[1] |
Nakayama Y, Fujiu K. Maladaptive alterations of autonomic nerve system in cardiovascular disorders[J]. Int Heart J, 2019, 60(1): 4-6.
doi: 10.1536/ihj.18-677
|
[2] |
Ailoaei S, Koektuerk B, Ernst S. Autonomic modulation of the arrhythmogenic substrate in the evolution of atrial fibrillation and therapeutic approaches[J]. Herzschrittmacherther Elektrophysiol, 2021, 32(3): 302-307.
doi: 10.1007/s00399-021-00781-4
|
[3] |
Liu SZ, Shi XM, Guo HY, et al. Amplitude reduction of autonomic nerve function is correlated with ablation lesion quality in patients with paroxysmal atrial fibrillation[J]. J Electrocardiol, 2020, 59: 158-163.
doi: 10.1016/j.jelectrocard.2020.02.015
|
[4] |
Styne DM, Arslanian SA, Connor EL, et al. Pediatric obesity-assessment, treatment, and prevention: an Endocrine Society Clinical Practice Guideline[J]. J Clin Endocrinol Metab, 2017, 102(3): 709-757.
doi: 10.1210/jc.2016-2573
|
[5] |
孙兴国. 心肺运动试验的原理和解读-病理生理及临床应用[M]. 5版, 北京, 北京大学医学出版社.
|
[6] |
侯冬青, 赵小元, 刘军廷, 等. 儿童青少年肥胖与成年后糖尿病的关联分析[J]. 中华预防医学杂志, 2016, 1: 23-27.
|
[7] |
董剩勇, 王维民, 代政学, 等. 健康体检人群中肥胖与部分新型心血管标志物的相关性分析[J]. 中华保健医学杂志, 2017, 19(2): 107-111.
|
[8] |
Guarino D, Nannipieri M, Iervasi G, et al. The role of the autonomic nervous system in the pathophysiology of obesity[J]. Front Physiol, 2017, 8: 665.
doi: 10.3389/fphys.2017.00665
|
[9] |
Yi LF, Wen HX, Huang XL, et al. Cardiac autonomic nerve function in obese school-age children[J]. Zhongguo Dang Dai Er Ke Za Zhi, 2017, 19(5): 524-528.
|
[10] |
王国祥, 刘殿玉. 肥胖儿童心脏自主神经变化特征及有氧运动的干预作用[J]. 中国妇幼保健, 2011, 26(21):3253-3255.
|
[11] |
Molfino A, Fiorentini A, Tubani L, et al. Body mass index is related to autonomic nervous system activity as measured by heart rate variability[J]. Eur J Clin Nutr, 2009, 63(10): 1263-1265.
doi: 10.1038/ejcn.2009.35
pmid: 19471292
|
[12] |
Bauer A, Kantelhardt JW, Barthel P, et al. Deceleration capacity of heart rate as a predictor of mortality after myocardial infarction: cohort study[J]. Lancet. 2006; 367(9523): 1674-1681.
doi: 10.1016/S0140-6736(06)68735-7
pmid: 16714188
|
[13] |
Eick C, Rizas KD, Meyer-Zürn CS, et al. Autonomic nervous system activity as risk predictor in the medical emergency department: a prospective cohort study[J]. Crit Care Med, 2015, 43(5): 1079-1086.
doi: 10.1097/CCM.0000000000000922
|
[14] |
Brubaker PH, Kitzman DW. Chronotropic incompetence: causes, consequences, and management[J]. Circulation. 2011, 123(9): 1010-1020.
doi: 10.1161/CIRCULATIONAHA.110.940577
pmid: 21382903
|
[15] |
Wu JK, Huang Z, Zhang Z, et al. Quantitative assessment of autonomic regulation of the cardiac system[J]. J Healthc Eng, 2019, 2019: 4501502.
|
[16] |
Bonikowske AR, Lopez-Jimenez F, Barillas-Lara MI, et al. Added value of exercise test findings beyond traditional risk factors for cardiovascular risk stratification[J]. Int J Cardiol, 2019, 292: 212-217.
doi: S0167-5273(19)30555-8
pmid: 31027984
|
[17] |
Sydo N, Sydo T, Gonzalez CK, et al. Prognostic performance of heart rate recovery on an exercise test in a primary prevention population[J]. J Am Heart Assoc, 2018, 7(7): e008143.
doi: 10.1161/JAHA.117.008143
|
[18] |
Yang IH, Hwang HJ, Jeon HK, et al. Slow heart rate recovery is associated with increased exercise-induced arterial stiffness in normotensive patients without overt atherosclerosis[J]. J Cardiovasc Imaging, 2019, 27(3): 214-223.
doi: 10.4250/jcvi.2019.27.e27
pmid: 31161751
|
[19] |
Yang B, Jia ZY, Wu ZJ, et al. Correlation between of heart rate recovery after treadmill exercise test to patients with coronary artery disease and heart rate variability[J]. J Pratic Electrocardiol, 2016, 25(1): 35-38.
|
[20] |
Okutucu S, Karakulak UN, Aytemir K, et al. Heart rate recovery: a practical clinical indicator of abnormal cardiac autonomic function[J]. Expert Rev Cardiovasc Ther, 2011, 9(11): 1417-1430.
doi: 10.1586/erc.11.149
pmid: 22059791
|
[21] |
鲁端. 运动性高血压的现代认识[J]. 心电与循环, 2018, 37(3): 147-152, 171.
|
[22] |
Özdemir G, Köşger P, Uçar B. Evaluation of blood pressure responses to treadmill exercise test in normotensive children of hypertensive parents[J]. Turk J Pediatr, 2020, 62(6): 1035-1048.
|
[23] |
Berger A, Grossman E, Katz M, et al. Exercise systolic blood pressure variability is associated with increased risk for new-onset hypertension among normotensive adults[J]. J Am Soc Hypertens, 2016, 10(6): 527-535.
doi: 10.1016/j.jash.2016.04.003
pmid: 27292824
|
[24] |
李燕丽, 黎荣山. 平板运动试验运动高血压早期检出隐匿高血压的研究进展[J]. 医学食疗与健康, 2019(17):193-194.
|
[25] |
Mitchell JH. Abnormal cardiovascular response to exercise in hypertension: contribution of neural factors[J]. Am J Physiol Regul Integr Comp Physiol, 2017, 312(6): R851-R863.
|