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Autonomic regulation and vagal tone

Heart rate variability, the vagus and calm.

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المكتبة البحثية1,007 works held

Peer-reviewed work held with its DOI and abstract, labelled with the study design its publication types report. None of it has been read or assessed, so nothing here may be cited as showing anything. Retracted work is held for the record but never listed; a review that a later version replaced is listed under its replacement and marked.

10.1097/psy.0b013e3181b8bb7aPsychosomatic medicine (2009)MEDLINE-indexed journal, not yet read by us; matched on Vagus Nerve, Autonomic Nervous System, Heart Rate, Baroreflex, heart rate variability, Electrocardiography, Heart, Sympathetic Nervous System

Autonomy of autonomic dysfunction in major depression.: Objective: To investigate cardiac autonomic dysfunction in patients with major depressive disorder (MDD). Research in this area has faced several limitations because of the heterogeneity of the disease, the influence of medication, and methodological shortcomings. Methods: Participants were 75 patients suffering from an acute recurrent episode of MDD and 75 matched controls. All participants were assessed at baseline for linear and nonlinear parameters of heart rate variability, QT variability a

10.1016/j.brs.2017.05.006Brain stimulation (2017)MEDLINE-indexed journal, not yet read by us; matched on Vagus Nerve, Vagus Nerve Stimulation, Heart Rate, Baroreflex, Autonomic Nervous System, Transcutaneous Electric Nerve Stimulation, Sympathetic Nervous System

Non-invasive vagus nerve stimulation acutely improves spontaneous cardiac baroreflex sensitivity in healthy young men: A randomized placebo-controlled trial.: Background: Despite positive outcomes of transcutaneous vagus nerve stimulation (tVNS) via the auricular branch of the vagus nerve (ABVN), the mechanisms underlying these outcomes remain unclear. Additionally, previous studies have not been controlled the possible placebo effects of tVNS. Objective: To test the hypothesis that tVNS acutely improves spontaneous cardiac baroreflex sensitivity (cBRS) and autonomic modulation, and that these effects are specific to stimulation of ABVN. Methods: Thir

10.1016/j.brs.2014.07.031Brain stimulation (2014)MEDLINE-indexed journal, not yet read by us; matched on Vagus Nerve, Heart Rate, Respiratory Rate, heart rate variability, Vagus Nerve Stimulation, Sympathetic Nervous System, Transcutaneous Electric Nerve Stimulation, Sympathetic Nervous System

Non-invasive vagus nerve stimulation in healthy humans reduces sympathetic nerve activity.: Background: Vagus nerve stimulation (VNS) is currently used to treat refractory epilepsy and is being investigated as a potential therapy for a range of conditions, including heart failure, tinnitus, obesity and Alzheimer's disease. However, the invasive nature and expense limits the use of VNS in patient populations and hinders the exploration of the mechanisms involved. Objective: We investigated a non-invasive method of VNS through electrical stimulation of the auricular branch of the vagus n

10.18632/aging.102074Aging (2019)MEDLINE-indexed journal, not yet read by us; matched on Vagus Nerve Stimulation, Heart Rate, Baroreflex, heart rate variability, vagal tone, Autonomic Nervous System, Transcutaneous Electric Nerve Stimulation

Effects of transcutaneous vagus nerve stimulation in individuals aged 55 years or above: potential benefits of daily stimulation.: Ageing is associated with attenuated autonomic function. Transcutaneous vagal nerve stimulation (tVNS) improved autonomic function in healthy young participants. We therefore investigated the effects of a single session of tVNS (studies 1 and 2) and tVNS administered daily for two weeks (study 3) in volunteers aged ≥ 55 years. tVNS was performed using modified surface electrodes on the tragus and connected to a transcutaneous electrical nerve stimulation (TENS) machine. Study 1: participants (n=

10.1111/nmo.12760Neurogastroenterology and motility (2016)MEDLINE-indexed journal, not yet read by us; matched on Vagus Nerve, Vagus Nerve Stimulation, Heart Rate, Vagus Nerve, vagal tone

Modulation of vagal tone enhances gastroduodenal motility and reduces somatic pain sensitivity.: Background: The parasympathetic nervous system, whose main neural substrate is the vagus nerve, exerts a fundamental antinociceptive role and influences gastrointestinal sensori-motor function. Our research question was to whether combined electrical and physiological modulation of vagal tone, using transcutaneous electrical vagal nerve stimulation (t-VNS) and deep slow breathing (DSB) respectively, could increase musculoskeletal pain thresholds and enhance gastroduodenal motility in healthy sub

10.1016/j.neubiorev.2016.03.007Neuroscience and biobehavioral reviews (2016)MEDLINE-indexed journal, not yet read by us; matched on Autonomic Nervous System, Heart Rate, Vagus Nerve, heart rate variability, Autonomic Nervous System, Heart Rate, Parasympathetic Nervous System

Sex differences in healthy human heart rate variability: A meta-analysis.: The present meta-analysis aimed to quantify current evidence on sex differences in the autonomic control of the heart, indexed by measures of heart rate variability (HRV) in healthy human subjects. An extensive search of the literature yielded 2020 titles and abstracts, of which 172 provided sufficient reporting of sex difference in HRV. Data from 63,612 participants (31,970 females) were available for analysis. Meta-analysis yielded a total of 1154 effect size estimates (k) across 50 different

Research library, full list

651 to 675 of 1,007
Thireau J, Zhang BL, Poisson D, Babuty D (2008)MEDLINE-indexed journal, not yet read by usExperimental physiology160 citations

Heart rate variability in mice: a theoretical and practical guide.

The mouse is the animal model principally used to study biological processes in mammals. The mutation, overexpression or knockout of one or several genes can provide insight into human disease. In cardiovascular research, evaluation of autonomic nervous function is an essential tool for a better understanding of the pathophysiological conditions in which cardiomyopathy arises and develops. Analysis of heart rate variability is the least invasive method to evaluate the sympathovagal balance on the sino-atrial level. The need to perform this technique on freely moving mice emerged in the 1990s, but despite previous studies it has been difficult to set up and standardize a common protocol. The multitudes of techniques used, plus subtle differences in methodology, impede the comparison and clear interpretation of results. This article aims to make a survey of heart rate variability analysis

matched on Heart Rate (mesh), heart rate variability (text), Electrocardiography (mesh)

Zhang J (2007)MEDLINE-indexed journal, not yet read by usJournal of manipulative and physiological therapeutics149 citations

Effect of age and sex on heart rate variability in healthy subjects.

Objective: The study aimed to investigate the effect of age and sex on the heart rate variability (HRV) analysis and to explore the normal range of HRV in different age and sex groups for potential health care applications. Method: Baseline HRV, age, and sex data were collected from 470 subjects without cardiovascular conditions. Short-term HRV was recorded using Biocom Active ECG units (Biocom, Seattle, Wash). Subjects were divided by age into 10-year intervals and by sex for HRV analysis. Results: Total power, representing the overall autonomic activity, decreased consistently from the age groups 10+ to 80+ years (P < .001). Both the low frequency (sympathetic activity) and high frequency (parasympathetic activity) declined (P < .05) as age increased. Sex had a significant effect on heart rate, R-R interval, high frequency, normalized low frequency, normalized high frequency, and low f

matched on Heart Rate (mesh), heart rate variability (text), Electrocardiography (mesh)

Pinna GD, Maestri R, Torunski A, Danilowicz-Szymanowicz L, Szwoch M, La Rovere MT, Raczak G (2007)MEDLINE-indexed journal, not yet read by usClinical science (London, England : 1979)169 citations

Heart rate variability measures: a fresh look at reliability.

Despite its extensive use in physiological and clinical research, the analysis of HRV (heart rate variability) is still poorly supported by rigorous reliability studies. The main aim of the present study was to perform an in-depth assessment of absolute and relative reliability of standard indexes of HRV from short-term laboratory recordings. In 39 healthy subjects [mean age (min-max): 38 (26-56) years; 18 men and 21 women] we recorded 5 min of supine ECG during spontaneous and paced (15 breaths/min) breathing. The test was repeated on the next day under the same conditions. From the RR intervals we computed standard indexes of HRV: SDNN (S.D. of RR interval values), RMSSD (root-mean-square of successive RR interval differences), LF (low frequency) and HF (high frequency) power (absolute and normalized units) and LF/HF. Absolute reliability was assessed by 95% limits of random variation;

matched on Heart Rate (mesh), heart rate variability (text), Electrocardiography (mesh)

Tanaka S, Abe C, Abbott SBG, Zheng S, Yamaoka Y, Lipsey JE, Skrypnyk NI, Yao J, Inoue T, Nash WT, Stornetta DS, Rosin DL, Stornetta RL, Guyenet PG, Okusa MD (2021)MEDLINE-indexed journal, not yet read by usProceedings of the National Academy of Sciences of the United States of America104 citations

Vagus nerve stimulation activates two distinct neuroimmune circuits converging in the spleen to protect mice from kidney injury.

Acute kidney injury is highly prevalent and associated with high morbidity and mortality, and there are no approved drugs for its prevention and treatment. Vagus nerve stimulation (VNS) alleviates inflammatory diseases including kidney disease; however, neural circuits involved in VNS-induced tissue protection remain poorly understood. The vagus nerve, a heterogeneous group of neural fibers, innervates numerous organs. VNS broadly stimulates these fibers without specificity. We used optogenetics to selectively stimulate vagus efferent or afferent fibers. Anterograde efferent fiber stimulation or anterograde (centripetal) sensory afferent fiber stimulation both conferred kidney protection from ischemia-reperfusion injury. We identified the C1 neurons-sympathetic nervous system-splenic nerve-spleen-kidney axis as the downstream pathway of vagus afferent fiber stimulation. Our study provide

matched on Vagus Nerve Stimulation (mesh), Sympathetic Nervous System (mesh), Sympathetic Nervous System (keyword)

Meyers EC, Solorzano BR, James J, Ganzer PD, Lai ES, Rennaker RL, Kilgard MP, Hays SA (2018)MEDLINE-indexed journal, not yet read by usStroke184 citations

Vagus Nerve Stimulation Enhances Stable Plasticity and Generalization of Stroke Recovery.

Background and purpose: Chronic impairment of the arm and hand is a common consequence of stroke. Animal and human studies indicate that brief bursts of vagus nerve stimulation (VNS) in conjunction with rehabilitative training improve recovery of motor function after stroke. In this study, we tested whether VNS could promote generalization, long-lasting recovery, and structural plasticity in motor networks. Methods: Rats were trained on a fully automated, quantitative task that measures forelimb supination. On task proficiency, unilateral cortical and subcortical ischemic lesions were administered. One week after ischemic lesion, rats were randomly assigned to receive 6 weeks of rehabilitative training on the supination task with or without VNS. Rats then underwent 4 weeks of testing on a task assessing forelimb strength to test generalization of recovery. Finally, the durability of VNS

matched on Vagus Nerve Stimulation (mesh), Vagus Nerve (keyword)

Farrand AQ, Helke KL, Gregory RA, Gooz M, Hinson VK, Boger HA (2017)MEDLINE-indexed journal, not yet read by usBrain stimulation98 citations

Vagus nerve stimulation improves locomotion and neuronal populations in a model of Parkinson's disease.

Background: Parkinson's disease (PD) is a progressive, neurodegenerative disorder with no disease-modifying therapies, and symptomatic treatments are often limited by debilitating side effects. In PD, locus coeruleus noradrenergic (LC-NE) neurons degenerate prior to substantia nigra dopaminergic (SN-DA) neurons. Vagus nerve stimulation (VNS) activates LC neurons, and decreases pro-inflammatory markers, allowing improvement of LC targets, making it a potential PD therapeutic. Objective: To assess therapeutic potential of VNS in a PD model. Methods: To mimic the progression of PD degeneration, rats received a systemic injection of noradrenergic neurotoxin DSP-4, followed one week later by bilateral intrastriatal injection of dopaminergic neurotoxin 6-hydroxydopamine. At this time, a subset of rats also had vagus cuffs implanted. After eleven days, rats received a precise VNS regimen twice

matched on Vagus Nerve Stimulation (mesh), Vagus Nerve (keyword)

Khodaparast N, Kilgard MP, Casavant R, Ruiz A, Qureshi I, Ganzer PD, Rennaker RL, Hays SA (2016)MEDLINE-indexed journal, not yet read by usNeurorehabilitation and neural repair115 citations

Vagus Nerve Stimulation During Rehabilitative Training Improves Forelimb Recovery After Chronic Ischemic Stroke in Rats.

Background and objective: Stroke is a leading cause of long-term disability. Currently, there are no consistently effective rehabilitative treatments for chronic stroke patients. Our recent studies demonstrate that vagus nerve stimulation (VNS) paired with rehabilitative training improves recovery of function in multiple models of stroke. Here, we evaluated the ability of VNS paired with rehabilitative training to improve recovery of forelimb strength when initiated many weeks after a cortical and subcortical ischemic lesion in subjects with stable, chronic motor deficits. Methods: Rats were trained to perform an automated, quantitative measure of voluntary forelimb strength. Once proficient, rats received injections of endothelin-1 to cause a unilateral cortical and subcortical ischemic lesion. Then, 6 weeks after the lesion, rats underwent rehabilitative training paired with VNS (Paire

matched on Vagus Nerve Stimulation (mesh), Vagus Nerve (keyword)

Oshinsky ML, Murphy AL, Hekierski H, Cooper M, Simon BJ (2014)MEDLINE-indexed journal, not yet read by usPain118 citations

Noninvasive vagus nerve stimulation as treatment for trigeminal allodynia.

Implanted vagus nerve stimulation (VNS) has been used to treat seizures and depression. In this study, we explored the mechanism of action of noninvasive vagus nerve stimulation (nVNS) for the treatment of trigeminal allodynia. Rats were repeatedly infused with inflammatory mediators directly onto the dura, which led to chronic trigeminal allodynia. Administration of nVNS for 2 minutes decreased periorbital sensitivity in rats with periorbital trigeminal allodynia for up to 3.5 hours after stimulation. Using microdialysis, we quantified levels of extracellular neurotransmitters in the trigeminal nucleus caudalis (TNC). Allodynic rats showed a 7.7±0.9-fold increase in extracellular glutamate in the TNC after i.p. administration of the chemical headache trigger glyceryl trinitrate (GTN; 0.1 mg/kg). Allodynic rats that received nVNS had only a 2.3±0.4-fold increase in extracellular glutamat

matched on Vagus Nerve Stimulation (mesh), Vagus Nerve (keyword)

Hays SA, Khodaparast N, Hulsey DR, Ruiz A, Sloan AM, Rennaker RL, Kilgard MP (2014)MEDLINE-indexed journal, not yet read by usStroke133 citations

Vagus nerve stimulation during rehabilitative training improves functional recovery after intracerebral hemorrhage.

Background and purpose: Vagus nerve stimulation (VNS) delivered during rehabilitative training enhances neuroplasticity and improves recovery in models of cortical ischemic stroke. However, VNS therapy has not been applied in a model of subcortical intracerebral hemorrhage (ICH). We hypothesized that VNS paired with rehabilitative training after ICH would enhance recovery of forelimb motor function beyond rehabilitative training alone. Methods: Rats were trained to perform an automated, quantitative measure of forelimb function. Once proficient, rats received an intrastriatal injection of bacterial collagenase to induce ICH. Rats then underwent VNS paired with rehabilitative training (VNS+Rehab; n=14) or rehabilitative training without VNS (Rehab; n=12). Rehabilitative training began ≥9 days after ICH and continued for 6 weeks. Results: VNS paired with rehabilitative training significant

matched on Vagus Nerve Stimulation (mesh), Vagus Nerve (keyword)

Rijken NH, Soer R, de Maar E, Prins H, Teeuw WB, Peuscher J, Oosterveld FG (2016)editorial or commentMEDLINE-indexed journal, not yet read by usApplied psychophysiology and biofeedback32 citations

Increasing Performance of Professional Soccer Players and Elite Track and Field Athletes with Peak Performance Training and Biofeedback: A Pilot Study.

The aim of this pilot study was to investigate the effects of an intervention consisting of mental coaching combined with either electro encephalogram (EEG) alpha power feedback or heart rate variability (HRV) feedback on HRV, EEG outcomes and self-reported factors related to stress, performance, recovery and sleep quality in elite athletes. A prospective pilot study was performed with two distinct cohorts. Soccer players were provided with four sessions of mental coaching combined with daily HRV biofeedback (Group A); track and field athletes were provided with four sessions of mental coaching in combination with daily neurofeedback (Group B). Measurements were performed at baseline, post intervention and at 5 weeks follow-up. Objective measures: EEG and ECG. Subjective measures: Numeric Rating Scale for performance, Pittsburgh Sleep Quality Index, Rest and Stress Questionnaire and Spor

matched on Heart Rate (mesh), heart rate variability (text)

Zickfeld JH, Arriaga P, Santos SV, Schubert TW, Seibt B (2020)MEDLINE-indexed journal, not yet read by usPsychophysiology17 citations

Tears of joy, aesthetic chills and heartwarming feelings: Physiological correlates of Kama Muta.

Situations involving increased closeness or exceptional kindness are often labeled as moving or touching and individuals often report bodily symptoms, including tears, goosebumps, and warmth in the body. Recently, the kama muta framework has been proposed as a cross-cultural conceptualization of these experiences. Prior research on kama muta has mostly relied on subjective reports. Thus, our main goal of the present project was to examine the pattern of physiological responses to kama muta inducing videos and compare it to the patterns for the similar, though distinct emotions of sadness and awe. One hundred forty-four Portuguese and Norwegian participants were individually exposed to all three emotion conditions. Several psychophysiological indexes of the autonomic nervous system were collected continuously during exposure, including cardiovascular, respiratory, and electrodermal activi

matched on Autonomic Nervous System (mesh), heart rate variability (text)

Kovács K, Kis A, Kanizsár O, Hernádi A, Gácsi M, Topál J (2016)MEDLINE-indexed journal, not yet read by usAnimal cognition36 citations

The effect of oxytocin on biological motion perception in dogs (Canis familiaris).

Recent studies have shown that the neuropeptide oxytocin is involved in the regulation of several complex human social behaviours. There is, however, little research on the effect of oxytocin on basic mechanisms underlying human sociality, such as the perception of biological motion. In the present study, we investigated the effect of oxytocin on biological motion perception in dogs (Canis familiaris), a species adapted to the human social environment and thus widely used to model many aspects of human social behaviour. In a within-subjects design, dogs (N = 39), after having received either oxytocin or placebo treatment, were presented with 2D projection of a moving point-light human figure and the inverted and scrambled version of the same movie. Heart rate (HR) and heart rate variability (HRV) were measured as physiological responses, and behavioural response was evaluated by observin

matched on Heart Rate (mesh), heart rate variability (text), Heart Rate (keyword)

Makovac E, Makovac E, Watson DR, Meeten F, Garfinkel SN, Cercignani M, Critchley HD, Ottaviani C (2016)MEDLINE-indexed journal, not yet read by usSocial cognitive and affective neuroscience47 citations

Amygdala functional connectivity as a longitudinal biomarker of symptom changes in generalized anxiety.

Generalized anxiety disorder (GAD) is characterized by excessive worry, autonomic dysregulation and functional amygdala dysconnectivity, yet these illness markers have rarely been considered together, nor their interrelationship tested longitudinally. We hypothesized that an individual's capacity for emotion regulation predicts longer-term changes in amygdala functional connectivity, supporting the modification of GAD core symptoms. Sixteen patients with GAD (14 women) and individually matched controls were studied at two time points separated by 1 year. Resting-state fMRI data and concurrent measurement of vagally mediated heart rate variability were obtained before and after the induction of perseverative cognition. A greater rise in levels of worry following the induction predicted a stronger reduction in connectivity between right amygdala and ventromedial prefrontal cortex, and enha

matched on Autonomic Nervous System (mesh), heart rate variability (text)

Fonoberova M, Mezić I, Buckman JF, Fonoberov VA, Mezić A, Vaschillo EG, Mun EY, Vaschillo B, Bates ME (2014)MEDLINE-indexed journal, not yet read by usAmerican journal of physiology. Heart and circulatory physiology20 citations

A computational physiology approach to personalized treatment models: the beneficial effects of slow breathing on the human cardiovascular system.

Heart rate variability biofeedback intervention involves slow breathing at a rate of ∼6 breaths/min (resonance breathing) to maximize respiratory and baroreflex effects on heart period oscillations. This intervention has wide-ranging clinical benefits and is gaining empirical support as an adjunct therapy for biobehavioral disorders, including asthma and depression. Yet, little is known about the system-level cardiovascular changes that occur during resonance breathing or the extent to which individuals differ in cardiovascular benefit. This study used a computational physiology approach to dynamically model the human cardiovascular system at rest and during resonance breathing. Noninvasive measurements of heart period, beat-to-beat systolic and diastolic blood pressure, and respiration period were obtained from 24 healthy young men and women. A model with respiration as input was parame

matched on Baroreflex (mesh), heart rate variability (text), Heart (mesh)

Sun P, Zhou K, Wang S, Li P, Chen S, Lin G, Zhao Y, Wang T (2013)MEDLINE-indexed journal, not yet read by usPloS one147 citations

Involvement of MAPK/NF-κB signaling in the activation of the cholinergic anti-inflammatory pathway in experimental colitis by chronic vagus nerve stimulation.

Background: Autonomic nervous system dysfunction is implicated in the etiopathogenesis of inflammatory bowel diseases (IBD). Therapies that increase cardiovagal activity, such as Mind-Body interventions, are currently confirmed to be effective in clinical trials in IBD. However, a poor understanding of pathophysiological mechanisms limits the popularization of therapies in clinical practice. The aim of the present study was to explore the mechanisms of these therapies against 2,4,6-trinitrobenzenesulfonic acid (TNBS)-induced colitis in rats using a chronic vagus nerve stimulation model in vivo, as well as the lipopolysaccharide (LPS)-induced inflammatory response in human epithelial colorectal adenocarcinoma cells (Caco-2) by acetylcholine in vitro. Methods and results: Colitis was induced in rats with rectal instillation of TNBS, and the effect of chronic VNS (0.25 mA, 20 Hz, 500 ms) on

matched on Vagus Nerve Stimulation (mesh), heart rate variability (text)

Tang YY, Ma Y, Fan Y, Feng H, Wang J, Feng S, Lu Q, Hu B, Lin Y, Li J, Zhang Y, Wang Y, Zhou L, Fan M (2009)MEDLINE-indexed journal, not yet read by usProceedings of the National Academy of Sciences of the United States of America350 citations

Central and autonomic nervous system interaction is altered by short-term meditation.

Five days of integrative body-mind training (IBMT) improves attention and self-regulation in comparison with the same amount of relaxation training. This paper explores the underlying mechanisms of this finding. We measured the physiological and brain changes at rest before, during, and after 5 days of IBMT and relaxation training. During and after training, the IBMT group showed significantly better physiological reactions in heart rate, respiratory amplitude and rate, and skin conductance response (SCR) than the relaxation control. Differences in heart rate variability (HRV) and EEG power suggested greater involvement of the autonomic nervous system (ANS) in the IBMT group during and after training. Imaging data demonstrated stronger subgenual and adjacent ventral anterior cingulate cortex (ACC) activity in the IBMT group. Frontal midline ACC theta was correlated with high-frequency HR

matched on Autonomic Nervous System (mesh), heart rate variability (text)

Karalunas SL, Fair D, Musser ED, Aykes K, Iyer SP, Nigg JT (2014)MEDLINE-indexed journal, not yet read by usJAMA psychiatry258 citations

Subtyping attention-deficit/hyperactivity disorder using temperament dimensions: toward biologically based nosologic criteria.

Importance: Psychiatric nosology is limited by behavioral and biological heterogeneity within existing disorder categories. The imprecise nature of current nosologic distinctions limits both mechanistic understanding and clinical prediction. We demonstrate an approach consistent with the National Institute of Mental Health Research Domain Criteria initiative to identify superior, neurobiologically valid subgroups with better predictive capacity than existing psychiatric categories for childhood attention-deficit/hyperactivity disorder (ADHD). Objective: To refine subtyping of childhood ADHD by using biologically based behavioral dimensions (i.e., temperament), novel classification algorithms, and multiple external validators. Design, setting, and participants: A total of 437 clinically well-characterized, community-recruited children, with and without ADHD, participated in an ongoing lon

matched on Heart Rate (mesh), respiratory sinus arrhythmia (text), Electrocardiography (mesh)

Butler EA, Wilhelm FH, Gross JJ (2006)MEDLINE-indexed journal, not yet read by usPsychophysiology291 citations

Respiratory sinus arrhythmia, emotion, and emotion regulation during social interaction.

Respiratory sinus arrhythmia (RSA) figures prominently in emotional responding, but its exact role remains unclear. The present study tests two hypotheses: (1) Between-person differences in resting RSA are related to emotional reactivity, and (2) within-person changes in RSA are related to regulatory efforts. Pairs of women watched an upsetting film and discussed it. One woman in each of the experimental dyads was asked to either suppress or to reappraise during the conversation. Their partners and both members of the control dyads conversed naturally. Between-person differences in resting RSA were assessed with paced breathing, and within-person changes in RSA were calculated from baseline to the conversation accounting for respiration. Women with higher resting RSA experienced and expressed more negative emotion, and women who attempted to regulate their emotions either by suppressing

matched on Heart Rate (mesh), respiratory sinus arrhythmia (text), Electrocardiography (mesh)

Billman GE (2011)MEDLINE-indexed journal, not yet read by usFrontiers in physiology433 citations

Heart rate variability - a historical perspective.

Heart rate variability (HRV), the beat-to-beat variation in either heart rate or the duration of the R-R interval - the heart period, has become a popular clinical and investigational tool. The temporal fluctuations in heart rate exhibit a marked synchrony with respiration (increasing during inspiration and decreasing during expiration - the so called respiratory sinus arrhythmia, RSA) and are widely believed to reflect changes in cardiac autonomic regulation. Although the exact contributions of the parasympathetic and the sympathetic divisions of the autonomic nervous system to this variability are controversial and remain the subject of active investigation and debate, a number of time and frequency domain techniques have been developed to provide insight into cardiac autonomic regulation in both health and disease. It is the purpose of this essay to provide an historical overview of t

matched on heart rate variability (text), Autonomic Nervous System (keyword), respiratory sinus arrhythmia (text)

Gao W, Nagai Y, Silvanto J (2025)MEDLINE-indexed journal, not yet read by usNeuropsychologia4 citations

Autonomic, neurodevelopmental, and early adversity correlates of acquired aphantasia.

Aphantasia (the inability to voluntarily generate mental imagery) has traditionally been studied as a congenital or neurological condition. However, historical and clinical reports also implicate affective and stress-related factors in the onset of imagery loss, which are themselves associated with disrupted interoception and autonomic nervous system dysfunction. To investigate these links, we surveyed individuals with self-identified acquired aphantasia (N = 59) using structured questions and validated questionnaires assessing early adversity (Childhood Trauma Questionnaire), anxiety symptoms (GAD-7), autonomic reactivity (Body Perception Questionnaire-Short Form; Atrial Fibrillation Symptoms Questionnaire), and neurodevelopmental traits (AQ-10, ASRS-6). 62 % of participants reported psychological triggers for their aphantasia, 41 % cited neurological or physiological events, and 30 % i

matched on Autonomic Nervous System (mesh), Autonomic Nervous System (keyword)

Dynamic autonomic nervous system states arise during emotions and manifest in basal physiology.

The outflow of the autonomic nervous system (ANS) is continuous and dynamic, but its functional organization is not well understood. Whether ANS patterns accompany emotions, or arise in basal physiology, remain unsettled questions in the field. Here, we searched for brief ANS patterns amidst continuous, multichannel physiological recordings in 45 healthy older adults. Participants completed an emotional reactivity task in which they viewed video clips that elicited a target emotion (awe, sadness, amusement, disgust, or nurturant love); each video clip was preceded by a pre-trial baseline period and followed by a post-trial recovery period. Participants also sat quietly for a separate 2-min resting period to assess basal physiology. Using principal components analysis and unsupervised clustering algorithms to reduce the second-by-second physiological data during the emotional reactivity t

matched on Autonomic Nervous System (mesh), Autonomic Nervous System (keyword)

Al E, Iliopoulos F, Forschack N, Nierhaus T, Grund M, Motyka P, Gaebler M, Nikulin VV, Villringer A (2020)MEDLINE-indexed journal, not yet read by usProceedings of the National Academy of Sciences of the United States of America219 citations

Heart-brain interactions shape somatosensory perception and evoked potentials.

Even though humans are mostly not aware of their heartbeats, several heartbeat-related effects have been reported to influence conscious perception. It is not clear whether these effects are distinct or related phenomena, or whether they are early sensory effects or late decisional processes. Combining electroencephalography and electrocardiography, along with signal detection theory analyses, we identify two distinct heartbeat-related influences on conscious perception differentially related to early vs. late somatosensory processing. First, an effect on early sensory processing was found for the heartbeat-evoked potential (HEP), a marker of cardiac interoception. The amplitude of the prestimulus HEP negatively correlated with localization and detection of somatosensory stimuli, reflecting a more conservative detection bias (criterion). Importantly, higher HEP amplitudes were followed b

matched on Heart Rate (mesh), Electrocardiography (mesh), Heart (mesh)

Ali N, Nater UM (2020)MEDLINE-indexed journal, not yet read by usInternational journal of behavioral medicine195 citations

Salivary Alpha-Amylase as a Biomarker of Stress in Behavioral Medicine.

In recent years, research in behavioral medicine has become increasingly focused on understanding how chronic and acute exposure to stress impacts health outcomes. During stress, the body's physiological stress systems are activated. These systems closely interact with the immune system and are, thus, importantly implicated in the onset and maintenance of disease states. While much of the research in behavioral medicine that has investigated the effects of stress on disease has focused on the role of the hypothalamic-pituitary-adrenal axis and its downstream biomarker, cortisol, it is evident that the autonomic nervous system (ANS) also plays a crucial role in both the biological stress process and the manifestation and maintenance of stress-related symptoms. In recent years salivary alpha-amylase (sAA) has emerged as a valid and reliable marker of ANS activity in stress research and is

matched on Autonomic Nervous System (mesh), Autonomic Nervous System (keyword)

Meissner K, Wittmann M (2011)MEDLINE-indexed journal, not yet read by usBiological psychology100 citations

Body signals, cardiac awareness, and the perception of time.

Recent research suggests that our sense of time intervals in the range of seconds is directly related to activity in the insular cortex, which contains the primary sensory area for interoception. We therefore investigated whether performance in a duration reproduction task might correlate with individual interoceptive awareness and with measurable changes in autonomic activity during the task. Thirty-one healthy volunteers participated in an interoceptive (heartbeat) perception task and in repeated temporal reproduction trials using intervals of 8, 14, and 20s duration while skin conductance levels and cardiac and respiratory periods were recorded. We observed progressive increases in cardiac periods and decreases in skin conductance level during the encoding and (less reliably) the reproduction of these intervals. Notably, individuals' duration reproduction accuracy correlated positivel

matched on Heart Rate (mesh), Electrocardiography (mesh), Heart (mesh)

Buchheit M, Chivot A, Parouty J, Mercier D, Al Haddad H, Laursen PB, Ahmaidi S (2010)MEDLINE-indexed journal, not yet read by usEuropean journal of applied physiology175 citations

Monitoring endurance running performance using cardiac parasympathetic function.

The aims of the present study were to (1) assess relationships between running performance and parasympathetic function both at rest and following exercise, and (2) examine changes in heart rate (HR)-derived indices throughout an 8-week period training program in runners. In 14 moderately trained runners (36 +/- 7 years), resting vagal-related HR variability (HRV) indices were measured daily, while exercise HR and post-exercise HR recovery (HRR) and HRV indices were measured fortnightly. Maximal aerobic speed (MAS) and 10 km running performance were assessed before and after the training intervention. Correlations (r > 0.60, P < 0.01) were observed between changes in vagal-related indices and changes in MAS and 10 km running time. Exercise HR decreased progressively during the training period (P < 0.01). In the 11 subjects who lowered their 10 km running time >0.5% (responders), resting

matched on Heart Rate (mesh), Heart (mesh), Parasympathetic Nervous System (mesh)