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Chapter 8 - Cardiovascular and Pulmonary Wellness

from Part II - From Illness to Wellness by Organ Systems/Disorders

Published online by Cambridge University Press:  18 September 2020

Waguih William IsHak
Affiliation:
Cedars-Sinai Medical Center and David Geffen School of Medicine, University of California Los Angeles (UCLA)
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Summary

Cardiovascular diseases include coronary artery disease, stroke, hypertensive heart disease, valvular heart disease, cardiac arrhythmias, heart failure, aortic aneurysm and dissection, peripheral arterial disease, and deep venous thrombosis [1]. Pulmonary diseases include asthma, bronchitis, chronic obstructive pulmonary disease (COPD), cystic fibrosis, idiopathic pulmonary fibrosis, lung cancer, pneumonia, pulmonary embolism, pulmonary hypertension, sarcoidosis, and tuberculosis [2]. Both cardiovascular and pulmonary disorders share symptoms of chest pain, shortness of breath, palpitations, fatigue, and leg swelling. The literature is rich in interventions that aim to prevent or treat cardiovascular and pulmonary disorders. This chapter not only reviews the evidence for wellness interventions that can be implemented beyond traditional methods that are utilized to address cardiovascular and pulmonary symptom severity, but also explores the evidence for interventions that primarily improve wellness in patients with cardiovascular and pulmonary pathology.

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Publisher: Cambridge University Press
Print publication year: 2020

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References

Zipes, DP, Libby, P, Bonow, RO, Robert, O, Mann, DL, Tomaselli, GF. Braunwald’s Heart Disease: A Textbook of Cardiovascular Medicine (11th ed.). Philadelphia, PA, Elsevier, 2018.Google Scholar
Weinberger, SE, Cockrill, BA, Mandel, J. Principles of Pulmonary Medicine (7th ed.). Philadelphia, PA, Elsevier, 2018.Google Scholar
Widmer, RJ, Flammer, AJ, Lerman, LO, Lerman, A. The Mediterranean diet, its components, and cardiovascular disease. Am J Med 2015; 128: 229238.CrossRefGoogle ScholarPubMed
Govindaraju, T, Sahle, BW, McCaffrey, TA, McNeil, JJ, Owen, AJ. Dietary patterns and quality of life in older adults: a systematic review. Nutrients 2018; 10: E971.CrossRefGoogle ScholarPubMed
Freeman, AM, Morris, PB, Aspry, K, et al. A clinician’s guide for trending cardiovascular nutrition controversies: part II. J Am Coll Cardiol 2018; 72: 553568.Google Scholar
Dreher, ML. Whole fruits and fruit fiber emerging health effects. Nutrients 2018; 10: E1833.Google Scholar
Najjar, RS, Moore, CE, Montgomery, BD. A defined, plant-based diet utilized in an outpatient cardiovascular clinic effectively treats hypercholesterolemia and hypertension and reduces medications. Clin Cardiol 2018, 41: 307313.CrossRefGoogle Scholar
Ahnen, RT, Jonnalagadda, SS, Slavin, JL. Role of plant protein in nutrition, wellness and health. Nutr Rev 2019; 77: 735747.CrossRefGoogle ScholarPubMed
Marangoni, F, Corsello, G, Cricelli, C, et al. Role of poultry meat in a balanced diet aimed at maintaining health and wellbeing: an Italian consensus document. Food Nutr Res 2015; 59: 27606.Google Scholar
Romieu, I. Nutrition and lung health. Int J Tuberc Lung Dis 2005; 9: 362374.Google ScholarPubMed
Romieu, I, Trenga, C. Diet and obstructive lung diseases. Epidemiol Rev 2001; 23: 268287.Google Scholar
Bassuk, SS, Manson, JE. Physical activity and the prevention of cardiovascular disease. Curr Atheroscler Rep 2003; 5: 299307.CrossRefGoogle ScholarPubMed
Denehy, L, Granger, CL, El-Ansary, D, Parry, SM. Advances in cardiorespiratory physiotherapy and their clinical impact. Expert Rev Respir Med 2018; 12: 203215.CrossRefGoogle ScholarPubMed
Vélez-Toral, M, Godoy-Izquierdo, D, de Guevara, NML, et al. Improvements in health-related quality of life, cardio-metabolic health, and fitness in postmenopausal women after an exercise plus health promotion intervention: a randomized controlled trial. J Phys Act Health 2017; 14: 336343.CrossRefGoogle ScholarPubMed
Heppner, PS, Morgan, C, Kaplan, RM, Ries, AL. Regular walking and long-term maintenance of outcomes after pulmonary rehabilitation. J Cardiopul Rehabil 2006; 26: 4453.Google Scholar
Chan, RR, Larson, JL. Meditation interventions for chronic disease populations: a systematic review. J Holist Nurs 2015; 33: 351365.Google Scholar
Viveiros, J, Chamberlain, B, O’Hare, A, Sethares, KA. Meditation interventions among heart failure patients: an integrative review. Eur J Cardiovasc Nurs 2019; 18: 19.Google Scholar
Heckenberg, RA, Eddy, P, Kent, S, Wright, BJ. Do workplace-based mindfulness meditation programs improve physiological indices of stress? A systematic review and meta-analysis. J Psychosom Res 2018; 114: 6271.CrossRefGoogle Scholar
Younge, JO, Gotink, RA, Baena, CP, Roos-Hesselink, JW, Hunink, MG. Mind–body practices for patients with cardiac disease: a systematic review and meta-analysis. Eur J Prev Cardiol 2015; 22: 13851398.Google Scholar
Kelley, GA, Kelley, KS. Meditative movement therapies and health-related quality-of-life in adults: a systematic review of meta-analyses. PLoS One 2015; 10: e0129181.CrossRefGoogle ScholarPubMed
Guddeti, RR, Dang, G, Williams, MA, Alla, VM. Role of yoga in cardiac disease rehabilitation. J Cardiopul Rehabil Prev 2019; 39: 146152.Google Scholar
Givi, M, Sadeghi, M, Garakyaraghi, M, et al. Long-term effect of massage therapy on blood pressure in prehypertensive women. J Educ Health Promot 2018; 7: 54.CrossRefGoogle ScholarPubMed
Bokarius, A, Ha, K, Poland, R, et al. Attitude toward humor in patients experiencing depressive symptoms. Innov Clin Neurosci 2011: 8(9): 2023.Google Scholar
Lockwood, NL, Yoshimura, SM. The heart of the matter: the effects of humor on well-being during recovery from cardiovascular disease. Health Commun 2014; 29: 410420.Google Scholar
Gasenzer, ER, Leischik, R. [Music, pulse, heart and sport]. Herz 2018; 43: 4352.Google Scholar
Philip, K, Lewis, A, Hopkinson, NS. Music and dance in chronic lung disease. Breathe (Sheff) 2019; 15: 116120.Google Scholar
Kok, BE, Coffey, KA, Cohn, MA, et al. How positive emotions build physical health: perceived positive social connections account for the upward spiral between positive emotions and vagal tone. Psychol Sci 2013; 24: 11231132.CrossRefGoogle ScholarPubMed

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