Year
2019
Units
4.5
Contact
1 x 120-minute lecture weekly
1 x 120-minute laboratory weekly
Prerequisites
^ = may be enrolled concurrently
1 ^ 1 of MMED2931, MMED8931
2 Admission into MEB-Master of Engineering (Biomedical)
3 1 of PHCA9522, PHCA9523, PHCA9527
Must Satisfy: ((1) or (2) or (3))
Enrolment not permitted
1 of ENGR3741, ENGR8741 has been successfully completed
Assumed knowledge
Mathematical ability such as obtained in year 12 Mathematical Methods. Some understanding of electricity such as obtained in year 12 physics.
Topic description
Sensors and the principles of measurement of physiological and medical parameters; the origin of biopotentials (ECG, EEG, EMG, EOG, FECG, ERG, etc); biopotential electrodes and amplifiers; measurement and analysis of blood pressure and heart sounds; blood flow and blood volume measurement systems; measurement of respiration.
Educational aims
This topic introduces students to the principles and practice of the measurement of physiological and medical parameters, including medical instruments commonly used in modern hospitals and clinics. This will be achieved by studying and experimenting with the physical principles of the sensor and its interaction with the human body, and the instrumentation required to measure, process and present this signal to the user.
Expected learning outcomes
At the completion of this topic, students are expected to be able to:

  1. Understand and apply the principles and practice of the measurement of physiological and medical parameters
  2. Understand and apply the principles of operation of transducers, amplifiers and signal processing methods used in medical instrumentation
  3. Understand and describe the origin of biopotentials (ECG, EEG, EMG, FECG, ERG, etc.)
  4. Use the terminology of medicine and medical devices to communicate with health care and engineering professionals
  5. Describe, analyse and design biopotential electrodes & amplifiers
  6. Describe, analyse and design blood pressure and heart sound measurement systems
  7. Describe, analyse and design blood flow and blood volume measurement systems
  8. Describe, analyse and design respiration measurement systems