Kinesiology: Movement in the Context of Activity
Höfundar:
David Paul Greene; Susan L. Roberts (Útgáfa: 3)
Kaup valmöguleikar
Enhance your OT skills with the only book to focus on activity demands of occupation and the biomechanics of sensory organs! Greene and Roberts’ Kinesiology: Movement in the Context of Activity, 3rd Edition uses a comprehensive, clientcentered approach to occupational therapy, including sensorymotor performance skills and sociocultural contexts related to solving a clinical problem. It covers kinesiologic and biomechanical principles, and shows techniques for producing positive outcomes when clients face challenging activity demands in all areas of occupation.
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- Elsevier - Evolve
- 9780323298889
- 9780323298889
- ePub
- 3
- David Paul Greene; Susan L. Roberts
- English
- 022016
- 10
- 1000
- 1000
Kaflar
- Cover image
- Title page
- Table of Contents
- Copyright
- Dedication
- Preface
- Overview of Chapters
- How We Solve Problems Based on Kinesiology
- Acknowledgments
- About Evolve
- Interactive Exercises
- Videos
- Animations
- Self-Test
- Goniometry and Range of Motion Animations and Video Clips
- Section One Multidisciplinary Basis for Understanding Human Movement
- 1 Biomechanics, Kinesiology, and Occupational Therapy: A Good Fit
- Beliefs and Definitions
- Mechanistic and Transformative Philosophies
- A Biomechanical Frame of Reference
- Integration of Biomechanics with Models of Practice
- Summary
- References
- Related Reading
- 2 The Study of Human Movement: Concepts from Related Fields
- Concepts from Medicine
- Concepts from Physics and Engineering
- Summary
- Reference
- Related Readings
- 3 Gravity: A Constant Force
- Gravity and the Development of Movement
- Gravity and the Human Body
- Mass, Weight, and Acceleration
- Factors in Stability
- Threats to Balance in Upper Motor Syndromes
- Summary
- References
- Related Readings
- 4 Linear Force and Motion
- External Forces
- Internal Forces
- Summary
- References
- Related Readings
- 5 Rotary Force, Torque, and Motion
- Rotary Motion
- Tendency to Rotate
- Equilibrium of Torques
- Lever Systems
- External and Internal Torques
- Summary
- Related Readings
- 6 Utilizing the Sensory Environment: Integrating Physics into Sensory Interventions
- Sensing Touch through Skin Receptors
- The Complex Sensation of Movement and Position
- Sensing Muscle Force
- Sensing Balance and the Role of the Vestibular Apparatus
- Summary
- References
- Related Readings
- Section Two Basic Concepts Applied to Musculoskeletal Regions
- 7 The Head and Torso
- Background
- Torso Movements
- Summary
- Reference
- Related Readings
- 8 The Proximal Upper Extremity
- The Shoulder Complex
- The Elbow Complex and Forearm
- Function and Adaptation
- Summary
- References
- Related Readings
- 9 The Distal Upper Extremity
- The Wrist
- The Hand
- Pathological Conditions
- The Ergonomics of Grasp
- Summary
- References
- Related Reading
- 10 The Lower Extremity
- Movements and Muscle Use
- Balance
- Normal Gait and Variations
- Biomechanical Analysis
- Summary
- References
- Related Readings
- Appendix A English to Metric Conversions
- Appendix B Body Segment Parameters
- Appendix C Solutions to Chapter Applications
- Appendix D Review of Mathematics
- Working with Variables in an Equation
- Simple Geometry
- Basic Trigonometry
- Appendix E Trigonometric Functions
- Appendix F Commonly Used Formulas in Biomechanics
- Length (Unmeasurable Elements)
- Force (Linear Motion)
- Force Equilibrium
- Appendix G Client Profiles
- Appendix H Working Models of the Fingers and Wrist
- Finger Model
- Wrist and Finger Model
- Glossary
- Lab manual for Kinesiology Movement in the Context of Activity
- Table of Contents
- Introduction
- Links to Labs
- Lab 1 Kinematic Chain, Human Musculoskeletal Movement, Shoulder Model and Joint Movement
- Lab 1 Turn This In
- Lab 2 Stability, Balance, Wheelchairs, Minimum Assist Transfers
- Fundamental Steps of a Transfer
- Lab 2 Turn This In
- Lab 3 Overview of Range of Motion (ROM) Measurement and Manual Muscle Testing (MMT)
- Lab 3 Turn This In
- Brief Guidelines for ROM and MMT
- Lab 4 Accessory Joint Motions/Muscle Excursion/Active and Passive Insufficiency/Maximum Assist Transfers
- Lab 4 Turn This In
- Lab 5 Torque and Equilibrium Conditions
- Lab 5 Turn This In
- Lab 6 Sensory Experiences
- Lab 6 Turn This In
- Lab 7 Head, Neck, and Trunk: Curves, Movements, Measurements, Muscles
- Lab 7 Turn This In
- Lab 8 Shoulder Complex: Scapular Movement, Differential Functions of Scapular and Glenohumeral (GH) Muscles, Differential Functions of Supraspinatus and Deltoid in GH Abduction
- Lab 8 Turn This In
- Lab 9 MMT and ROM of Shoulder/Elbow and Forearm: Torque Range of Motion
- Lab 9 Turn This In
- Lab 10 Wrist and Hand: Synergistic Function of Wrist Extensors and Finger Flexors
- Lab 10 Turn This In
- Lab 11 Torque Range of Motion/Intrinsic Function/Tenodesis Grasp/Pulleys/Review of ROM Limitations
- Lab 11 Turn This In
- Lab 12 Prehension Patterns/Intrinsic Function and Digital Sweep/Tenodesis Grasp
- Lab 13 Positioning in a Wheelchair
- Biomechanical Analysis Lab
- Competency Check Sheet for Transfers
- Competency Check Sheet for ROM/MMT
- Table of Motions and Muscles to Palpate for MMT Practical Exams
- Additional Lab: MMT to Determine Neurological Level in Spinal Cord Injury
- Index