MRI Systems: Magnets, RF Coils & Gradient Systems
CTM 110 provides an in-depth exploration of Magnetic Resonance Imaging (MRI) system core components, essential for biomedical equipment service technicians. This course covers the principles and operational aspects of superconducting magnets, including cryogenics, cryostat design, and critical quench safety protocols. Students will learn about the function and maintenance of radiofrequency (RF) coils, RF transmission and reception chains, and gradient coil systems, including their associated amplifiers and power supplies. The curriculum also details static magnetic field shimming techniques and system calibration. Emphasis is placed on practical service procedures, diagnostic methodologies, and safety considerations specific to high-field MRI environments, preparing technicians for advanced troubleshooting and maintenance tasks.
Course outline
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Syllabus
# CTM 110 - MRI Systems: Magnets, RF Coils & Gradient Systems **Program:** Advanced Medical Imaging Service Certificate **Credits:** 4 **Term:** 2 ## Course Description CTM 110 provides an in-depth exploration of Magnetic Resonance Imaging (MRI) system core components, essential for biomedical equipment service technicians. This course covers the principles and operational aspects of superconducting magnets, including cryogenics, cryostat design, and critical quench safety protocols. Students will learn about the function and maintenance of radiofrequency (RF) coils, RF transmission and reception chains, and gradient coil systems, including their associated amplifiers and power supplies. The curriculum also details static magnetic field shimming techniques and system calibration. Emphasis is placed on practical service procedures, diagnostic methodologies, and safety considerations specific to high-field MRI environments, preparing technicians for advanced troubleshooting and maintenance tasks. ## Learning Outcomes Upon successful completion of this course, students will be able to: * Explain the principles of superconductivity and the design of superconducting MRI magnets, including cryogenics and cryostat components. * Identify and implement critical safety procedures related to high magnetic fields, cryogen handling, and quench events. * Describe the function, types, and operational characteristics of RF coils, RF transmitters, and receivers within an MRI system. * Analyze the operation of gradient coil systems, including gradient amplifiers, and their role in spatial encoding. * Perform basic diagnostic tests and calibration procedures for MRI magnet homogeneity (shimming) and RF system performance. * Apply systematic troubleshooting methodologies to common faults in MRI magnet, RF, and gradient subsystems. ## Topics by Week * **Week 1:** Introduction to MRI System Architecture and Safety * **Week 2:** Superconducting Magnet Principles and Construction * **Week 3:** Cryogenic Systems and Cryogen Management * **Week 4:** MRI Quench Safety and Emergency Procedures * **Week 5:** Static Magnetic Field Homogeneity and Shimming Systems * **Week 6:** Radiofrequency (RF) Coils: Design and Function * **Week 7:** RF Transmitters, Receivers, and System Performance * **Week 8:** Gradient Coils: Principles of Operation and Types * **Week 9:** Gradient Amplifiers and Power Systems * **Week 10:** MRI System Power Distribution and Interlocks * **Week 11:** Subsystem Interfacing and Communication Protocols * **Week 12:** MRI System Calibration and Quality Assurance * **Week 13:** Midterm Review * **Week 14:** Final Exam Review ## Grading * Knowledge Checks: 15% * Assignments and Labs: 30% * Quizzes: 25% * Final Exam: 30% ## Policies Students are expected to adhere to all Anode Technical Institute academic honesty policies. Active participation in discussions and timely submission of all assignments are required. Safety protocols are paramount in all lab activities. Accommodations for students with disabilities will be provided in accordance with institutional guidelines.