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Introduction to Biomedical Engineering
Introduction to specializations within the field of biomedical engineering. Overview of classical and current trends related to bio-sensors and instrumentation, physiological models, biomechanics, and bio-materials. Consideration of ethical and bio-safety issues.
Biomedical Instrumentation
A number of key concepts in medical instrumentation will be covered by this course; including the principles and operation of bio-potential electrodes and biomedical sensors; the design of bio-potential amplifiers for measurement of electrocardiogram; safety and performance standards for medical instrumentation; biomedical signal processing; and special topics on the measurement of blood pressure/flow and respiration.
Special Lecture of Biomedical Engineering
This class provides an advanced level of information on current biomedical engineering area. (Biomaterials, Medical Instrument, medical imaging biomechanicsetc) For example, the advanced level of interactions between cells and the surfaces of biomaterials. The course covers: surface chemistry and physics of selected metals, polymers, and ceramics; surface characterization methodology; modification of biomaterials surfaces; quantitative assays of cell behavior in culture; biosensors and microarrays; bulk properties of implants; and acute and chronic response to implanted biomaterials. General topics include biosensors, drug delivery, and tissue engineering.
Medical physics
This class provides fundamentals of physics which can be applied for medical engineering. Course includes mathmatical modelling, pressure and circulation, etc.
Introduction to Human Anatomy & Physiology ⅠII
This course provides basic informations on anatomy and human physiology.
Biomechanics Seminar
Current state of art review on biomechanics will be given by the professor in charge of this course and invited lecturers who are active in this field. Pass/fail grade will be given by the attendance of the class.
Biomechanics for Biomedical Engineering
Biomechanics for Biomedical Engineering is intended to offer the methodolgy for biomechanical analysis for whole body, organ, cell and the constituents. The responses and behaviors upon forces and energy are studied. The long time missing link between mechanics and biomedical fields will be covered by the biomechanical analysis and lead to the capability of research and development in this area. 
Medical Imaging
Images of the human body are derived from the interaction of energy with human tissue. The following medical imaging modalities are covered by the course : Non-ionizing imaging: Ultrasound, Magnetic Resonance Imaging.
Ionizing imaging: Planar x-ray, Computed Tomography.
biosenors in medical applications
This course provides sensor technology tends, technology overview, It includes wireless telemetry, buetooth module, sensor and chip integration, push and play technology, thermistor technology, etc.
Biomedical instrumentation Seminar
This course will enable the students to learn the basic principles of different medical instruments used in the health care industry and the technology and market trend of advanced medical instruments.
Biomedical Materials for Diagnostics and Therapeutics
This class provides fundamentals for medical materials for therapeutics and diagnostics. The course covers metals, polymers, and ceramics; biocompatibility characterization methodology; surface and bulk properties of implants; and biological response to implanted biomaterials. General topics include biocompatible materials, materials-living system interaction, drug delivery, and tissue engineering.
Biomaterial Seminar
This class provides current status of biomaterials R&D. Course includes key concept of biomaterials and current progress of biomaterials.
Medical management information system

Recently a company's information systems, as well as the organization's internal efficiency of operation, a company's business strategy successfully utilized as a means to achieve is essential. This course uses the healthcare information systems to improve the competitiveness of businesses learning how to take advantage.

<curriculum>

  • - Introduction to Information system
  • - Data Base and Customer relation management
  • - Information system plan, development and management
  • - Introduction to HIS(Hospital Information system) and Developmet
Introduce to Medical Device Industry and R&D

Korean medical device industry, research and development trends of the characteristics of Reflections on the expanding understanding of the industry, to grow as professionals after graduation helps. Training information is shown below.

  • 1.Korea Medical Devices Industry Characteristics
  • 2. Development stage medical device industry
  • 3. The medical device industry developing government policy
  • 4. Medical device industry and government support for R & D Trends
Research Methods

This class mainly deal with :

  • - Medical device industry to understand the latest trends.
  • - Fundamental research methods for medical engineers. And it aims to enhance graduate students` ability to recognize their skill as professional medical engineers. This class is expected to propose an important start point for future engineers so that they grow to be good members in our society.
  • Introduction to various research methods about medical engineering filed for graduate students.
  • Prepared the efficient and systematic for writing a paper.
  • Method of writing a paper through the case analyzing of medical engineering's papers.

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