University of Pittsburgh
Pittsburgh, Pennsylvania, 15213, United States
NCT Number: NCT03841669
eBACH is a randomized intervention to determine the effects of aerobic exercise on brain structure and function, as well as to determine how exercise-induced training effects relate to cardiovascular function via related brain changes.
Looking for future studies?
Notify Me26 year–58 year
All sexes
Interventional
Not applicable
Pittsburgh, Pennsylvania, 15213, United States
Aim 1: To determine the neurobiology of exercise and cardiovascular factors: (1A) Body- to -Brain hypothesis: Exercise -induced changes in peripheral markers of cardiovascular health (e.g., cardiorespiratory fitness, peripheral vascular function) will precede and partly explain (statistically mediate) some of the exercise -induced changes in functional and structural features of areas defining visceral control circuits. (1B) Brain- to -Body hypothesis: Exercise -induced changes in functional and structural features of areas defining visceral control circuits precede and partly explain (statistically mediate) consequent changes in autonomic and neuroendocrine mediators of cardiovascular function that are under neural regulation, including baro-reflex sensitivity and heart rate variability. Aim 2: To determine the neurobiology of exercise self--reported correlates of cardiovascular function: (2A) Exercise will induce changes in visceral control areas engaged by functional magnetic resonance imaging (fMRI) tasks, and these changes will partly explain exercise- induced reductions in cardiovascular responsivity to challenges in daily life. (2B) Exercise will induce changes in visceral control areas engaged by an functional magnetic resonance imaging (fMRI) emotion processing and regulation paradigm, and these changes will partly explain exercise- induced improvements in affect measured in daily life by EMA and by conventional self- report instruments. The public health significance of this research is that it is designed to more precisely define and refine neurobiological targets to improve cardiovascular function and health.
Because of disruptions due to COVID-19, the study was placed into a compromised position that required conservation of funds and resources, resulting in a narrowing of focus and an abbreviated assessment protocol that limited the scale and scope of the longitudinal assessments and also reduced the sample size. As such, several of the secondary outcomes that were pre-specified were moved to "other pre-specified" during the course of the project.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Guidelines for exercise programming (ACSM, 2018) will be followed including a warm up and cool down, progressive and gradual increments in duration, and instruction regarding avoidance of physical activity related injury. The exercise group will receive moderate to vigorous intensity aerobic exercise targeting 150 minutes per week for 12 months. The group will target dividing these minutes into 3 exercise sessions a week. The prescribed intensity will be based on their maximal fitness testing heart rate and then calculated per a research grade method. They will maintain a minimum heart rate from their specific calculation that will be monitored by Polar Heart Rate straps.
This group will not partake in the aerobic fitness sessions but will be asked to wear a daily monitoring device every 6 weeks. They will also complete all baseline, 6-month (optional), and 12-month visits.
Time frame: Baseline & 12 months
Magnetic Resonance Imaging (MRI) will be used to measure the structure of the brain. Segmentation algorithms applied to structural MRI images will be used to compute the volume of the hippocampus in particular, which will be evaluated for change over the course of the trial.
Time frame: Baseline & 12 months
Average systolic blood pressure will be computed during a resting baseline period and during the performance of two behavioral tasks, (1) a Stroop color-word interference task and (2) a multi-source interference task. Mean baseline levels of systolic blood pressure will be subtracted from mean levels averaged across the two tasks to compute response scores, and changes in task-response scores will be evaluated over the course of the trial.
Time frame: Baseline & 12 months
Heart rate variability will be computed from inter-beat intervals derived from electrocardiographic recordings while participants rest in the seated position. Average heart rate variability values from the recording period will be assessed for their change over the trial. Here, we report the natural log-transformed variance of high-frequency (HF) heart rate variability.
Time frame: Baseline & 12 months
Changes in task invoked activity will be measured during an emotion regulation task.
Time frame: Baseline, 6-month (if applicable) & 12 months
Participants will complete the Emotion Regulation Questionnaire (ERQ). They rate how strongly they agree with 10 statements and emotion regulation abilities are calculated by their responses. A minimum score would be 10 and a maximum score would be 70, with 70 indicating superior emotion regulation abilities.
Time frame: Baseline, 6-month (if applicable) & 12 months
This will be calculated via the PSS 4-item scale. Scores are calculated by averaging responses from 10 questions with a minimum score of 0 and a maximum score of 40. 40 indicates more stress.
Time frame: Baseline, 6-month (if applicable) & 12 months
Participants will complete a questionnaire related to self-esteem via the Rosenberg Self Esteem Scale. All items are answered using a 4-point Likert scale format ranging from strongly agree to strongly disagree. Sum scores for all 10 items are calculated with items 2, 5, 6, 8, 9 being reverse scored. Higher scores indicate higher self-esteem.
Time frame: Baseline, 6-month (if applicable), & 12 months
An average systolic blood pressure (SBP) will be calculated for an average over all baseline, 6-month (if applicable) and 12-month visits.
Time frame: Baseline, 6-month (if applicable), & 12-month
Fitness is assessed by maximal graded exercise testing. Oxygen uptake (VO2) will be measured from expired air samples taken at 15s intervals until a peak VO2, the highest VO2, is attained at the point of test termination due to symptom limitation and/or volitional exhaustion.
Time frame: Baseline, 6-month (if applicable) & 12 month
Blood will be drawn at 3 time points throughout the intervention starting at baseline to measure changes in fasting glucose.
Time frame: Baseline, 6-month (if applicable) & 12 month
Blood will be drawn at 3 time points throughout the intervention starting at baseline to measure changes in insulin resistance.
Time frame: Baseline, 6 month (if applicable) and 12 month.
The outcome will be measured by whether the statistical mediation model that contains brain and peripheral physiological mediators is significant. By definition such a model must contain multiple outcome variables, but the outcome here isn't a measurable outcome but rather whether the statistical model with these variables reaches statistical significance.
Time frame: Baseline, 6-month (if applicable), & 12 months
An average heart rate will be calculated for an average over all baseline, 6-month (if applicable) and 12-month visits.
Time frame: Baseline & 12 months
Participants will complete several questions on a smart phone at various times throughout the day based on a prompt to learn more about positive and negative affect. An average positive and negative affect score will be computed.
Time frame: Baseline & 12 months
Participants will have their blood pressure taken while answering questions about daily stressors and an average SBP score will be computed over the course of the wear period.
Time frame: Baseline & 12 months
This will be calculated via scores from the Positive and Negative Affect Scale. Scores can range from 1 to 100, with 1 meaning less positive affect and 100 meaning more positive affect.
Time frame: Baseline & 12 months
Participants will have electrodes placed on their skin to record an EKG as well as a blood pressure cuff on their arm. BRS will be derived in part from the EKG signal.
Time frame: Baseline & 12 months
Participants will have electrodes placed on their skin to record an EKG as well as a blood pressure cuff on their arm. PWV will be derived in part from the EKG signal.
Time frame: Baseline & 12 months
Participants will have electrodes placed on their skin to record an EKG as well as a blood pressure cuff on their arm. Vasodilation (reactive hyperemia) will be derived in part from the EKG signal.
Time frame: Baseline & 12 months
MRI will be used to measure changes in brain activity including task invoked activation patterns.
Time frame: Baseline & 12 months
MRI will be used to measure changes in functional connectivity during rest.
Time frame: Baseline & 12 months
MRI will be used to measure cortical thickness. Measured in mm3.
Time frame: Baseline & 12 months
MRI will be used to measure cortical volume. Measured in mm3.
University of Pittsburgh
Other
Behavioral Studies of Cardiovascular Disease
Acronym: eBACH
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.
Published trials that share one or more normalized conditions with this study.
NCT06471569
Behavior, Body Weight
Durham, North Carolina, United States
View Trial DetailsNCT06461273
Behavior, Body Weight
Newark, New Jersey, United States
View Trial DetailsNCT03898206
Behavior, Cardiovascular Diseases
Bedford, Bedfordshire, United Kingdom
View Trial DetailsNCT07443787
Behavior, Cardiovascular Diseases
Oran, Aïn-El-Turck, Algeria
View Trial Details