University of North Georgia
Dahlonega, Georgia, 30597, United States
Location contact
Mohammad R Nourbakhsh, PT, Ph.D.
PRINCIPAL_INVESTIGATOR
Rachael Walton-Mouw, PT, DPT
SUB_INVESTIGATOR
Ruth Mahr, PT, Ph.D.
CONTACT
Tamara Paal
CONTACT
NCT Number: NCT07080749
The goal of this clinical trial is to examine the effect of vagus nerve stimulation (VNS) on chronic, widespread pain in adults. The study will also evaluate which method of VNS-electrical ear stimulation or deep exhalation breathing-has a more significant impact on pain intensity, quality of life, and emotional well-being.
The main questions it aims to answer are:
Does vagus nerve stimulation reduce pain intensity in individuals with chronic, widespread pain?
Which intervention-electrical ear stimulation or deep exhalation breathing-provides a greater improvement in autonomic function, emotional status, and quality of life?
Researchers will compare two active interventions-electrical ear stimulation and deep exhalation breathing-to a no-treatment control group to determine relative effectiveness on pain and related outcomes.
Participants will:
Be randomly assigned to one of three groups:
* Electrical Ear Stimulation: Apply a small, non-invasive device to the ear for 20 minutes, twice daily for two weeks. * Deep Exhalation Breathing: Perform balloon-blowing exercises (four deep exhalations per set) once every waking hour each day for two weeks. * Control Group: Receive no intervention during the two-week period. These participants will complete baseline testing, return after two weeks for follow-up testing, and then be debriefed. They will have the option to withdraw or receive an active treatment after study data collection concludes.
Complete four questionnaires to assess pain, emotional state, and quality of life.
Undergo physiological assessments including heart rate variability, neck muscle tissue flexibility (via MyotonPro), and pressure pain sensitivity (via pressure algometer), both before and after the 2-week period.
Participation includes two in-person sessions (approximately 1 hour each) and daily home practice (for intervention groups) lasting 40-60 minutes per day for two weeks. The study involves minimal risk, and no compensation is provided. Participation is voluntary, and confidentiality will be strictly maintained.
Trial opening soon.
Get Notified18 year and older
All sexes
Interventional
Not applicable
Dahlonega, Georgia, 30597, United States
Mohammad R Nourbakhsh, PT, Ph.D.
PRINCIPAL_INVESTIGATOR
Rachael Walton-Mouw, PT, DPT
SUB_INVESTIGATOR
Ruth Mahr, PT, Ph.D.
CONTACT
Tamara Paal
CONTACT
Detailed Description:
Study Overview:
This randomized controlled clinical trial investigates the effects of two forms of non-invasive vagus nerve stimulation (VNS) on chronic widespread pain (CWP). The study is designed to explore whether stimulating the vagus nerve through auricular electrical stimulation (AES) or deep forced exhalation (DFE) improves pain, muscle stiffness, and functional status in individuals with CWP.
Vagal nerve stimulation (VNS) has been associated with modulation of the autonomic nervous system, leading to downstream effects on inflammation, pain perception, and emotional regulation. This study compares the effectiveness of these two intervention methods with a control group that receives no treatment during the study period.
Research Questions:
Hypotheses:
Study Procedures and Assessments:
Participants will be randomly assigned to one of three groups:
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Assessed using the Polar H10 chest strap sensor.
Measured using the MyotonPRO device on the upper trapezius. • Equipment preparation: The MyotonPRO is calibrated before each session.
Assessed with a handheld analog pressure algometer at three locations: mid trapezius, L5 lumbar paraspinal, and gastrocnemius-soleus junction.
Measured using the Visual Analog Scale (VAS), a 10 cm line from "no pain" to "worst pain imaginable."
Measured with the Quality of Life Scale (QOLS), covering physical, emotional, and social domains.
Assessed using the Positive and Negative Affect Schedule (PANAS), which rates 10 positive and 10 negative emotions.
Evaluated using the Patient Health Questionnaire-9 (PHQ-9), a 9-item tool commonly used in research and clinical practice.
Intervention Protocols:
o Waveform: Biphasic rectangular
o Pulse width: 200-300 µs
o Frequency: 20 Hz
o Intensity: Starting at 0.1 mA, increased until tingling is comfortable but not painful
o Duration: 20 minutes per session, twice daily for 2 weeks
Participants undergo all pre- and post-study assessments but receive no intervention during the two-week period. They are debriefed afterward and may opt to receive either treatment following data collection.
Safety Considerations:
Potential AES risks include local irritation, tingling, warmth, lightheadedness, or bradycardia. All participants are screened and monitored during the first session. Instructions emphasize safe positioning, hydration, and gradual adjustment of intensity. Participants are advised to stop the session and contact the research team if they feel unwell.
DFE carries low risk, with occasional lightheadedness or fatigue reported. This is minimized by recommending seated practice and gradual breath intensity. Participants are asked to rest after each session.
Expected Benefits:
Participants may experience decreased pain sensitivity, improved autonomic regulation, better emotional well-being, and improved quality of life. These outcomes are not guaranteed, and no monetary compensation is offered for participation.
Contact Information:
Dr. Reza Nourbakhsh Email: [email protected] Phone: 706-864-1766
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Adults 18 years of age or older
Diagnosed by a healthcare provider with chronic widespread pain or fibromyalgia
Exclusion criteria
Cardiovascular disorders: Such as arrhythmia (irregular heartbeat), heart failure, coronary artery disease, or history of heart surgery
Neurological disorders: Including epilepsy, Parkinson's disease, multiple sclerosis, neuropathy, or seizures
Endocrine disorders: Such as uncontrolled diabetes, thyroid disease (hypothyroidism or hyperthyroidism), or adrenal disorders
Gastrointestinal disorders: Including inflammatory bowel disease (Crohn's disease, ulcerative colitis), irritable bowel syndrome, or chronic acid reflux (GERD)
Respiratory disorders: Such as asthma, chronic bronchitis, emphysema, or sleep apnea
Vestibular disorders: Including Meniere's disease, benign paroxysmal positional vertigo (BPPV), or any condition causing balance problems
History of concussion or traumatic brain injury
Frequent dizziness or vertigo: History of unexplained or recurring episodes
Chronic or recurrent headaches: Including migraines, tension-type headaches, or cluster headaches
Ear problems: History of ear infections, hearing loss, tinnitus (ringing in the ears), or ear surgeries
Throat problems: History of chronic sore throat, difficulty swallowing (dysphagia), or throat surgery
Herniation: History of any type of herniation such as spinal disc herniation, inguinal (groin) hernia, or abdominal hernia
Skin sensitivity to electrical stimulation: Known allergic reaction, rash, or irritation from electrode pads or electrical devices applied to the skin
Deep Exhalation Treatment: Participants will receive a set of standard balloons to use for deep exhalation. They will sit in a comfortable position, take a deep breath in and blow their breath continuously out into the balloon. They repeat the deep exhalation process for a total of 4 consecutive breaths. They perform this breathing exercise once every hour during waking hours each day.
Ear Electrical Stimulation Treatment: Participants will receive a small electrical stimulator and electrode set to be applied to their left ear. The investigators will train the participants to use the device safely and effectively. Once they are comfortable with the procedure, they will perform the procedure at home for 20 minutes twice daily.
The no intervention group will not receive treatment immediately after their baseline assessments, they will be scheduled for another visit after two weeks, then a new set of baseline measurements will be recorded as the post intervention data.
Time frame: From enrollment to the end of treatment at 2 weeks
Pain intensity will be assessed using the Visual Analog Scale (VAS), a 10 cm horizontal line anchored by "no pain" and "worst imaginable pain." Participants mark their current level of pain on the line, which is measured in centimeters (cm).
Time frame: Frome enrollment to the end of treatment at 8 weeks
Muscle stiffness, defined as the resistance of the tissue to an external force, will be measured in the upper trapezius using the MyotonPro device. Stiffness reflects the biomechanical integrity of muscle tissue. Unit of Measure: Newtons per meter (N/m)
Time frame: From enrollment to the end of treatment period at 2 weeks
Pressure pain threshold (PPT) at the mid-belly of the upper trapezius will be assessed using a calibrated analog pressure algometer. PPT is defined as the minimum force required to elicit pain and reflects mechanical pain sensitivity. Unit of Measure: Kilograms per square centimeter (kg/cm²).
Time frame: From enrollment to the end of treatment at 2 weeks
SDNN will be used to assess overall heart rate variability, reflecting both sympathetic and parasympathetic nervous system activity over a 10-minute resting period. Unit of Measure: milliseconds (ms).
Time frame: From enrollment to the end of treatment at 8 weeks
Mechanical Stress Relaxation Time, defined as the time required for tissue to return to its original state following a mechanical impulse, will be measured using the MyotonPro device. This parameter reflects the viscoelastic properties of skeletal muscle. Unit of Measure: milliseconds (ms).
Time frame: From enrollment to the end of treatment at 8 weeks.
Frequency, representing the natural oscillation frequency of muscle tissue in response to a brief mechanical impulse, will be measured using the MyotonPro device. It reflects the intrinsic muscle tone and biomechanical behavior of the tissue. Unit of Measure: Hertz (Hz).
Time frame: From enrollment to the end of treatment at 8 weeks
PPT at the lumbar paraspinal region (L5 level) will be measured using an analog pressure algometer to assess localized pain sensitivity. Unit of measurement: Kilograms per square centimeter (kg/cm²)
Time frame: From enrollment to the end of treatment at 8 weeks
PPT at the junction of the gastrocnemius and soleus muscles in the calf will be measured using a pressure algometer to evaluate distal pain sensitivity. Unit of Measure: Kilograms per square centimeter (kg/cm²)
Time frame: From enrollment to the end of treatment at 8 weeks
Elasticity, measured as logarithmic decrement, describes the ability of muscle tissue to return to its original shape after deformation. It will be measured using the MyotonPro on the upper trapezius. Lower values indicate greater elasticity. Unit of Measure: Unitless (logarithmic decrement)
Time frame: Baseline, after 2 weeks and after 8 weeks
RMSSD will be used as a marker of short-term parasympathetic activity. Unit of Measure: milliseconds (ms).
Time frame: Baseline, after 2 weeks, and after 8 weeks
SDANN will be used to evaluate longer-term components of heart rate variability associated with sympathetic activity. Unit of Measure: milliseconds (ms)
Time frame: Baseline, after 2 weeks and after 8 weeks
LF Power will be analyzed to assess contributions from both sympathetic and parasympathetic nervous systems in frequency domain. Unit of Measure: milliseconds² (ms²).
Time frame: Baseline, after 2 weeks and after 8 weeks
HF Power will be measured to evaluate parasympathetic (vagal) nervous system activity. Unit of Measure: milliseconds² (ms²).
Time frame: Baseline, after 2 weeks and after 8 weeks
LF/HF ratio will be used as a marker of autonomic balance, indicating the relative influence of sympathetic to parasympathetic tone. Unit of Measure: Ratio (unitless).
Time frame: Baseline, after 2 weeks and after 8 weeks
VLF Power will be measured to assess longer-term regulatory systems, including thermoregulation and hormonal factors. Unit of Measure: milliseconds² (ms²).
Time frame: Baseline, after 2 weeks and after 8 weeks
ULF Power will be assessed to capture circadian and ultradian influences on autonomic regulation. Unit of Measure: milliseconds² (ms²).
Time frame: From enrollment to the end of treatment period at 2 weeks.
The Quality of Life Scale (QOLS) will be used to evaluate participants' perceived well-being and life satisfaction across physical, social, and personal domains. The scale includes 16 items scored from 1 to 7, with total scores ranging from 16 to 112. Unit of Measure: Total score (range: 16-112). Higher scores indicate better quality of life.
Time frame: From enrollment to the end of treatment period at 2 weeks
The Positive and Negative Affect Schedule (PANAS) will be used to assess emotional state. The positive affect subscale contains 10 items, each rated from 1 (very slightly or not at all) to 5 (extremely), yielding scores from 10 to 50. Unit of Measure: Total score (range: 10-50). Higher scores indicate a higher level of positive emotional state.
Time frame: From enrollment to the of treatment period at 2 weeks
The Patient Health Questionnaire-9 (PHQ-9) is a 9-item self-report scale measuring depression symptom severity. Each item is rated from 0 (not at all) to 3 (nearly every day), with a total score ranging from 0 to 27. Unit of Measure: Total score (range: 0-27). Higher scores indicate more severe depressive symptoms.
Time frame: From enrollment to the end of treatment at 8 weeks
The PANAS negative affect subscale consists of 10 items, each scored from 1 to 5, with a total score ranging from 10 to 50. This subscale measures levels of distress and negative emotionality. Unit of Measure: Total score (range: 10-50). Higher scores indicate greater negative emotional states.
Time frame: From enrollment to the end of treatment at 8 weeks
Creep (or compliance), representing the viscoelastic behavior of muscle over time, will be assessed using the MyotonPro device. This parameter reflects the ability of muscle tissue to deform gradually under sustained stress. Unit of Measure: Deborah number (or dimensionless unit, based on device output)
Contact information is provided by the study sponsor or research team.
Mohammad Reza Nourbakhsh, PT, Ph.D.
CONTACT
Rachael Wlton-Mouw, PT, DPT
CONTACT
University of North Georgia
Other
The Effects of Vagus Nerve Stimulation on Pain, Muscle Stiffness, Heart Rate, And Functional Activities in Individuals With Chronic Widespread Pain - A Double Blinded Randomized Control Trial
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