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ICG-amine Applications in biomedical imaging Indocyanine green ICG-amine CAS1686147-55-6 Near-infrared fluorescence Tumor imaging

ICG-amine, as a near-infrared fluorescent imaging agent, has a wide range of applications in biomedical imaging. It can realize non-invasive, real-time imaging of tissues, organs or cells in vivo with high depth penetration capability and high resolution, mainly through near-infrared fluorescence imaging technology. Below are several important applications of ICG-amine in biomedical imaging and corresponding examples:

 

1. Tumor imaging: ICG-amine can be used for fluorescence imaging and localization of tumors. Researchers can inject ICG-amine into the body and observe the location, size and morphology of tumors through near-infrared fluorescence imaging. For example, in the early diagnosis of gastrointestinal tumors, ICG-amine can be used to visualize tumors through endoscopic near-infrared fluorescence imaging technology to help doctors accurately locate and remove tumors.

 

2. Vascular imaging: ICG-amine can be used for visualization and dynamic monitoring of blood vessels. Researchers can inject ICG-amine into the body and observe the distribution, morphology and hemodynamics of blood vessels through near-infrared fluorescence imaging. For example, in the research of cardiovascular diseases, ICG-amine can help diagnosis and treatment by observing the function and structure of heart and blood vessels in real time through near-infrared fluorescence imaging technology.

 

3. Lymph node imaging: ICG-amine can be used to visualize and localize lymph nodes. Researchers can inject ICG-amine into the body and observe the location and drainage of lymph nodes through near-infrared fluorescence imaging. For example, in tumor surgery, ICG-amine can help doctors accurately locate and remove lymph nodes by observing the visualization of lymph nodes in real time through near-infrared fluorescence imaging technology.

 

In conclusion, ICG-amine, as a near-infrared fluorescence imaging agent, has a wide range of applications in biomedical imaging fields such as tumor imaging, vascular imaging, and lymph node imaging. Its non-invasive, real-time and high-resolution features provide important tools and methods for biomedical research and clinical applications.


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