Biomedical Engineering Technologist: Tools and Techniques | Study Unit
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Biomedical Engineering Technologist: Tools And Techniques

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Topics 9

Overview of Biomedical Engineering Technologist Role
An introduction to the responsibilities, skills, and key duties of a biomedical engineerin...
Medical Equipment Maintenance and Repair
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Biomedical Imaging Techniques
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Quality Assurance in Biomedical Engineering
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Biomedical Signal Processing
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Sterilization Methods in Healthcare
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Biomechanics and Prosthetics
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Patient Safety and Risk Management
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Emerging Technologies in Biomedical Engineering
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Unit Outline 60h

Learning Objectives

5 objectives
  • Understand the role, responsibilities, and skills required of a biomedical engineering technologist.
  • Gain knowledge of medical equipment maintenance, repair, and sterilization protocols.
  • Explore biomedical imaging techniques and biomedical signal processing methods.
  • Learn quality assurance practices, patient safety, and risk management in biomedical engineering.
  • Investigate biomechanics, prosthetics, and emerging technologies impacting healthcare.

Content Outline

Preview

1. Overview of Biomedical Engineering Technologist Role

  • Definition and scope of biomedical engineering technology
  • Key responsibilities and daily duties
  • Essential skills and competencies
  • Role within healthcare multidisciplinary teams

2. Medical Equipment Maintenance and Repair

  • Types of medical devices and equipment
  • Routine maintenance procedures
  • Diagnostic techniques for equipment faults
  • Repair methods and tools
  • Documentation and reporting of maintenance activities

3. Biomedical Imaging Techniques

  • Introduction to biomedical imaging
  • X-ray imaging: principles and applications
  • Magnetic Resonance Imaging (MRI): technology and use cases
  • Ultrasound imaging: operation and clinical relevance
  • Other imaging modalities overview (CT, PET)

4. Quality Assurance in Biomedical Engineering

  • Importance of quality assurance
  • Regulatory standards (e.g., ISO, FDA guidelines)
  • Quality control measures and testing protocols
  • Compliance and certification processes
  • Safety standards for medical devices

5. Biomedical Signal Processing

  • Overview of physiological signals (ECG, EEG, EMG)
  • Signal acquisition and preprocessing
  • Techniques for filtering and noise reduction
  • Feature extraction and pattern recognition
  • Applications in diagnostics and patient monitoring

6. Sterilization Methods in Healthcare

  • Need for sterilization and infection control
  • Methods: autoclaving, chemical sterilization, radiation, filtration
  • Sterilization protocols and validation
  • Handling and storage of sterile equipment

7. Biomechanics and Prosthetics

  • Basic principles of biomechanics
  • Human musculoskeletal system overview
  • Types and functions of prosthetic devices
  • Design considerations and material selection
  • Advances in prosthetic technology

8. Patient Safety and Risk Management

  • Importance of patient safety in biomedical engineering
  • Risk assessment techniques
  • Incident reporting and investigation
  • Strategies to minimize errors and hazards
  • Role of biomedical technologists in safety culture

9. Emerging Technologies in Biomedical Engineering

  • Artificial intelligence and machine learning applications
  • Robotics in surgery and rehabilitation
  • Wearable health monitoring devices
  • Telemedicine and remote diagnostics
  • Future trends and innovations in healthcare technology
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