課程資訊
課程名稱
醫療光電
Medical Photonics 
開課學期
111-1 
授課對象
電機資訊學院  光電工程學研究所  
授課教師
李翔傑 
課號
OE5014 
課程識別碼
941EU0230 
班次
 
學分
3.0 
全/半年
半年 
必/選修
選修 
上課時間
星期一2,3,4(9:10~12:10) 
上課地點
電二102 
備註
本課程以英語授課。
總人數上限:30人 
 
課程簡介影片
 
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課程大綱
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課程概述

Various topics and essential concepts of the Medical Photonics (biomedical optics/biophotonics/biomedical imaging) will be instructed and discussed. 

課程目標
This course aims to provide students an overview of the field of laser medicine/biomedical optics with special emphasis on several emerging biomedical optical imaging techniques. 
課程要求
1. Class sessions will be conducted by lectures, students’ presentations, and discussions.
2. Each student is required to pick up a topic and make presentation in class. The topic shall be approved by the instructor.
3. The Power-Point slides should be delivered to the instructor, teaching assistant and students via e-mail and ceiba three days prior to presentation.
4. Each student is required to write a term paper at the end of the semester. The topic of the term paper needs to be approved by the instructor.
5. Attendance for all classes and active class participation is strongly encouraged.
6. The course evaluation will be based on midterm (30%) problem sets (40%), and final presentation/term paper (30%) 
預期每週課後學習時數
 
Office Hours
另約時間 備註: TA will be in EE2 125B. 
指定閱讀
Relevant readings will be suggested in class. 
參考書目
References:
1. Eugene Hecht, Optics, Pearson.
2. Hermann A. Haus, Wave and Fields in Optoelectronics, Prentice-Hall.
3. James G. Fujimoto and Daniel L. Farkas, Biomedical Optical Imaging, Oxford
University Press.
4. David A. Boas, Constantinos Pitris, and Nimmi Ramanujam, Handbook of
Biomedical Optics, CRC Press.
5. Wolfgang Drexler and James G. Fujimoto, Optical Coherence Tomography:
Technology and Applications, Springer.  
評量方式
(僅供參考)
 
No.
項目
百分比
說明
1. 
final presentation/term paper 
30% 
 
2. 
midterm 
30% 
 
3. 
problem sets 
40% 
 
 
針對學生困難提供學生調整方式
 
上課形式
以錄影輔助
作業繳交方式
延長作業繳交期限, 學生與授課老師協議改以其他形式呈現
考試形式
其他
由師生雙方議定
課程進度
週次
日期
單元主題
第1週
09/05  Lecture 1: syllabus, grading, course perspective 
第2週
09/12  Lecture 2: geometric optics, image formation, aberration (optical design software brief) 
第3週
09/19  Lecture 3: wave optics, Gaussian optics, coherence 
第4週
09/26  Lecture 4: light source and optical detectors 
第5週
10/03  Lecture 5: light tissue interaction (absorption, scattering, fluorescence), propagation 
第6週
10/17  Lecture 6: microscopy (basics) - confocal microscopy 
第7週
10/24  Lecture 7: light based therapies (PDT, photothermal, therapies, low level light therapies)  
第8週
10/31  midterm 
第9週
11/07  Lecture 8: advanced microscopy techniques (2PM, harmonic image, FLIM, CARS) 
第10週
11/14  Lecture 9: optical coherence tomography - 1 
第11週
11/21  Lecture 10: optical coherence tomography - 2 
第12週
11/28  Lecture 11: adaptive optics in biomedical optical imaging (OCT, NLM, and etc...) 
第13週
12/05  Lecture 13: clinical case – Barrett’s esophagus (GI tract) 
第14週
12/12  lecture 14: clinical case - cardiovascular disease/airway imaging 
第15週
12/19  Final (term paper): Term paper presentation 
第16週
12/26  Final (term paper): Term paper presentation