Using orientation statistics to investigate variations in human kinematics

This paper applies orientation statistics to investigate variations in upper limb posture of human subjects drilling at six different locations on a vertical panel. Some of the drilling locations are kinematically equivalent in that the same posture could be used for these locations. Upper limb post...

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Published inApplied statistics Vol. 49; no. 1; pp. 81 - 94
Main Authors Rancourt, D., Rivest, L.-P., Asselin, J.
Format Journal Article
LanguageEnglish
Published Oxford, UK and Boston, USA Blackwell Publishers Ltd 2000
Blackwell Publishers
Blackwell
Royal Statistical Society
SeriesJournal of the Royal Statistical Society Series C
Subjects
Online AccessGet full text
ISSN0035-9254
1467-9876
DOI10.1111/1467-9876.00180

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Abstract This paper applies orientation statistics to investigate variations in upper limb posture of human subjects drilling at six different locations on a vertical panel. Some of the drilling locations are kinematically equivalent in that the same posture could be used for these locations. Upper limb posture is measured by recording the co-ordinates of four markers attached to the subject's hand, forearm, arm and torso. A 3 × 3 rotation characterizes the relative orientation of one body segment with respect to another. Replicates are available since each subject drilled at the same location five times. Upper limb postures for the six drilling locations are compared by one-way analysis-of-variance tests for rotations. These tests rely on tangent space approximations at the estimated modal rotation of the sample. A parameterization of rotations in terms of unit quaternions simplifies the computations. The analysis detects significant differences in posture between all pairs of drilling locations. The smallest changes, less than 10⚬at all joints, are obtained for the kinematically equivalent pairs of locations. A short discussion of the biomechanical interpretation of these findings is presented.
AbstractList This paper applies orientation statistics to investigate variations in upper limb posture of human subjects drilling at six different locations on a vertical panel. Some of the drilling locations are kinematically equivalent in that the same posture could be used for these locations. Upper limb posture is measured by recording the co-ordinates of four markers attached to the subjects hand, forearm, arm and torso. A 3×3 rotation characterizes the relative orientation of one body segment with respect to another. Replicates are available since each subject drilled at the same location five times. Upper limb postures for the six drilling locations are compared by one-way analysis-of-variance tests for rotations. These tests rely on tangent space approximations at the estimated modal rotation of the sample. A parameterization of rotations in terms of unit quaternions simplifies the computations. The analysis detects significant differences in posture between all pairs of drilling locations. The smallest changes, less than 10° at all joints, are obtained for the kinematically equivalent pairs of locations. A short discussion of the biomechanical interpretation of these findings is presented.
This paper applies orientation statistics to investigate variations in upper limb posture of human subjects drilling at six different locations on a vertical panel. Some of the drilling locations are kinematically equivalent in that the same posture could be used for these locations. Upper limb posture is measured by recording the co-ordinates of four markers attached to the subject's hand, forearm, arm and torso. A 3 × 3 rotation characterizes the relative orientation of one body segment with respect to another. Replicates are available since each subject drilled at the same location five times. Upper limb postures for the six drilling locations are compared by one-way analysis-of-variance tests for rotations. These tests rely on tangent space approximations at the estimated modal rotation of the sample. A parameterization of rotations in terms of unit quaternions simplifies the computations. The analysis detects significant differences in posture between all pairs of drilling locations. The smallest changes, less than 10⚬at all joints, are obtained for the kinematically equivalent pairs of locations. A short discussion of the biomechanical interpretation of these findings is presented.
Author Asselin, J.
Rancourt, D.
Rivest, L.-P.
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Issue 1
Keywords Drilling posture
Statistical analysis
Human body
Quaternion
Kinematics
Human body mechanics
Multivariate analysis
Boring
Rotation
Language English
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Snippet This paper applies orientation statistics to investigate variations in upper limb posture of human subjects drilling at six different locations on a vertical...
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StartPage 81
SubjectTerms Axes of rotation
Directional data
Drilling
Drilling task
Exact sciences and technology
Human body
Joint kinematics
Kinematics
Mathematics
Matrices
Modelling
Multivariate analysis
Multivariate statistics
Posture
Probability and statistics
Quaternions
Rotation
Rotations
Sciences and techniques of general use
Statistics
Tangents
Upper extremity
Title Using orientation statistics to investigate variations in human kinematics
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