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XuetangX

Advancing Molecular Imaging

Shandong University via XuetangX

Overview

Molecular imaging is a multi-disciplinary interdisciplinary and multi-disciplinary integration, which is in line with the needs of targeted diagnosis and treatment of precision medicine. This course includes the molecular basis of molecular image, nuclear medicine molecular image, magnetic resonance molecular image, ultrasonic targeted molecular image, multimodal and multimodal molecular image and the latest progress. Through online and off-line interaction, the basic knowledge and the latest progress of molecular imaging are briefly described, so that the candidates can make the most of the knowledge revenue with the least time. Promoting graduate students to use molecular imaging knowledge for scientific research and future work.

There are ten important parts in the course, each 50 minutes, which introduce the basis, types and characteristics of molecular imaging, and introduce the latest advancing of molecular imaging
1. Molecular biological basis of molecular imaging
1)Concept and characteristics of molecular imaging; 
2)Basic imaging technology of molecular imaging; 
3)Interaction between molecules; 
4)Concept and types of probes; 
5)Characteristics of probes

2. Nuclear medicine molecular imaging
1) radioactivity; 
2).Nuclear decay; 
3) Radionuclide labeled probe;

3.Radioactivity measurement and imaging
1)Principle of radioactive measurement; 
2) Radioactive measurement instrument;
 3.)Radioactive imaging instrument

4.Progress in nuclear molecular imaging-1
1)Nuclide tracing technology; 
2)Receptor imaging

5.Progress in nuclear molecular imaging-2
1)Receptor imaging; 
2)Gene imaging; 
3)Radioimmunoimaging;
 4)Metabolic imaging; 
5)Apoptosis imaging

6. Multimodal molecular image of nuclear medicine
1). PET / CT; 2). SPECT / CT; 3). PET / MR; 4). PET / optical imaging; 5)Other multimodal molecular imaging

7.Optical molecular imaging
1). Overview; 2). Imaging principle; 3). Imaging equipment; 4). Fluorescence imaging technology; 5). Bioluminescence imaging technology

8. MR molecular imaging
1)Concept; 2)Imaging characteristics; 3)Applicable magnetic materials; 4)Types and characteristics of carriers; 5.)Targeting

9. Research progress of molecular magnetic resonance imaging
1). Magnetic resonance imaging of nervous system; 2). Cardiovascular magnetic resonance imaging; 3). Molecular magnetic resonance imaging of tumor

10.Ultrasonic molecular imaging
1) Concept and characteristics; 2) Types and characteristics of targeted microbubbles; 3). Imaging equipment; 4). Research progress of ultrasound molecular imaging


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Syllabus

  • Chapter 1. Molecular biological basis of molecular imaging
    • 1.concept and feature of molecular imaging
    • 2. Molecular Recognition Theory
    • 3. Molecular probes
    • 4.Classification of Molecular Imaging
    • 5. Development and application of of MI
  • Chapter 2. Nuclear medicine molecular imaging
    • 1.The Basis of Molecular Nuclear Medicine
    • 2.The Mode of Radioactive Decay
    • 3.Interaction of charged particles -with matter
  • Chapter 3. Radioactivity measurement and imaging
    • 1. Nuclear Medicine Instrumentation
    • 2.The classificaton of NM devices
    • 3.PET
    • 4.Radiopharmaceuticals
  • Chapter 4. Progress in nuclear molecular imaging-1
    • 1. Radionuclide tracing techinique
    • 2. In vivo tracing techniques
    • 3. Receptor radioimaging
    • 4. Application of receptor imaging -in nerve system
  • Chapter 5. Progress in nuclear molecular imaging-2
    • 1. Advancing nuclear molecular Imagine
    • 2. Radioimmunoimaging
    • 3. Apoptosis Imaging
    • 4. Metabolism imaging
  • Chapter 6. Multimodal molecular image of nuclear medicine
    • 1.The introduction of PET
    • 2.The Oncological Applications of PET/CT in diagnose and staging
    • 3.The Oncological Applications of PET/CT in restaging and recurrence
    • 4.The application of PET/CT in cardiac and nervous system
  • Chapter 7.Optical molecular imaging
    • 1.Optical Molecular Imaging
    • 2.Optical imaging method
    • 3.Bioluminescence Imaging and -Fluorescence imaging
    • 4.Biomedical Imaging by Near Infrared Light
  • Chapter 8. MR molecular imaging
    • 1. Concept
    • 2. Imaging characteristics
    • 3. Suitable magnetic materials
    • 4. Types and characteristics of carriers
    • 5.Targeting
  • Chapter 9. Research progress of molecular magnetic resonance imaging
    • 1.Nervous system
    • 2.Cardiovascular system
    • 3.Tumor
  • Chapter 10.Ultrasonic molecular imaging
    • 1.Concept and Properties
    • 2.Ultrasound Contrast Agents
    • 3.Ultrasound Imaging System
    • 4.Advancing Ultrasound MI
  • Final Exam

    Taught by

    Guihua Hou, Yu Dexin, Li Jie, Li Xin, Zhang Chao, and Ting Liang

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