Literature DB >> 8734397

Three-dimensional head kinematics and cervical range of motion in the diagnosis of patients with neck trauma.

P J Osterbauer1, K Long, T A Ribaudo, E A Petermann, A W Fuhr, S J Bigos, G T Yamaguchi.   

Abstract

OBJECTIVE: To create a statistical model using three-dimensional (3D) head kinematics and range of motion (ROM) to distinguish between people with whiplash syndrome and asymptomatic controls. STUDY
DESIGN: Cross-sectional study to estimate validity of diagnostic measures.
METHODS: Fifty-one asymptomatic controls (most of whom were women), 18-35 yr old and 30 matched whiplash trauma patients seeking care from suburban outpatient clinics were sought. 3D kinematic parameters of head motion were obtained during tracking tasks (e.g., flexion, extension, etc.) and cervical ROM was measured via a head mounted inclinometer. Their level of pain and disability was assessed via a self-administered neck disability index questionnaire and visual analog pain scale (VAS).
RESULTS: A scoring system of biomechanical abnormalities derived from the vertical piercing point, its second derivative and symmetry during oblique tasks. The scores ranged from a minimum of 0 to a maximum of 3. A cutoff of > or = 0.5 correctly identified the greatest number of subjects and minimized false positives (sensitivity 77%, specificity 82%, likelihood ratio 4.5). ROM performed similarly well at a cutoff of 1 SD below the normative mean (sensitivity 77%, specificity 84%, likelihood ratio 3.9).
CONCLUSIONS: There is potential for biomechanical analysis to objectively detect abnormalities. The statistical model yielded moderate to high sensitivity and specificity using 3D helical-axis parameters of the head and standard ROM. The model development will continue via this process in future studies. These data could be a first step toward the creation of useful, noninvasive protocols for the diagnosis and management of soft tissue trauma of the neck.

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Year:  1996        PMID: 8734397

Source DB:  PubMed          Journal:  J Manipulative Physiol Ther        ISSN: 0161-4754            Impact factor:   1.437


  8 in total

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2.  Finite helical axes of motion are a useful tool to describe the three-dimensional in vitro kinematics of the intact, injured and stabilised spine.

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3.  A review of the use of likelihood ratios in the chiropractic literature.

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Journal:  J Chiropr Med       Date:  2007-09

4.  Effect of Neck Strength on Simulated Head Impacts During Falls in Female Ice Hockey Players.

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5.  Assessment of patients with neck pain: a review of definitions, selection criteria, and measurement tools.

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6.  Instantaneous helical axis methodology to identify aberrant neck motion.

Authors:  Arin M Ellingson; Vishal Yelisetti; Craig A Schulz; Gert Bronfort; Joseph Downing; Daniel F Keefe; David J Nuckley
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Review 7.  Content validity of manual spinal palpatory exams - A systematic review.

Authors:  Wadie I Najm; Michael A Seffinger; Shiraz I Mishra; Vivian M Dickerson; Alan Adams; Sibylle Reinsch; Linda S Murphy; Arnold F Goodman
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8.  Review of methods used by chiropractors to determine the site for applying manipulation.

Authors:  John J Triano; Brian Budgell; Angela Bagnulo; Benjamin Roffey; Thomas Bergmann; Robert Cooperstein; Brian Gleberzon; Christopher Good; Jacquelyn Perron; Rodger Tepe
Journal:  Chiropr Man Therap       Date:  2013-10-21
  8 in total

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