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NCT Number: NCT01627301

Sympathetic Overactivity in Post-traumatic Stress Disorder

Post-traumatic stress disorder (PTSD) is a highly prevalent anxiety disorder that is associated with an increased risk of cardiovascular (CV) disease and hypertension. One potential mechanism is overactivation of the sympathetic nervous system (SNS), both at rest and particularly during stress. This study will evaluate whether 8 weeks of daily DGB therapy or transcutaneous vagus nerve stimulation (tVNS) therapy improves SNS activity at rest and during stress.

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Key information

Age range

18 year–65 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Atlanta VA Medical Center

Decatur, Georgia, 30033, United States

Location status: Recruiting

About this study

PTSD is highly prevalent in both the military and general population. Because of the tremendous deleterious mental health and socioeconomic impact of PTSD, research to understand and treat all aspects of PTSD is vitally important. One less recognized but highly significant consequence of PTSD is an increased risk of hypertension, cardiovascular disease (CV) disease, and its risk factors. Despite the epidemiologic data demonstrating increased CV risk in PTSD, very little is known about underlying mechanisms. This project will help fill this gap by examining the mechanistic role of sympathetic overactivation in PTSD. Sympathetic hyperactivity has a major role in causing and sustaining hypertension, and contributes to the development of heart failure, arrhythmias, and atherogenesis. Moreover, exaggerated SNS responses during mental stress are associated with an increased risk of hypertension and CV disease.

Slow breathing is an integral part of many ancient meditative practices that are purported to have beneficial physiologic and psychological effects. Clinical applicability of slow breathing requires a method for delivering slow breathing exercises to outpatients on a consistent basis. This can be achieved through device-guided slow breathing (DGB) in which breathing rate is slowed to < 10 breaths/min via an interactive biofeedback device. The RESPeRATE (Intercure, Inc.) device is currently FDA approved for adjunctive treatment of high blood pressure and reduction of stress. This device includes a belt-type respiratory sensor, earbuds to provide audio feedback, and microprocessor that measures adherence and success at achieving slow breathing rates.

Vagal nerve stimulation has been shown in both animal and human studies to safely and effectively reduce sympathetic activity and inflammation. tVNS is a noninvasive method that involves placing a device over the skin overlying the vagus nerve on the neck. The device delivers mild electrical stimulation, using transcutaneous electrical nerve stimulation (TENS) unit. Prior studies have shown that transcutaneous vagal nerve stimulation safely and effectively reduced muscle sympathetic nerve activity in healthy humans and improved heart rate variability, indicating a decrease in sympathetic nervous system (SNS) activity, and a shift in cardiac autonomic function toward parasympathetic (PNS) predominance.

The purpose of this study is to determine if device-guided slow breathing or tVNS improves sympathetic activity and vascular function in persons with PTSD. Participants will be randomized to 15 minutes daily of DGB vs sham-DGB, or tVNS vs. sham-tVNS for 8 weeks.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • prehypertensive and normotensive veterans with PTSD, and prehypertensive and normotensive veterans without PTSD (controls)

Exclusion criteria

  • heart or vascular disease
  • illicit drug use within the last 6 months
  • excessive alcohol use (>2 drinks per day)
  • pregnancy
  • autonomic dysfunction
  • medications known to affect SNS (clonidine)
  • treatment with monoamine oxidase (MAO) inhibitors within the last 14 days
  • any serious systemic disease

Treatment and study plan

Device-Guided Breathing (DGB)

Device

The RESPeRATE device will be used for 15 minutes of device-guided breathing daily for 8 weeks. The participant places the elastic belt with a respiration sensor around the upper abdomen, and wears earbuds for audio feedback. The device monitors the breathing rate, calculates inspiration and expiration times, and generates a personalized melody of two distinct ascending and descending tones for inhalation versus exhalation. Users effortlessly entrain their breathing pattern with the tones, and the device gradually guides the user to a prolonged expiration time and slower respiratory rate (to < 10 breaths/minute). The device automatically stores usage data, allowing for quantification of adherence and performance.

Other names: RESPeRATE

Sham DGB

Device

The sham device is identical to the DGB device, except it does not guide respiratory rates to slow down and instead maintains a rate of 14 breaths per minute. The sham device is used for 15 minutes per day for 8 weeks.

Transcutaneous Vagal Nerve Stimulation (tVNS)

Device

tVNS is a noninvasive method that involves placing a device over the skin overlying the vagus nerve on the neck. The device delivers mild electrical stimulation, using transcutaneous electrical nerve stimulation (TENS) unit. The stimulation is increased until there is a vibration and slight muscle contraction in the lower face or neck. Then the stimulation is delivered for 2 minutes on the left side of the neck, and on the right side of the neck, for a total of 4 minutes. The tVNS device is used twice daily for 8 weeks.

Other names: gammaCore

Sham tVNS

Device

Sham stimulation is delivered using a device that is identical to the gammaCore device but is programed to deliver a lower frequency that can be felt by the participant but does not actually stimulate the vagus nerve. The sham device is used twice daily for 8 weeks.

Primary outcomes

  1. Change in Muscle Sympathetic Nerve Activity (MSNA) Burst Frequency at Rest

    Time frame: Baseline, Week 8

    MSNA is assessed with microneurography where a tungsten microelectrode inserted in the nerve records sympathetic nerve activity.

  2. Change in Baroreflex Sensitivity (BRS) at Rest

    Time frame: Baseline, Week 8

    Arterial baroreflex sensitivity (BRS) will be tested using pharmacologic manipulation of blood pressure at rest. BRS is assessed by measuring changes in MSNA and heart rate during arterial blood pressure changes induced by nitroprusside and phenylephrine.

  3. Change in MSNA Burst Frequency While Under Mental Stress

    Time frame: Baseline, Week 8

    Mental stress will be induced by having participants complete mental arithmetic and with a combat virtual reality clip.

  4. Change in BRS While Under Mental Stress

    Time frame: Baseline, Week 8

    Mental stress will be induced by having participants complete mental arithmetic and with a combat virtual reality clip. Arterial baroreflex sensitivity (BRS) will be tested using pharmacologic manipulation of blood pressure at rest and during mental stress.

Secondary outcomes

  1. Endothelial Function

    Time frame: Baseline, Week 8

    Endothelial Function will be measured using peripheral arterial tonometry.

  2. Vascular Stiffness

    Time frame: Baseline, Week 8

    Vascular stiffness will be measured noninvasively using pulse wave analysis and pulse wave velocity.

Study contacts

Contact information is provided by the study sponsor or research team.

Deirdre Dixon, MS

CONTACT

[email protected]

404-321-6111 ext. 207040

Jeanie Park, MD

CONTACT

404-321-6111 ext. 207070

Sponsors and collaborators

Lead sponsor

Emory University

Other

Collaborators

  • US Department of Veterans Affairs

Registry information

Official study title

Mechanisms of Sympathetic Overactivity in Post-traumatic Stress Disorder

Acronym: SO-PTSD

Important dates

Study start
2012
Primary completion
2027
Study completion
2027
First posted
Jun 25, 2012
Registry last updated
Jan 15, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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