進行中 校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
選課資源

超音波成像系統

Ultrasound Imaging Systems

學期
114-1
學分
3 學分
當期課號
535233
永久課號
EEIE30094
開課單位
電子研究所
授課教師
鄭耿璽
校區
光復
類別
選修
上課時間表
週一
週三
3
10:10–11:00
超音波成像系統
ED101
2 節連堂
超音波成像系統
ED101
4
11:10–12:00

* 根據陽明交大上課時間表所列

概述

課程概述與目標: 本課程將涵蓋許多領域中所採用之超音波成像系統,包含工業用、醫用、水下之相關應用。本課程將會採每周2小時實際授課,1小時實際操作時間,適合研究生、大四生選修。 This course provides an introduction to the fundamental principles of ultrasound imaging systems and their diverse applications in biomedical, industrial (e.g., air-coupled ranging and imaging, nondestructive testing (NDT)), and recreational or research domains (e.g., underwater imaging). The first half of the course focuses on the core concepts of ultrasound imaging, including: • Wave propagation • Diffraction and scattering • Transducer arrays and beamforming • Real-time imaging systems The second half explores advanced imaging techniques and specialized applications such as: • Color Doppler flow imaging • Nonlinear imaging • Contrast-agent harmonic imaging Additional topics will include bioeffects, safety considerations, and an overview of emerging technologies and future directions in ultrasound imaging. This is a hands-on, interactive course. Nearly all instructional materials will be made available on the course website. Students are encouraged to bring a laptop or computational device capable of running MATLAB to every class, as many sessions will include practical, group-based computational exercises. Classroom sessions are designed to be engaging and collaborative. Each student will choose a relevant topic and deliver a presentation as part of the final project. (Note: Detailed guidelines for the final presentation will be provided separately.)

先修科目

This course is designed for graduate students. Undergraduate students who have completed courses such as “Signals and Systems”or “Communication Systems I” are welcome to enroll.

教學方式

All materials and videos ar available at e3

評分方式

Participation: 20% Homework (including computer assignment): 60% Final project (presentation): 20% The grade for any late submission will be reduced by 10% for each day.

週次計畫
週次主題
第 1 週Topic 1 – Introduction and basic ultrasound physics
第 2 週Topic 1 – Introduction and basic ultrasound physics HW#1
第 3 週Topic 2 – Acoustic Wave Propagation and Diffraction
第 4 週Topic 2 – Acoustic Wave Propagation and Diffraction HW#2
第 5 週Topic 3 – Array Beamforming
第 6 週Topic 3 – Array Beamforming HW#3
第 7 週Topic 4 –Transducers and Arrays HW#4
第 8 週Topic 5 – Ultrasound Interaction with Tissue and Real-time Imaging
第 9 週Topic 5 – Ultrasound Interaction with Tissue and Real-time Imaging HW#5
第 10 週Topic 6 – Doppler Processing and Color-flow Imaging
第 11 週Topic 6 – Doppler Processing and Color-flow Imaging HW#6
第 12 週Topic 7 – Nonlinear Imaging and Contrast agents
第 13 週Topic 7 – Nonlinear Imaging and Contrast agents HW#7
第 14 週Topic 8 – Ultrasound Bioeffects and Therapeutic Ultrasound HW#8
第 15 週Topic 9 – Advanced Applications HW#9
第 16 週Final Project Presentation – Guidelines Your final project may focus on either medical or non-medical applications of ultrasound imaging. Projects can explore existing technologies or propose forward-looking, innovative directions. However, a substantial component of your project must relate to ultrasound imaging principles or technologies. Each student (or team) will submit a written report (5–7 pages) and deliver a PowerPoint presentation (approximately 10 slides). Both components should clearly and thoughtfully address the following key points: 1. Define the Need • Clearly describe the problem or application area you are addressing. • Discuss the current state of the art, including existing technologies or methods, and identify limitations or deficiencies that motivate your project. 2. Impact of Addressing the Deficiencies • Explain how overcoming the identified limitations could improve the application. • Be specific and concrete in describing the potential impact or transformation enabled by your proposed approach. 3. Technology Focus • Provide a detailed description of the ultrasound-related technology you are investigating. • Since this is a technology-driven course, dedicate approximately 1/3 to 1/2 of your report to explaining the technical foundations and principles of the technology. 4. Application Strategy • Describe how your proposed technology can be applied to solve the practical problem you’ve identified. • Outline your approach or implementation strategy, including system design considerations, workflow, or integration steps. 5. Future Directions • If you were to continue exploring this topic, what would be your next steps? • Propose a general roadmap or plan for further development or research in this area.
教科書

It is not required to purchase a textbook for this course. Extensive course notes and PowerPoint presentations will be available on the course web site. If you would like to look at some complementary material at the same level as presented in class, I suggest that you look at the following text. Diagnostic Ultrasound Imaging: Inside Out Thomas L. Szabo Boston University Elsevier: Academic Press Second Edition, 2014 ISBN: 978-0-12-396487-8

Office Hours
地點
Class or office
時間
Appointment by emailing or after class
聯絡方式
jeng@nycu.edu.tw