(ICG)的荧光成像设备。目的是监测 ICG 在膀胱中的平均荧光强度变化,为涉及膀胱的手术提供有价值的指导。1. 通过肾盂和耳静脉向雄性兔子注射 0.01mg/ml 的 ICG,以获得输尿管、膀胱和小肠的荧光图像。2. 结扎雄性兔子的双侧输尿管后,逆行膀胱灌注 5ml 0.01mg/ml 的 ICG,以随时间获取膀胱的荧光图像。使用 Image Pro Plus 6.0 计算平均荧光强度,并使用 Prism 8.0 生成相应的曲线。使用类似的方法,测量和绘制没有输尿管结扎的雄性兔子的平均荧光强度随时间的变化。1. 所开发的设备促进了输尿管、膀胱和小肠的成像。2. 膀胱的平均荧光强度随时间发生变化,以响应尿液产生和输尿管结扎,与没有输尿管结扎的观察结果形成对比。我们成功构建并优化了一种用于器官和组织的模块化荧光成像系统。该系统在动物中空器官的成像实验中效果良好,为相关手术提供了有价值的见解。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验