週次 |
授課內容 |
第1週 |
Chapter 0. Review of biosystem
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第2週 |
Chapter 1. Introduction of bio NEMS/MEMS
1.1 Learning from the Experiences of Microelectronics
1.2 The Advantages of Miniaturizing Systems for Chemical Analysis
1.3 From Concept to TAS |
第3週 |
Chapter2. Microfludics-Theoretical aspects
2.1 Fluids and Flows
2.2 Transport Processes |
第4週 |
Chapter2. Microfludics-Theoretical aspects
2.3 System Design
2.4 An Application : Biological Fluids
Chapter 3. Microfludics-Components
3.1 Valves and Pumps |
第5週 |
Chapter 3. Microfludics-Components
3.2 Injection, Dosing, and Metering
3.3 Temperature Measurement in Microfuidics |
第6週 |
Chapter 4. Silicon and Cleanroom Processing
4.1 Substrate Fabrication
4.2 Optical Lithography |
第7週 |
Chapter 4. Silicon and Cleanroom Processing
4.3 Additive Techniques
4.4 Subtractive Techniques |
第8週 |
Chapter 5. Polymer Micromachining
5.1 Thick Resist Lithography
5.2 Polymeric Surface Micromachining |
第9週 |
Chapter 5. Polymer Micromachining
5.3 Soft Lithography
5.4 Micromolding |
第10週 |
Chapter 5. Polymer Micromachining
5.5 Laser Micromachining
5.6 3D Bioprinting
5.7 Examples |
第11週 |
Midterm Examination |
第12週 |
Chapter 6. MEMS for biosensors
6.1 In-vitro diagnostics
6.2 Biosensors |
第13週 |
Chapter 6. MEMS for biosensors
6.3 Biosensors based on a nanostructured electrode |
第14週 |
Chapter 6. MEMS for biosensors
6.4 Glucose biosensors
6.5 Molecular detections using Raman spectroscopy |
第15週 |
Chapter 7. MEMS for tissue engineering
7.1 Introduction of Tissue Engineering
7.2 Tissue scaffold design |
第16週 |
Chapter 7. MEMS for tissue engineering
7.3 Tissue scaffold fabrication using MEMS approaches
7.4 Applications of MEMS fabricated tissue scaffold
Chapter 8. MEMS for clinical applications
8.1 Drug delivery devices
8.2 Minimally invasive medical devices.
Final Project Presentation |
自主學習 內容 |
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