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Basic Kinematics
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Course Content I.Introduction to the Course II.Biomechanical Concepts Related to Human Movement III.Anatomical Concepts Related to Human Movement IV.Applications in Human Movement
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Course Content I.Introduction to the Course II.Biomechanical Concepts Related to Human Movement III.Anatomical Concepts Related to Human Movement IV.Applications in Human Movement
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Biomechanical Concepts A.Basic Kinematic Concepts B.Vector Algebra C.Basic Kinetic Concepts
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Biomechanical Concepts A.Basic Kinematic Concepts B.Vector Algebra C.Basic Kinetic Concepts
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Basic Kinematic Concepts 1.Variables for Describing Motion 2.Reference Systems for Describing Motion of the Human Body and Its Segments 3.Guidelines for Describing Motion of the Human Body and Its Segments
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Rigid Body Mechanics Rigid Body Mechanics Statics Constant Velocity KinematicsKinetics Motionless Dynamics KinematicsKinetics
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What is kinematics? Spatial and temporal characteristics Qualitative or quantitative Linear & angular motion
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Why use kinematics? Practical: Provides a standard for us in performing, teaching, or evaluating a skill Research: Once we describe, we can ask why? Problem with kinematics? Practical: Proper kinematics does not always mean proper force application
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Basic Kinematic Concepts 1.Variables for Describing Motion 2.Reference Systems for Describing Motion of the Human Body & Its Segments 3.Guidelines for Describing Motion of the Human Body & Its Segments
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Kinematic Variables Time Position Displacement & distance Velocity & speed Acceleration
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Time – Temporal Analysis WHEN? HOW OFTEN? IN WHAT ORDER? HOW LONG? Most basic analysis Examples: Cadence Stride time Temporal patterning
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Temporal Patterning
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Stance Swing
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Absolute vs. Relative Timing
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Position position - location in space relative to some reference point Linear position (s) x,y,z coordinates Angular position ( ) Units WHERE?
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Displacement & Distance Displacement ( s, ) Final change in position Vector quantity Distance ( p, ) Sum of all changes in position Scalar quantity HOW FAR? yUnits (m, °)
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Velocity & Acceleration Velocity (v, ) Vector quantity position time Units (m. s -1, °. s -1 ) Acceleration (a, ) Vector quantity velocity time Units (m. s -2, °. s -2 ) Insight into forces/torques HOW FAST? HOW QUICKLY IS VELOCITY CHANGING?
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Basic Kinematic Concepts 1.Types of Motion 2.Variables for Describing Motion 3.Reference Systems for Describing Motion of the Human Body & Its Segments 4.Guidelines for Describing Motion of the Human Body & Its Segments
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Reference Systems: Linear +x -x -y +y +z horizontal vertical horizontal Must define origin of reference system to quantify kinematics.
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0°0° 90° 180° 270° rad ½ rev 3 /2 rad ¾ rev /2 rad ¼ rev 2 rad 1 rev Absolute Reference Systems: Angular CCW +
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Relative Reference Systems: Angular
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Relative Reference Systems Fundamental Standing Position Anatomical Standing Position All Joints @ 0 except Ankle @ 90 Forearm varies
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Reference Systems for Measuring Joint Position & Displacement 00 90 140
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00 00 40 90
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Basic Kinematic Concepts 1.Types of Motion 2.Variables for Describing Motion 3.Reference Systems for Describing Motion of the Human Body & Its Segments 4.Guidelines for Describing Motion of the Human Body & Its Segments
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1. Distinguish between motion & position of joints & segments. AB
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2. Recognize that either segment can rotate about a joint.
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3. Recognize that bones move linearly as well as angularly.
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4. Understand that movement generally occurs in oblique planes around oblique axes.
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5. When observing motion, look at the plane, down the axis.
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Summary 1.Identify the system of interest 2.Identify the type(s) of motion of interest 3.Identify the reference system for the motion 4.Describe precisely the temporal & spatial characteristics of that motion using appropriate terminology for the situation Time Position Displacement (ROM) Velocity Acceleration
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For the next lecture day: Lecture Topic #2 Subtopic C – Vector Algebra
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