Skip to main content
Back to course
Log in
Get started
Someone wanted to learn this too, so Grasp built them a personal learning path.
Create your own
Design biomedical instrumentation systems
·
Module 2
Sensing Bioelectric Potentials
1
Ionic Basis of Resting and Action Potentials
Explain the ionic basis of resting and action potentials in excitable cells (neurons, muscle cells).
Explain the ionic basis of resting and action potentials in excitable cells (neurons, muscle cells).
2
Nervous System Fundamentals
Describe the basic structure and function of the peripheral and central nervous systems.
Describe the basic structure and function of the peripheral and central nervous systems.
3
Electrode-Electrolyte Interface and Half-Cell Potential
Model the electrode-electrolyte interface and explain the origin of half-cell potential.
Model the electrode-electrolyte interface and explain the origin of half-cell potential.
4
Comparing Electrode Types: Surface, Needle, and Microelectrodes
Compare the characteristics and applications of surface, needle, and microelectrodes.
Compare the characteristics and applications of surface, needle, and microelectrodes.
5
Transducer Selection for Physiological Measurement
Select an appropriate transducer (e.g., resistive, capacitive, piezoelectric) for a given physiological measurement.
Select an appropriate transducer (e.g., resistive, capacitive, piezoelectric) for a given physiological measurement.
6
Electrode Site Preparation for Optimal Signal Quality
Apply proper skin preparation techniques to minimize electrode contact impedance and motion artifacts.
Apply proper skin preparation techniques to minimize electrode contact impedance and motion artifacts.
Previous module
Foundations of Biomedical Measurement
Next module
Cardiovascular System: ECG