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The Biomedical Engineering Level 5 Advanced Diploma provides a comprehensive education in key areas of biomedical engineering, including medical instrumentation, biomaterials, biomedical imaging, biomechanics, regulatory affairs, quality management, and advanced topics. Ideal for aspiring biomedical engineers, professionals in the biomedical industry, students of biomedical engineering, and individuals with a science or engineering background looking to enter the field of biomedical engineering. Gain the knowledge and skills necessary to innovate and contribute to advancements in healthcare technology and patient care.

Course Price:
Original price was: £194.00.Current price is: £19.99.
Course Duration:
5 hours, 55 minutes
Total Lectures:
32
Total Students:
42
Average Rating:
4.5
The Biomedical Engineering Level 5 Advanced Diploma offers a comprehensive curriculum covering key aspects of biomedical engineering, including medical instrumentation, biomaterials, biomedical imaging, biomechanics, regulatory affairs, quality management, and advanced topics. Through a combination of theoretical learning and practical applications, participants will gain the knowledge and skills necessary to excel in the dynamic field of biomedical engineering.

What Will You Learn?

  • Understand the principles and applications of medical instrumentation in healthcare.
  • Explore the properties, design, and applications of biomaterials used in biomedical engineering.
  • Gain insights into biomedical imaging techniques and their role in medical diagnosis and treatment.
  • Learn the fundamentals of biomechanics and their applications in designing medical devices and implants.
  • Understand regulatory affairs and quality management systems relevant to biomedical engineering.
  • Dive into advanced topics in biomedical engineering, including emerging technologies and research areas.

Who Should Take The Course?

  • Aspiring biomedical engineers seeking advanced knowledge and skills in the field.
  • Professionals working in biomedical engineering, medical device manufacturing, healthcare technology, or related industries.
  • Students pursuing degrees or careers in biomedical engineering, biomedical science, or related disciplines.
  • Individuals with a background in engineering or science interested in transitioning to the field of biomedical engineering.

Requirements:

  • Prior knowledge or experience in biomedical engineering or a related field.
  • Proficiency in mathematics, physics, and engineering principles.
  • Basic understanding of biology, anatomy, and physiology.
  • Access to relevant software and tools used in biomedical engineering.
  • Strong analytical, problem-solving, and communication skills.

Course Curriculum

    • Bioelectric signals and their measurement 00:10:00
    • Imaging techniques in medical diagnostics 00:10:00
    • Introduction to medical instrumentation 00:10:00
    • Laboratory exercises Calibration of medical instruments 00:10:00
    • Sensors and transducers in biomedical applications 00:10:00
    • Biocompatibility and biodegradation 00:10:00
    • Biomaterials in prosthetics and implants 00:10:00
    • Case study Design and evaluation of biomaterials for specific medical applications 00:10:00
    • Properties and classification of biomaterials 00:10:00
    • Tissue engineering and regenerative medicine 00:10:00
    • Clinical applications and diagnostic interpretation 00:10:00
    • Emerging trends in biomedical imaging technology 00:10:00
    • Image processing techniques in biomedical imaging 00:10:00
    • Practical session Image acquisition and analysis using software tools 00:10:00
    • Principles of medical imaging modalities (X-ray, MRI, CT, ultrasound, etc.) 00:10:00
    • Biomechanics of artificial limbs and orthopedic devices 00:10:00
    • Fundamentals of biomechanics and human movement 00:10:00
    • Musculoskeletal system dynamics 00:10:00
    • Project Design and testing of a biomedical device for rehabilitation purposes 00:10:00
    • Rehabilitation engineering and assistive technologies 00:10:00
    • Ethical considerations in biomedical engineering research and development 00:10:00
    • Guest lecture Industry perspective on regulatory compliance and quality assurance 00:10:00
    • Quality management systems (ISO 13485, FDA regulations, etc.) 00:10:00
    • Regulatory framework for medical devices and equipment 00:10:00
    • Risk management and documentation requirements 00:10:00
    • Artificial intelligence and machine learning applications in biomedicine 00:10:00
    • Biomedical signal processing and analysis 00:10:00
    • Future directions and challenges in biomedical engineering 00:10:00
    • Nanotechnology in medicine and healthcare 00:10:00
    • Wearable medical devices and remote patient monitoring 00:10:00
    • Order Certificate 00:05:00
    • Exam of Biomedical Engineering Level 5 Advanced Diploma 00:50:00

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