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April 23rd, 2021 11:00 AM
Rahul Pratik
Sathyabama Institute of Science and Technology B.Tech - BioTechnology SBTA1102 Biomechanics Syllabus

Sathyabama Institute of Science and Technology B.Tech - BioTechnology SBTA1102 Biomechanics Syllabus


SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY SCHOOL OF BIO AND CHEMICAL ENGINEERING

SBTA1102 BIOMECHANICS
L T P Credits Total Marks
3 * 0 3 100

UNIT 1 INTRODUCTION 9 Hrs.
Biomechanics, History, Applications, Perspectives in Biomechanics; Rigid Body BioMechanics; Anatomical Concepts in
Biomechanics., Fundamentals of Biomechanics, Anthroprometric Considerations, Newtons Laws of motions

UNIT 2 MECHANICS OF HARD TISSUES 9 Hrs.
Whole body modeling, Structure of bones – Composition and properties of bones and relationship to structure – Elastic
properties of bones, Bone fracture mechanics, Implants for bone fractures, Lubrication of joints.

UNIT 3 MECHANICS OF SOFT TISSUES 9 Hrs.
Tissue Mechanics-Structure and functions of cartilages, tendons, ligaments,, Mechanical Properties of Tissues, Biological
materials, Pseudo elasticity, nonlinear stress-strain relationship, viscoelasticity and models, structure, function and
mechanical properties of skin, ligaments and tendons, Mechanical testing of Soft tissue.

UNIT 4 CARDIOVASCULAR MECHANICS 9 Hrs.
Cardiovascular Physiology, Heart Valve Dynamics, Prosthetic Valve Dynamics. Mechanical properties of blood vessels –
arteries, arterioles, capillaries, veins, blood flow: laminar and turbulent.

UNIT 5 APPLICATIONS OF BIOMECHANICS 9 Hrs.
Mechanics of spinal distraction rods, Biomechanics of human motion and control interfaces with application to limb orthotics
and prosthetics. Design of hip prosthesis, Automated driver’s training programme, Sports biomechanics.
Max.45 Hrs.

COURSE OUTCOMES

On completion of the course, student will be able to
CO1 - Understand the principles and mechanics of hard tissues.
CO2 - Outline the principles of biofluid dynamics.
CO3 - Explain the fundamentals of soft tissues
CO4 - Apply the knowledge obtained in cardiovascular mechanics
CO5 - Discover mechanics related to cardiovascular system.
CO6 - Apply the knowledge gained to find solutions to various need in biomehanics

TEXT / REFERENCE BOOKS

1. Robert L.Huston, Principles of Biomechanics, CRC Press, 2005.
2. Ozkaya and Nordin, Fundamentals of Biomechanics: Equilibrium, Motion and Deformation, 2002.
3. Gardiner M. Dena, The principles of exercise therapy, CBS Publisher, 2000.
4. Fung Y.C., Bio-Mechanics - Mechanical Properties of Tissues, Springer-Verlag, 2000.
5. Subrata Pal, Textbook of Biomechanics, Viva Books Private Limited, 2009.
6. Bruce M. Koeppen and Bruce A. Stanton, Mosby, Berne & Levy Physiology, 6th Edition, 2009.

END SEMESTER EXAMINATION QUESTION PAPER PATTERN

Max. Marks: 100 Exam Duration: 3 Hrs.
PART A: 10 Questions of 2 marks each - No choice 20 Marks
PART B: 2 Questions from each unit of internal choice; each carrying 16 marks 80 Marks


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