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    Epicardial Fat Thickness is Correlated with Vagal Hyperactivity in Patients with Neurally-Mediated Syncope

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    https://www.riss.kr/link?id=A103671221

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Background: Epicardial fat tissue has unique endocrine and paracrine functions that affect the cardiac autonomic system. The head-up tilt test (HUTT) is a simple non-invasive measurement that assesses autonomic nervous system dysfunction. We investigated the association between epicardial fat thickness (EFT) and autonomic neural tone, such as vagal tone.
    Methods: A total of 797 consecutive patients (mean age 46.5 years, male: 45.7%) who underwent HUTT and echocardiography between March 2006 and June 2015 were enrolled. EFT was measured during the diastolic phase of the parasternal long axis view. We excluded patients with prior percutaneous coronary intervention, old age (> 70 years old), valvular heart disease, symptomatic arrhythmias and diabetes. We divided patients into two groups based on the HUTT (positive vs. negative).
    Results: There were 329 patients (41.3%) with a negative HUTT result and 468 patients (58.7%) with a positive result. The HUTT-positive patients showed a significantly lower waist circumference, body mass index and systolic and diastolic blood pressure, although a significantly higher EFT as compared to the HUTT-negative patients (HUTT-positive, 5.69 ± 1.76 mm vs. HUTT-negative, 5.24 ± 1.60 mm; p < 0.001). EFT > 5.4 mm was associated with a positive HUTT result with 51.7% sensitivity and 63.8% specificity (p < 0.001) on receiving operator characteristic analysis. Multivariate Cox regression analysis revealed that EFT (hazard ratio: 1.02, 95% confidence interval: 1.01–1.30, p = 0.004) was an independent predictor of HUTT-positivity.
    Conclsion: EFT was significantly correlated with positive HUTT, which suggests an association between EFT and autonomic dysregulation.
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    Background: Epicardial fat tissue has unique endocrine and paracrine functions that affect the cardiac autonomic system. The head-up tilt test (HUTT) is a simple non-invasive measurement that assesses autonomic nervous system dysfunction. We investiga...

    Background: Epicardial fat tissue has unique endocrine and paracrine functions that affect the cardiac autonomic system. The head-up tilt test (HUTT) is a simple non-invasive measurement that assesses autonomic nervous system dysfunction. We investigated the association between epicardial fat thickness (EFT) and autonomic neural tone, such as vagal tone.
    Methods: A total of 797 consecutive patients (mean age 46.5 years, male: 45.7%) who underwent HUTT and echocardiography between March 2006 and June 2015 were enrolled. EFT was measured during the diastolic phase of the parasternal long axis view. We excluded patients with prior percutaneous coronary intervention, old age (> 70 years old), valvular heart disease, symptomatic arrhythmias and diabetes. We divided patients into two groups based on the HUTT (positive vs. negative).
    Results: There were 329 patients (41.3%) with a negative HUTT result and 468 patients (58.7%) with a positive result. The HUTT-positive patients showed a significantly lower waist circumference, body mass index and systolic and diastolic blood pressure, although a significantly higher EFT as compared to the HUTT-negative patients (HUTT-positive, 5.69 ± 1.76 mm vs. HUTT-negative, 5.24 ± 1.60 mm; p < 0.001). EFT > 5.4 mm was associated with a positive HUTT result with 51.7% sensitivity and 63.8% specificity (p < 0.001) on receiving operator characteristic analysis. Multivariate Cox regression analysis revealed that EFT (hazard ratio: 1.02, 95% confidence interval: 1.01–1.30, p = 0.004) was an independent predictor of HUTT-positivity.
    Conclsion: EFT was significantly correlated with positive HUTT, which suggests an association between EFT and autonomic dysregulation.

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    참고문헌 (Reference)

    1 Kapoor WN, "Upright tilt testing in evaluating syncope: a comprehensive literature review" 97 : 78-88, 1994

    2 Abi-Samra F, "The usefulness of head-up tilt testing and hemodynamic investigations in the workup of syncope of unknown origin" 11 : 1202-1214, 1988

    3 Tercedor L, "The tilt-table test in assessing syncope of unknown origin: do differences exist between children and adults?" 52 : 189-195, 1999

    4 Ardell JL., "The cardiac neuronal hierarchy and susceptibility to arrhythmias" 8 : 590-591, 2011

    5 Sengul C, "The association of epicardial fat thickness with blunted heart rate recovery in patients with metabolic syndrome" 224 : 257-262, 2011

    6 Mark AL, "The Bezold-Jarisch reflex revisited: clinical implications of inhibitory reflexes originating in the heart" 1 : 90-102, 1983

    7 Wallin BG, "Sympathetic outflow to muscles during vasovagal syncope" 6 : 287-291, 1982

    8 Takanashi M, "Risk factor analysis of vasovagal reaction from blood donation" 47 : 319-325, 2012

    9 Vaddadi G, "Persistence of muscle sympathetic nerve activity during vasovagal syncope" 31 : 2027-2033, 2010

    10 Rosito GA, "Pericardial fat, visceral abdominal fat, cardiovascular disease risk factors, and vascular calcification in a community- based sample: the Framingham Heart Study" 117 : 605-613, 2008

    1 Kapoor WN, "Upright tilt testing in evaluating syncope: a comprehensive literature review" 97 : 78-88, 1994

    2 Abi-Samra F, "The usefulness of head-up tilt testing and hemodynamic investigations in the workup of syncope of unknown origin" 11 : 1202-1214, 1988

    3 Tercedor L, "The tilt-table test in assessing syncope of unknown origin: do differences exist between children and adults?" 52 : 189-195, 1999

    4 Ardell JL., "The cardiac neuronal hierarchy and susceptibility to arrhythmias" 8 : 590-591, 2011

    5 Sengul C, "The association of epicardial fat thickness with blunted heart rate recovery in patients with metabolic syndrome" 224 : 257-262, 2011

    6 Mark AL, "The Bezold-Jarisch reflex revisited: clinical implications of inhibitory reflexes originating in the heart" 1 : 90-102, 1983

    7 Wallin BG, "Sympathetic outflow to muscles during vasovagal syncope" 6 : 287-291, 1982

    8 Takanashi M, "Risk factor analysis of vasovagal reaction from blood donation" 47 : 319-325, 2012

    9 Vaddadi G, "Persistence of muscle sympathetic nerve activity during vasovagal syncope" 31 : 2027-2033, 2010

    10 Rosito GA, "Pericardial fat, visceral abdominal fat, cardiovascular disease risk factors, and vascular calcification in a community- based sample: the Framingham Heart Study" 117 : 605-613, 2008

    11 Ganzeboom KS, "Lifetime cumulative incidence of syncope in the general population: a study of 549 Dutch subjects aged 35-60 years" 17 : 1172-1176, 2006

    12 Shim IK, "Impact of gender on the association of epicardial fat thickness, obesity, and circadian blood pressure pattern in hypertensive patients" 2015 : 924539-, 2015

    13 Gaborit B, "Human epicardial adipose tissue has a specific transcriptomic signature depending on its anatomical peri-atrial, peri-ventricular, or peri-coronary location" 108 : 62-73, 2015

    14 Iacobellis G, "Epicardial adipose tissue: anatomic, biomolecular and clinical relationships with the heart" 2 : 536-543, 2005

    15 Chen PS, "Epicardial adipose tissue and neural mechanisms of atrial fibrillation" 5 : 618-620, 2012

    16 Levy D, "Echocardiographic criteria for left ventricular hypertrophy: the Framingham Heart Study" 59 : 956-960, 1987

    17 Sarin S, "Clinical significance of epicardial fat measured using cardiac multislice computed tomography" 102 : 767-771, 2008

    18 Shinohara T, "Cardiac autonomic dysfunction in patients with head-up tilt test-induced vasovagal syncope" 37 : 1694-1701, 2014

    19 Kochiadakis G, "Cardiac autonomic disturbances in patients with vasovagal syndrome: comparison between iodine-123-metaiodobenzylguanidine myocardial scintigraphy and heart rate variability" 14 : 1352-1358, 2012

    20 Gupta BN, "Behavior of left ventricular mechanoreceptors with myelinated and nonmyelinated afferent vagal fibers in cats" 52 : 291-301, 1983

    21 Jardine DL, "Autonomic control of vasovagal syncope" 274 (274): H2110-H2115, 1998

    22 Lagi A, "Autonomic control of heart rate variability in vasovagal syncope: a study of the nighttime period in 24- hour recordings" 9 : 179-183, 1999

    23 Jardine DL, "Autonomic control of asystolic vasovagal syncope" 75 : 528-530, 1996

    24 Mahabadi AA, "Association of pericardial fat, intrathoracic fat, and visceral abdominal fat with cardiovascular disease burden: the Framingham Heart Study" 30 : 850-856, 2009

    25 Balcioğlu AS, "Arrhythmogenic evidence for epicardial adipose tissue: heart rate variability and turbulence are influenced by epicardial fat thickness" 38 : 99-106, 2015

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    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2018-06-27 학술지명변경 한글명 : Journal of Cardiovascular Ultrasound -> Journal of Cardiovascular Imaging
    외국어명 : Journal of Cardiovascular Ultrasound -> Journal of Cardiovascular Imaging
    KCI등재
    2010-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2009-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2007-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.2 0.2 0.17
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.14 0.14 0.241 0.28
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