The overall goal of this project is to develop sensitive and objective clinical research tools for the assessment of head-neck motor control. In order to accomplish this goal, the investigators aim to quantify changes in head-neck motor control before and after osteopathic manipulative treatment. The investigators hypothesize that head-neck motor control will improve in neck pain participants after 4-weeks of treatment. Additionally, the investigators will compare position and force head-neck motor control between healthy controls and neck pain patients. The investigators hypothesize that baseline tests of position and force head-neck motor control will be better in healthy individuals than neck pain patients.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
TRIPLE
Enrollment
154
Up to 4 sessions of osteopathic manipulative treatment (once per week)
MSU Osteopathic Manual Medicine
East Lansing, Michigan, United States
MSU Musculoskeletal Rehabilitation
Lansing, Michigan, United States
Michigan State University Center for Orthopedic Research
Lansing, Michigan, United States
Change from baseline to week 4 and from week 4 to 8 in head position tracking accuracy
Participants will be seated in an upright position with their upper body secured to a backrest and will wear a head harness with an attached position sensor. The angular position of the head will be displayed on a monitor 1 meter in front of the participants and they will be asked to follow a moving target by moving their head. Accuracy will be determined by taking the difference between the target position signal and the actual head position (measured in degrees with string potentiometers).
Time frame: Change from baseline to week 4 and from week 4 to 8
Change from baseline to week 4 and from week 4 to 8 in head force tracking accuracy
Participants will be seated in an upright position with their upper body secured to a backrest and will be asked to generate force with their head against a fixed pad. The pad will be attached to a load cell that monitors how much force is being generated by their head. The force level will be displayed on a monitor 1 meter in front of the participants and they will be asked to follow a moving target by generating force with their head. Accuracy will be determined by taking the difference between target force signal and the actual head force (measured in Newtons with the load cell).
Time frame: Change from baseline to week 4 and from week 4 to 8
Change from baseline to week 4 and from week 4 to 8 in head position stabilization accuracy
Participants will be sitting upright in a seat mounted to a robotic platform (Mikrolar Hexapod Robot) with their upper body secured to a backrest and will wear a head harness with an attached position sensor. The robotic platform will provide an angular perturbation to the participant about the cervical spine in the sagittal plane while the participant is asked to maintain (stabilize) their head position in the upright posture. Accuracy will be determined by measuring the amount of head displacement (measured in degrees with string potentiometers) during the perturbation trial.
Time frame: Change from baseline to week 4 and from week 4 to 8
Change from baseline to week 4 in neck force and muscle activation directionality
Participants will be seated in an upright position with their upper body secured to a backrest and will be asked to generate force with their head against a fixed pad. They will be asked to performed 6-seconds isometric exertions in different directions. Surface EMG will be recorded from the sternocliedomastoid, splenius capitis, and upper trapezius muscles. Muscle directionality will be determined by the EMG magnitude in each direction of exertion.
Time frame: Change from baseline to week 4
Change from week 4 to 8 in neck force and muscle activation directionality
Participants will be seated in an upright position with their upper body secured to a backrest and will be asked to generate force with their head against a fixed pad. They will be asked to performed 6-seconds isometric exertions in different directions. Surface EMG will be recorded from the sternocliedomastoid, splenius capitis, and upper trapezius muscles. Muscle directionality will be determined by the EMG magnitude in each direction of exertion.
Time frame: Change from week 4 to 8
Change in Patient Reported Outcomes Measurement Information System (PROMIS)
Assesses weekly changes in physical function, anxiety, depression, fatigue, sleep, satisfaction with social role, and pain with PROMIS-29 questionnaire.
Time frame: The expected average is weekly for this outcome measure until the end (expected average of 8 weeks).
Change in concomitant medication
Assesses weekly changes in the use of medication for treating neck pain, including the type of medication and the quantity of medication (i.e., number of pills) with a questionnaire.
Time frame: The expected average is weekly for this outcome measure until the end (expected average of 8 weeks).
Change in neck disability
Assesses weekly changes in functional activities related to neck disability with the Neck Disability Index questionnaire.
Time frame: The expected average is weekly for this outcome measure until the end (expected average of 8 weeks).
Change in fear avoidance behavior
Assesses weekly changes in fear avoidance behavior using the Fear Avoidance Beliefs questionnaire.
Time frame: The expected average is weekly for this outcome measure until the end (expected average of 8 weeks).
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