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Menkes MS, Matthews KA, Krantz DS, Lundberg U, Mead LA, Qaqish B, et al. Cardiovascular reactivity to the cold pressor test as a predictor of hypertension. Hypertension. 1989;14(5):524-530. https://doi.org/10.1161/01.HYP.14.5.524 Search in Google Scholar

Kasagi F, Akahoshi M, Shimaoka K. Relation between cold pressor test and development of hypertension based on a 28-year follow-up. Hypertension. 1995;25(1):71-76. https://doi.org/10.1161/01.HYP.25.1.71 Search in Google Scholar

Okada Y, Jarvis SS, Best SA, Edwards JG, Hendrix JM, Adams-Huet B, et al. Sympathetic Neural and Hemodynamic Responses During Cold Pressor Test in Elderly Blacks and Whites. Hypertension. 2016;67(5):951-958. https://doi.org/10.1161/HYPERTENSIONAHA.115.06700 Search in Google Scholar

Antony I, Aptecar E, Lerebours G, Nitenberg A. Coronary artery constriction caused by the cold pressor test in human hypertension. Hypertension. 1994;24:212-219. https://doi.org/10.1161/01.HYP.24.2.212 Search in Google Scholar

Nitenberg A, Valensi P, Sachs R, Cosson E, Attali JR, Antony I. Prognostic value of epicardial coronary artery constriction to the cold pressor test in type 2 diabetic patients with angiographically normal coronary arteries and no other major coronary risk factors. Diabetes care. 2004;27(1):208-215. https://doi.org/10.2337/diacare.27.1.208 Search in Google Scholar

Stanek A, Grygiel-Górniak B, Brożyna-Tkaczyk K, Myśliński W, Cholewka A, Zolghadri S. The influence of dietary interventions on arterial stiffness in overweight and obese subjects. Nutrients. 2023;15(6):1440. https://doi.org/10.3390/nu15061440 Search in Google Scholar

Zheng M, Zhang X, Chen S, Song Y, Zhao Q, Gao X, et al. Arterial stiffness preceding diabetes: A longitudinal study. Circulation Research. 2020;127(12):1491-1498. https://doi.org/10.1161/CIRCRESAHA.120.317950 Search in Google Scholar

Nikolov V, Petkova M, Nikolov E. Stress-induced cardiovascular responses to cold pressure test in healthy young subjects. Global Journal of Psychology Research: New Trends and Issues. 2021;11(2):70-80. https://doi.org/10.18844/gjpr.v11i2.4779 Search in Google Scholar

Jatoi NA, Kyvelou SM, Feely J. The acute effects of mental arithmetic, cold pressor and maximal voluntary contraction on arterial stiffness in young healthy subjects. Artery Research. 2014; 8:44-50. https://doi.org/10.1016/j.artres.2014.02.002 Search in Google Scholar

Moriyama K, Ifuku H. Increased cardiovascular reactivity to the cold pressor test is not associated with increased reactivity to isometric handgrip exercise. Eur J Al Physiol. 2010;108:837-843. https://doi.org/10.1007/s00421-009-1299-8 Search in Google Scholar

Awad A, Haddadin A, Tantawy H, Badr T, Stout R, Silverman D, et al. The relationship between the photoplethysmographic waveform and systemic vascular resistance. Journal of Clinical Monitoring and Computing. 2007;21(6):365-372. https://doi.org/10.1007/s10877-007-9097-5 Search in Google Scholar

Millasseau SC, Stewart AD, Patel SJ, Redwood SR, Chowienczyk PJ. Evaluation of carotid-femoral pulse wave velocity: Influence of timing algorithm and heart rate. Hypertension. 2005;45:222-226. https://doi.org/10.1161/01.HYP.0000154229.97341.d2 Search in Google Scholar

Lin Y, Song Z, Yimin Y. Study of pulse wave velocity noninvasive detecting instrument based on radial artery and finger photoplethysmography pulse wave. International Symposium on Intelligent Information Technology Application Workshops 2008;705-708. https://doi.org/10.1109/IITA.Workshops.2008.102 Search in Google Scholar

Elgendi M. On the Analysis of Fingertip Photoplethysmogram Signals. Current Cardiology Reviews. 2012;8:14-25. https://doi.org/10.2174/157340312801215782 Search in Google Scholar

Takazawa KT, Fujita M, Matsuoka O, Saiki T, Aikawa M, Tamura S, et al. Assessment of vasocative agents and vascular aging by the second derivative of photoplethysmogram waveform. Hypertension. 1998;32:365-270. https://doi.org/10.1161/01.HYP.32.2.365 Search in Google Scholar

Imanaga I, Hara H, Koyanagi S, Tanaka K. Correlation between wave components of the second derivative of plethysmogram and arterial distensibility. Jpn Heart J. 1998;39:775-784. https://doi.org/10.1536/ihj.39.775 Search in Google Scholar

Millasseau S, Kelly R, Ritter J, Chowienczyk P. Determination of age-related increases in large artery stiffness by digital pulse contour analysis Clinical Science. 2002;103:371-377. https://doi.org/10.1042/cs1030371 Search in Google Scholar

Zahedi E, Chellaan K, Ali MA, Singh H. Analysis of the effect of ageing on rising edge characteristics of the photoplethysmogram using a modified windkessel model. Cardiovasc Eng. 2007;7172-7181. https://doi.org/10.1007/s10558-007-9037-5 Search in Google Scholar

Gesche H, Grosskurth D, Küchler G, Patzak A. Continuous blood pressure measurement by using the pulse transit time: comparison to a cuff-based method. Eur J Appl Physiol. 2011;112(1):309-315. https://doi.org/10.1007/s00421-011-1983-3 Search in Google Scholar

Velzen MH, Loeve AJ, Niehof SP, Mik EG. Increasing accuracy of pulse transit time measurements by automated elimination of distorted photoplethysmography waves. Med Biol Eng Comput. 2017;55:1989-2000. https://doi.org/10.1007/s11517-017-1642-x Search in Google Scholar

Kortekaas MC, Niehof SP, van Velzen MH, Galvin EM, Huygen FJ, Stolker RJ. Pulse transit time as a quick predictor of a successful axillary brachial plexus block. Acta Anaesthesiologica Scandinavica. 2012;56:1228-1233. https://doi.org/10.1111/j.1399-6576.2012.02746.x Search in Google Scholar

Townsend RR, Wilkinson IB, Schiffrin EL, Avolio AP, Chirinos JA, Cockcroft JR, et al. Recommendations for improving and standardizing vascular research on arterial stiffness: A scientific statement from the American Heart Association. Hypertension. 2015:66(3): 698-722. https://doi.org/10.1161/HYP.0000000000000033 Search in Google Scholar

Hickey M, Phillips JP, Kyriacou PA. Investigation of peripheral photoplethysmographic morphology changes induced during a hand-elevation study. Journal of Clinical Monitoring and Computing. 2016;30(5):727-736. https://doi.org/10.1007/s10877-015-9761-0 Search in Google Scholar

Mizushima T, Tajima F, Nakamura T, Yamamoto M, Lee KH, Ogata H, et al. Muscle sympathetic nerve activity during cold pressor test in patients with cerebrovascular accidents. Stroke. 1998;29:607-612. https://doi.org/10.1161/01.STR.29.3.607 Search in Google Scholar

Ifuku H. Cardiovascular responses of blood pressure hyperreactors to the cold pressor test and exercise. J Phys Fit Sports Med. 2015;4:331-335. https://doi.org/10.7600/jpfsm.4.331 Search in Google Scholar

Zygmunt A, Stanczyk J. Methods of evaluation of autonomic nervous system function. Arch Med Sci. 2010;6:11-18. https://doi.org/10.5114/aoms.2010.13500 Search in Google Scholar

Klabunde RE. Cardiovascular Physiology Concepts. 2nd ed. Philadelphia: Liincott Williams & Wilkins/Wolters Kluwer; 2012, p. 141-169. Search in Google Scholar

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