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Covers the design of biochips, the motivation behind biochip development, personalized therapy challenges, and the future prospects of under-the-skin devices.
Explores the impact of convection and diffusion on sensor performance in channels, emphasizing the importance of sensor size for molecule collection rate.
Introduces BioMEMS, covering applications like DNA separation, protein analysis, and neuroelectronic implants, along with key numbers in biology and challenges in system integration.
Explores electroplating fundamentals, including mass transport, electrodeposits, and biosensors, emphasizing the importance of electrochemical characterisation methods and biomedical sensors.
Explores probe detection using antibodies and DNA in bio/CMOS interfaces, covering antibody-antigen interactions, DNA hybridization, and labeling techniques.
Explores ionic balances, oxidation-reduction, and electrochemical potentiometric sensors in chemical sensing applications, including oxygen concentration measurement and air/fuel ratio optimization.