- Strait JB, Lakatta EG. Aging-associated cardiovascular changes and their relationship to heart failure. Heart Fail Clin. 2012; 8(1): 143-164.
- Hunter GR, McCarthy JP & Bamman MM. Effects of resistance training on older adults. Sports Med 2004; 34: 329-348.
- Trajković N, Đorđević D, Stanković M, Petrušič T, et al. Exercise-based interventions in middle-aged and older adults after myocardial infarction: a systematic review. Life (Basel) 2021; 11(9):1-14.
- Williams MA, Haskell WL, Ades PA, et al. American heart association council on clinical cardiology; American heart association council on nutrition, physical activity, and metabolism. resistance exercise in individuals with and without cardiovascular disease: 2007 update: a scientific statement from the American heart association council on clinical cardiology and council on nutrition, physical activity, and metabolism. Circulation 2007; 116(5): 572-584.
- Franklin BA, Eijsvogels TMH, Pandey A, Quindry J, Toth PP. Physical activity, cardiorespiratory fitness, and cardiovascular health: A clinical practice statement of the ASPC Part I: Bioenergetics, contemporary physical activity recommendations, benefits, risks, extreme exercise regimens, potential maladaptations. Am J Prev Cardiol 2022; 13; 12: 100424.
- Hotta K, Chen B, Behnke BJ, Ghosh P, et al. Exercise training reverses age-induced diastolic dysfunction and restores coronary microvascular function. J Physiol 2017; 595(12): 3703-3719.
- Howden EJ, Sarma S, Lawley JS, Opondo M, et al. Reversing the cardiac effects of sedentary aging in middle age-a randomized controlled trial: implications for heart failure prevention. Circulation 2018; 137(15): 1549-1560.
- Khadanga S, Savage PD, Ades PA. Resistance training for older adults in cardiac rehabilitation. Clin Geriatr Med 2019; 35(4): 459-468.
- Thompson PD. The role of physical activity and exercise in preventive cardiology. Med Clin North Am 2022; 106(2): 249-258.
- Wilson JM, Marin PJ, Rhea MR, Wilson SM, et al. Concurrent training: a meta-analysis examining interference of aerobic and resistance exercises. J Strength Cond Res 2012; 26(8): 2293-307.
- Morris JH, Chen L. Exercise training and heart failure: a review of the literature. Card Fail Rev 2019, 5(1): 57-61.
- Gielen S, Laughlin MH, O'Conner C, Duncker DJ. Exercise training in patients with heart disease: review of beneficial effects and clinical recommendations. Prog Cardiovasc Dis 2015; 57(4): 347-355.
- DeMaria AN, Neumann A, Lee G, Fowler W, Mason DT. Alterations in ventricular mass and performance induced by exercise training in man evaluated by echocardiography. Circulation 1978; 57(2): 237-244.
- Lin LL, Chen YJ, Lin TY, Weng TC. Effects of resistance training intensity on heart rate variability at rest and in response to orthostasis in middle-aged and older adults. Int J Environ Res Public Health 2022; 25; 19(17): 10579.
- Jurca R, Church TS, Morss GM, Jordan AN, Earnest CP. Eight weeks of moderate-intensity exercise training increases heart rate variability in sedentary postmenopausal women. Am Heart J 2004; 147(5): e21.
- Khani F, Nikbakht H, Ghazalian F, Barzegar M. The effect of endurance, resistance and concurrent training on the structure of the heart of healthy middle-aged women. J Jiroft Univ Med Sci 2020; 7 (1): 255-265.
- Krishnan V, Pithadia K. Effect of retro walking versus balance training on pain and disability in patients with osteoarthritis of the knee: a randomized controlled trial. Bull Fac Phys Ther 2021; 26(19): 1-7.
- Alghadir AH, Anwer S, Sarkar B, Paul AK, Anwar D. Effect of 6-week retro or forward walking program on pain, functional disability, quadriceps muscle strength, and performance in individuals with knee osteoarthritis: a randomized controlled trial (retro-walking trial). BMC Musculoskelet Disord 2019; 20(1): 1-10.
- Gondhalekar GA, Deo MV. Retrowalking as an adjunct to conventional treatment versus conventional treatment alone on pain and disability in patients with acute exacerbation of chronic knee osteoarthritis: a randomized clinical trial. N Am J Med Sci 2013; 5(2): 108-112.
- Ansari S, Raza S, & Bhati P. Impact of retrowalking on pain, range of motion, muscle fatigability, and balance in collegiate athletes with chronic mechanical low back pain. Sport Sci Health 2021; (17): 307-316.
- DelMastro HM, Ruiz JA, Simaitis LB, Gromisch ES, et al. Effect of backward and forward walking on lower limb strength, balance, and gait in multiple sclerosis: a randomized feasibility trial. Int J MS Care 2023; 25(2): 45-50.
- Alkhathami K, Soman A, Chandy S, Ramamoorthy B, Alqahtani B. Comparing the effects of retro and forward walking on serum adiponectin levels in obese young adults. J Taibah Univ Med Sci 2023; 18(5): 917-925.
- Thomas KS, Hammond M, Magal M. Graded forward and backward walking at a matched intensity on cardiorespiratory responses and postural control. Gait Posture 2018; 65: 20-25.
- Adesolaa M, Azeezo M. Comparison of cardiopulmonary responses to forward and backward walking and running. African J Biomed Res 2009; 2: 95 -100
- Chaloupka EC, Kang J, Mastrangelo MA, Donnelly MS. Cardiorespiratory and metabolic responses during forward and backward walking. J Orthop Sports Phys Ther 1997; 25(5): 302-306.
- Hooper TL, Dunn DM, Props JE, Bruce BA, et al. The effects of graded forward and backward walking on heart rate and oxygen consumption. J Orthop Sports Phys Ther 2004; 34(2): 65-71.
- Anandh S, & Sajan Varughese S. Effectiveness of Forward Walking and Retro Walking on Balance and Walking Speed in Geriatric Population. Journal of Coastal Life Medicine 2023; 11(1): 1134–1139.
- Cha HG, Kim TH, Kim MK. Therapeutic efficacy of walking backward and forward on a slope in normal adults. J Phys Ther Sci 2016; 28(6): 1901-1903.
- Mendes J, Amaral TF, Borges N, Santos A, et al. Handgrip strength values of Portuguese older adults: a population based study. BMC Geriatr 2017; 23; 17(1):1-12.
- Rikli RE, Jones CJ. Senior fitness test manual. Human Kinetics, 2nd edition 2013.
- Najjarian Kakhki A, Hosseini Kakhak SA, Khajeei R, Vakilian Aghouee F. The comparison of the effect of strength training, strength training-forward walking/running, and strength training-backward walking/running on body composition and functional fitness of middle age men. Journal of Sport in Biomotor Sciences 2022; 27(1); 82-91.
- Wood RH, Reyes R, Welsch MA, Favaloro-Sabatier J, et al. Concurrent cardiovascular and resistance training in healthy older adults. Med Sci Sports Exerc 2001; 33(10): 1751-1758.
- Khalafi M, Sakhaei MH, Rosenkranz SK, Symonds ME. Impact of concurrent training versus aerobic or resistance training on cardiorespiratory fitness and muscular strength in middle-aged to older adults: A systematic review and meta-analysis. Physiol Behav 2022; 1(254):1-12
- Irving, BA, Lanza IR, Henderson GC, Rao RR, et al. Combined training enhances skeletal muscle mitochondrial oxidative capacity independent of age. JCEM 2015; 100(4): 1654-1663.
- Hurst C, Weston KL, McLaren SJ, Weston M. The effects of same-session combined exercise training on cardiorespiratory and functional fitness in older adults: a systematic review and meta-analysis. Aging Clin. Exp. Res 2019; 31(12): 1701-1717.
- Vigorito C, Giallauria F. Effects of exercise on cardiovascular performance in the elderly. Front Physiol 2014; 5(20): 1-8.
- Markov A, Hauser L & Chaabene H. Effects of concurrent strength and endurance training on measures of physical fitness in healthy middle-aged and older adults: a systematic review with meta-analysis. Sports Med 2023; (53): 437–455.
- Leggio M, Mazza A, Cruciani G. et al. Effects of exercise training on systo–diastolic ventricular dysfunction in patients with hypertension: an echocardiographic study with tissue velocity and strain imaging evaluation. Hypertens Res 2014; 37 (7): 649-654.
- Eiji P, Nikbakht H, Abednatanzi H. investigate the effect of short-term and long-term combined resistance (resistance-endurance) on some structural variables of the heart of young non-athletic men. RJMS 2020; 27(9): 44-53.
- Spence AL, Naylor LH, Carter HH, Buck CL, et al. A prospective randomised longitudinal MRI study of left ventricular adaptation to endurance and resistance exercise training in humans. J Physiol 2011; 589(22): 5443-5452.
- Cavalcante PAM, Perilhão MS, Ariana A. da Silva, et al. Cardiac remodeling and physical exercise: a brief review about concepts and adaptations. International Journal of Sports Science 2016; 6(2): 52-61.
- Haykowsky MJ, Liang Y, Pechter D, Jones LW, et al. A meta-analysis of the effect of exercise training on left ventricular remodeling in heart failure patients: the benefit depends on the type of training performed. J Am Coll Cardiol 2007; 19; 49(24): 2329-2336.
- Haykowsky MJ, Dressendorfer R, Taylor D, Mandic S, Humen D. Resistance training and cardiac hypertrophy: unravelling the training effect. Sports Med 2002; 32(13): 837-849.
- Uthoff A, Oliver J, Cronin J, Harrison C, Winwood P. A New Direction to Athletic Performance: Understanding the Acute and Longitudinal Responses to Backward Running. Sports Med 2018; 48(5): 1083-1096.
- Rognmo O, Moholdt T, Bakken H, Hole T, et al. Cardiovascular risk of high- versus moderate-intensity aerobic exercise in coronary heart disease patients, Circulation 2012; 126 (12): 1436-1440.
- Elliott A, Bentley D, Aromataris E. Effectiveness of high-intensity interval training in patients with coronary heart disease: a systematic review protocol, JBI Database of Systematic Reviews & Implementation Reports 2013; 11(8): 13- 22.
- Gibala MJ, Little JP, Maureen J, Macdonald MJ. et al. Physiological adaptations to low-volume, high-intensity interval training in health and disease. J Physiol 2012; 590 (5): 1077-1084.
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