Terapia com exercícios Maumere e dieta com baixo teor de sal em pacientes hipertensos: um esforço para reduzir a pressão arterial

Maumere Exercise Therapy and Low Salt Diet in Hypertension Sufferers: An Effort to Lower Blood Pressure

Autores

DOI:

https://doi.org/10.47197/retos.v56.106718

Palavras-chave:

Maumere Exercise Therapy, Blood Pressure, Low Salt Diet, Hypertension

Resumo

Esta é uma análise sobre pontos para analisar e demonstrar os efeitos benéficos do exercício Maumere e da perda de peso com baixo teor de sal na redução do peso sanguíneo. Este teste é considerado utilizado há algum tempo recentemente e após o plano de coleta de controle. Os sujeitos investigados foram escolhidos empregando uma estratégia de amostragem proposital e depois disso os sujeitos foram isolados em 2 grupos para ser específico o grupo controle (K1) e o grupo aceitante de terapia de exercícios maumere e dieta com baixo teor de sal (K2). Participaram deste estudo um total de 20 pacientes hipertensos com 25 anos ou mais. No primeiro dia, todos os sujeitos coletaram informações sobre as características dos sujeitos investigados, nesse ponto a pergunta sobre os sujeitos mediu o peso sanguíneo pré-teste 3 horas em algum momento do aquecimento recente. Além disso, os sujeitos realizaram a mediação do tratamento da terapia com exercícios maumere com uma concentração de 60-75% da capacidade mais extrema. A queda foi feita 4x1 semana durante 4 semanas. A intercessão de emagrecimento com sal moo foi realizada desde o primeiro dia após o pré-teste até o último dia com utilização de níveis de sal <1000 mg Na por dia. No último dia da mediação, após 24 horas, o sujeito recebeu informações pós-teste para avaliar o peso sanguíneo. Estimativa da pressão arterial através de um esfigmomanômetro. Os resultados desta pesquisa detalharam que o tratamento com exercícios de maumere e uma baixa contagem de calorias de sal foram capazes de reduzir significativamente o peso sanguíneo em pacientes hipertensos (*p<0,05). Aceitamos que a maior causa da hipertensão se deve a danos nos vasos sanguíneos contraídos e à utilização excessiva de sal. Como a hipertensão pode levar a doenças como acidente vascular cerebral, doença coronariana, diabetes e infecção renal, com tratamento com terapia de exercícios maumere e sal moo para emagrecer, o metabolismo do corpo normalmente funcionará, pois as válvulas cardíacas que já estavam esclerosadas e espessadas retornam lentamente ao estado normal. Normalmente, o miocárdio não está mais firme, o músculo cardíaco se contrai, o volume do pulso e o rendimento cardíaco não aumentam. Nós prescrevemos excessivamente o uso de tratamento com terapia de exercícios maumere e dieta com baixo teor de sal, que traz inúmeros benefícios positivos para pacientes com hipertensão com execução física constante.
Palavras-chave: Terapia por Exercício Maumere, Pressão Arterial, Dieta com Baixo Sal, Hipertensão.

Referências

Alvarez, C., Campos-Jara, C., Gomes Ciolac, E., Vega-Guimaraes, G., Andrade-Mayorga, O., Cano-Montoya, J., C. Andrade, D., Delgado-Floody, P., Alonso-Martínez, A., Izquierdo, M., & Cigarroa, I. (2023). Hypertensive patients show higher heart rate response during incremental exercise and elevated arterial age estimation than normotensive adult peers: VASCU-HEALTH PROJECT. Retos, 50(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 25–32. https://doi.org/10.47197/retos.v50.99716

Angkurawaranon, C., Jiraporncharoen, W., Chenthanakij, B., Doyle, P., & Nitsch, D. (2014). Urbanization and non-communicable disease in Southeast Asia: a review of current evidence. Public Health, 128(10), 886–895.

Arnott, C., Li, Q., Kang, A., Neuen, B. L., Bompoint, S., Lam, C. S. P., Rodgers, A., Mahaffey, K. W., Cannon, C. P., & Perkovic, V. (2020). Sodium‐glucose cotransporter 2 inhibition for the prevention of cardiovascular events in patients with type 2 diabetes mellitus: a systematic review and meta‐analysis. Journal of the American Heart Association, 9(3), e014908.

Bafirman, Yulfadinata, A., Agus, A., & Ayubi, N. (2024). Curcumin: Compound in Turmeric that Has the Potential to Increase Serum Interleukin-10 (IL-10) Levels After High-Intensity Exercise. Retos, 52, 37–41. https://doi.org/10.47197/retos.v52.101895

Baker, J., & Kimpinski, K. (2018). Role of melatonin in blood pressure regulation: An adjunct anti‐hypertensive agent. Clinical and Experimental Pharmacology and Physiology, 45(8), 755–766.

Barreto, A. C., Medeiros, A. P., Araujo, G. da S., Vale, R., Vianna, J. M., Alkimin, R., Serra, R., Leitão, L., Reis, V. M., & Novaes, J. da S. (2023). Variabilidad de la frecuencia cardíaca y de la presión arterial durante y después de tres sesiones de CrossFit® (Heart rate variability and blood pressure during and after three CrossFit® sessions). Retos, 47(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 311–316. https://doi.org/10.47197/retos.v47.93780

Bhawika, G. W., Purwantoro, P., Daengs, G. S. A., Sudrajat, D., Rahman, A., Makmur, M., Rohmah, R. A., & Wanto, A. (2019). Implementation of ANN for Predicting the Percentage of Illiteracy in Indonesia by Age Group. Journal of Physics: Conference Series, 1255(1), 12043.

Bie, P. (2009). Blood volume, blood pressure and total body sodium: internal signalling and output control. Acta Physiologica, 195(1), 187–196.

Buang, N. F. B., Rahman, N. A. A., & Haque, M. (2019). Knowledge, attitude and practice regarding hypertension among residents in a housing area in Selangor, Malaysia. Medicine and Pharmacy Reports, 92(2), 145.

Chávez Valenzuela, M. E., Valdez García, M., Bautista Jacobo, A., Hoyos Ruiz, G., Barahona Herrejón, N. C., & Ogarrio Perkins, C. E. (2022). Evaluation of the effect of a physical exercise program on cardiorespiratory capacity in academics with metabolic syndrome at the University of Sonora: a pilot study. Retos, 44(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 264–275. https://doi.org/10.47197/retos.v44i0.89062

Coovadia, Y., Adler, T. E., Steinback, C. D., Fraser, G. M., & Usselman, C. W. (2020). Sex differences in dynamic blood pressure regulation: beat-by-beat responses to muscle sympathetic nerve activity. American Journal of Physiology-Heart and Circulatory Physiology.

Corrêa Neto, V. G., do Rosário, J. A., Bodell, N., Araujo, G. da S., Telles, L. G. da S., de Freitas, J. P., Colonna, M. J. C. M., Triani, F. da S., da Silva, R. S., & Monteiro, E. R. (2022). Comportamiento de la presión arterial, frecuencia cardíaca y doble producto durante el ejercicio aeróbico a intervalos y continuo (Blood pressure, heart rate, and rate pressure product behavior during interval and continuous aerobic exercise). Retos, 43(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 579–585. https://doi.org/10.47197/retos.v43i0.88363

de Oliveira, K., Clayton, H. M., & dos Santos Harada, É. (2020). Gymnastic Training of Hippotherapy Horses Benefits Gait Quality When Ridden by Riders with Different Body Weights. Journal of Equine Veterinary Science, 94, 103248. https://doi.org/https://doi.org/10.1016/j.jevs.2020.103248

Devi, A. I., Rejeki, P. S., Argarini, R., Shakila, N., Yosnengsih, Y., Ilmi, S. B. Z., Karimullah, A., Ayubi, N., & Herawati, L. (2023). Response of TNF-α Levels and Blood Glucose Levels after Acute High-Intensity Intermittent Exercise in Overweight Women. Retos, 48(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 101–105. https://doi.org/10.47197/retos.v48.94305

Di Daniele, N. (2019). The role of preventive nutrition in chronic non-communicable diseases. In Nutrients (Vol. 11, Issue 5, p. 1074). MDPI.

Didi, G., Kalim, M., Sahara, E., Atmadikoesoemah, C. A., & Kita, H. (2017). The Heart of the Matter. European Heart Journal Supplements, 19, E53–E73.

Dzau, V. J., & Balatbat, C. A. (2019). Future of hypertension: The need for transformation. Hypertension, 74(3), 450–457.

Espinosa Méndez, C. M., Reyes Espejel, I., Salazar C., C. M., San Martin Rodríguez, S. L., & Flores Chico, B. (2023). Relationship between central obesity and reported health habits in university students. Retos, 48(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 54–59. https://doi.org/10.47197/retos.v48.95914

Fuente, M. D. La, Hernanz, A., & Vallejo, M. C. (2005). The immune system in the oxidative stress conditions of aging and hypertension: favorable effects of antioxidants and physical exercise. Antioxidants & Redox Signaling, 7(9–10), 1356–1366.

Galaviz Berelleza, R., Trejo Trejo, M., Borbón Román, J. C., Alarcón Meza, E. I., Pineda Espejel, H. A., Arrayales Millan, E. M., Robles Hernández, G. S., & Cutti Riveros, L. (2021). Effect of a strength training program on IGF-1 in older adults with obesity and controlled hypertension. Retos, 39(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 253–256. https://doi.org/10.47197/retos.v0i39.74723

Goethals, L., Barth, N., Guyot, J., Hupin, D., Celarier, T., & Bongue, B. (2020). Impact of home quarantine on physical activity among older adults living at home during the COVID-19 pandemic: qualitative interview study. JMIR Aging, 3(1), e19007.

Gosmanova, E. O., Mikkelsen, M. K., Molnar, M. Z., Lu, J. L., Yessayan, L. T., Kalantar-Zadeh, K., & Kovesdy, C. P. (2016). Association of systolic blood pressure variability with mortality, coronary heart disease, stroke, and renal disease. Journal of the American College of Cardiology, 68(13), 1375–1386.

Graudal, N. A., Hubeck-Graudal, T., & Jurgens, G. (2020). Effects of low sodium diet versus high sodium diet on blood pressure, renin, aldosterone, catecholamines, cholesterol, and triglyceride. Cochrane Database of Systematic Reviews, 12.

Ha, S. K. (2014). Dietary salt intake and hypertension. Electrolytes & Blood Pressure: E & BP, 12(1), 7.

He, F. J., Tan, M., Ma, Y., & MacGregor, G. A. (2020). Salt reduction to prevent hypertension and cardiovascular disease: JACC state-of-the-art review. Journal of the American College of Cardiology, 75(6), 632–647.

Herazo Beltran, Y., Nuñez-Bravo, N., Sánchez-Guette, L., Vásquez-Osorio, F., Lozano-Ariza, A., Torres-Herrera, E., & Valdelamar-Villegas, A. (2020). Estilos de vida relacionados con la salud en estudiantes universitarios (Lifestyles related to health in university students). Retos, 38(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 547–551. https://doi.org/10.47197/retos.v38i38.72871

Hernández-Cruz, G., Estrada-Meneses, E. F., Ramos-Jiménez, A., Rangel-Colmenero, B. R., Reynoso-Sánchez, L. F., Miranda-Mendoza, J., & Quezada-Chacón, J. T. (2022). Relationship between physical exercise type and fatigue quantified through HRV, CK, and blood lactate. Retos, 44(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 176–182. https://doi.org/10.47197/retos.v44i0.89479

Hidayaturrohkim, R., Claudia, E. A., Rizqullah, Y., Septiyansah, D. A., Agustin, N. L., Kurdi, F., & Ersanti, S. W. (2023). The Effect of Hypertension Exercise on Blood Pressure Reduction in The Elderly at Wisma Seruni UPT PSTW Jember. NSMRJ: Nusantara Scientific Medical Research Journal, 2(01), 23–31.

Hu, H., Xu, A., Gao, C., Wang, Z., & Wu, X. (2021). The effect of physical exercise on rheumatoid arthritis: an overview of systematic reviews and meta‐analysis. Journal of Advanced Nursing, 77(2), 506–522.

Indika, P. M., Kurniawan, R., Bahtra, R., & Yuniarti, E. (2023). The Effect of Administration of Honey on Maximal Physical Activity in Malondialdehyd (Mda) Levels of Male Mice (Mus musculus L.). Proceedings of the 3rd International Conference on Biology, Science and Education (IcoBioSE 2021), 171–180. https://doi.org/10.2991/978-94-6463-166-1_25

Izquierdo, M., Merchant, R. A., Morley, J. E., Anker, S. D., Aprahamian, I., Arai, H., Aubertin-Leheudre, M., Bernabei, R., Cadore, E. L., & Cesari, M. (2021). International exercise recommendations in older adults (ICFSR): expert consensus guidelines. The Journal of Nutrition, Health & Aging, 25(7), 824–853.

Juliao Vargas, C. S., Sánchez Roa, I. J., & Reina Monrroy, J. L. (2023). Parks: their use as an indicator of health and quality of life. Retos, 48(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 24–33. https://doi.org/10.47197/retos.v48.96136

Kim, S., & Sung, K. H. (2014). Revisiting the effectiveness of base crisis response strategies in comparison of reputation management crisis responses. Journal of Public Relations Research, 26(1), 62–78.

Kreft, L. (2012). Sport as a drama. Journal of the Philosophy of Sport, 39(2), 219–234.

Leao Ribeiro, I., Rivera Mañán, C., García Sepúlveda, F., Fuentealba Naranjo, M., Yáñez Benavides, N., Ortega Gonzales, F., Ramirez-Parada, K. L., & Lorca, L. A. (2022). Decreased upper limb function and low level of physical activity following treatment for breast cancer - A case-control study. Retos, 44(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 302–308. https://doi.org/10.47197/retos.v44i0.90594

Lyons, G. (2015). Transport’s digital age transition. Journal of Transport and Land Use, 8(2), 1–19.

Mancia, G., De Backer, G., Dominiczak, A., Cifkova, R., Fagard, R., Germano, G., Grassi, G., Heagerty, A. M., Kjeldsen, S. E., & Laurent, S. (2007). 2007 Guidelines for the management of arterial hypertension: The Task Force for the Management of Arterial Hypertension of the European Society of Hypertension (ESH) and of the European Society of Cardiology (ESC). European Heart Journal, 28(12), 1462–1536.

Morando, F., Rosi, S., Gola, E., Nardi, M., Piano, S., Fasolato, S., Stanco, M., Cavallin, M., Romano, A., & Sticca, A. (2015). Adherence to a moderate sodium restriction diet in outpatients with cirrhosis and ascites: a real‐life cross‐sectional study. Liver International, 35(5), 1508–1515.

Myszczynska, M. A., Ojamies, P. N., Lacoste, A. M. B., Neil, D., Saffari, A., Mead, R., Hautbergue, G. M., Holbrook, J. D., & Ferraiuolo, L. (2020). Applications of machine learning to diagnosis and treatment of neurodegenerative diseases. Nature Reviews Neurology, 16(8), 440–456.

Narici, M., Vito, G. De, Franchi, M., Paoli, A., Moro, T., Marcolin, G., Grassi, B., Baldassarre, G., Zuccarelli, L., & Biolo, G. (2021). Impact of sedentarism due to the COVID-19 home confinement on neuromuscular, cardiovascular and metabolic health: Physiological and pathophysiological implications and recommendations for physical and nutritional countermeasures. European Journal of Sport Science, 21(4), 614–635.

O’Donnell, M., Mente, A., Alderman, M. H., Brady, A. J. B., Diaz, R., Gupta, R., López-Jaramillo, P., Luft, F. C., Lüscher, T. F., & Mancia, G. (2020). Salt and cardiovascular disease: insufficient evidence to recommend low sodium intake. European Heart Journal, 41(35), 3363–3373.

Okilanda, A., Soniawan, V., Irawan, R., Arifan, I., Batubara, R., Fadlan, A. R., Marta, I. A., Tulyakul, S., Crisari, S., Ahmed, M., & Hasan, B. (2024). Qatar 2022 World Cup Scorer Analysis. Retos, 54(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 10–17. https://doi.org/10.47197/retos.v54.102213

Park, W., Jung, W.-S., Hong, K., Kim, Y.-Y., Kim, S.-W., & Park, H.-Y. (2020). Effects of moderate combined resistance-and aerobic-exercise for 12 weeks on body composition, cardiometabolic risk factors, blood pressure, arterial stiffness, and physical functions, among obese older men: a pilot study. International Journal of Environmental Research and Public Health, 17(19), 7233.

Pinter, J., Chazot, C., Stuard, S., Moissl, U., & Canaud, B. (2020). Sodium, volume and pressure control in haemodialysis patients for improved cardiovascular outcomes. Nephrology Dialysis Transplantation, 35(Supplement_2), ii23–ii30.

Pujiastuti, N., & Tesalonika, M. (2022). THE EFFECT OF AEROBIC LOW IMPACT EXERCISE ON CHANGES IN BLOOD PRESSURE PATIENTS WITH HYPERTENSION. Proceeding International Seminar of Islamic Studies, 3(1), 695–702.

Raven, P. B., & Chapleau, M. W. (2014). Blood pressure regulation XI: overview and future research directions. European Journal of Applied Physiology, 114, 579–586.

Rêgo, M. L. M., Cabral, D. A. R., Costa, E. C., & Fontes, E. B. (2019). Physical Exercise for Individuals with Hypertension: It Is Time to Emphasize its Benefits on the Brain and Cognition. Clinical Medicine Insights: Cardiology, 13. https://doi.org/10.1177/1179546819839411

Rizka, M., Ambardini, R. L., & Yudhistira, D. (2022). The effect of walking exercise on blood pressure and blood glucose in the elderly. International Journal of Kinesiology and Sports Science, 10(1), 30–35.

Rodriguez-Fuentes, G., Campo-Prieto, P., Souto, X. C., & Cancela Carral, J. M. (2024). Realidad virtual inmersiva y su influencia en parámetros fisiológicos de personas sanas (Immersive virtual reality and its influence on physiological parameters in healthy people). Retos, 51(SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 615–625. https://doi.org/10.47197/retos.v51.101164

Romero, M. T. O., Garrido Guzmán, M., & Vázquez, C. C. (2022). Self-efficacy and resilience: differences between fitness/bodybuilding athletes and non-athletes. Retos, 44(0 SE-Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas), 232–241. https://doi.org/10.47197/retos.v44i0.88937

Salah, H. M., Al’Aref, S. J., Khan, M. S., Al-Hawwas, M., Vallurupalli, S., Mehta, J. L., Mounsey, J. P., Greene, S. J., McGuire, D. K., & Lopes, R. D. (2021). Effect of sodium-glucose cotransporter 2 inhibitors on cardiovascular and kidney outcomes—systematic review and meta-analysis of randomized placebo-controlled trials. American Heart Journal, 232, 10–22.

Sari, A. P., Bafirman, Rifki, M. S., Syafrianto, D., & Kurniawan, R. (2023). The impact of maumere gymnastics on blood pressure reduction in hypertensive patients: A promising non-pharmacological intervention. Journal Sport Area, 8(3), 328–339. https://doi.org/10.25299/sportarea.2023.vol8(3).11727

Sari, A. P., Kurniawan, R., Indika, P. M., Wulan, T. S., Syafrianto, D., & Sari, D. N. (2023). Exploring the impact of aerobic gymnastics on reducing blood: with hypertension medications vs without hypertension medications. Journal of Physical Education and Sport, 23(12), 3253–3263. https://doi.org/10.7752/jpes.2023.12372

Sauge, E., Pechkovsky, D., Atmuri, N. D. P., Tehrani, A. Y., White, Z., Dong, Y., Cait, J., Hughes, M., Tam, A., & Donen, G. (2022). Losartan metabolite EXP3179 is a unique blood pressure-lowering AT1R antagonist with direct, rapid endothelium-dependent vasoactive properties. Vascular Pharmacology, 147, 107112.

Sawicka, K., Szczyrek, M., Jastrzebska, I., Prasal, M., Zwolak, A., & Daniluk, J. (2011). Hypertension–the silent killer. Journal of Pre-Clinical and Clinical Research, 5(2).

Selviani, I., Welis, W., Syafrianto, D., Okilanda, A., Sari, A. P., Resmana, R., Kurniawan, R., & Crisari, S. (2024). Effectiveness of Use of Kinesiotapping in the Condition of Pain Plantar Fasciitis. Community Practitioner, 21(2), 170–175. https://doi.org/10.5281/zenodo.10731288

Sharman, J. E., O’Brien, E., Alpert, B., Schutte, A. E., Delles, C., Olsen, M. H., Asmar, R., Atkins, N., Barbosa, E., & Calhoun, D. (2020). Lancet Commission on Hypertension group position statement on the global improvement of accuracy standards for devices that measure blood pressure. Journal of Hypertension, 38(1), 21.

Sumarni, S., Supriadi, I., Ma’mun, S., Suardi, D., Laela, A., Rusmiyadi, R., & Munajiyah, N. (2023). Pelatihan Senam Kebugaran Jasmani “Maumere Ceria” Pada Masyarakat Kampung Sadar, Desa Teluk Lada, Sobang - Pandeglang. Pandawa : Pusat Publikasi Hasil, 1(4), 1–23. https://doi.org/https://doi.org/10.61132/pandawa.v1i4.128

Tinawi, M. (2020). Hyponatremia and hypernatremia: a practical guide to disorders of water balance. Archives of Internal Medicine Research, 3(1), 74–95.

Varey, R. J. (2010). Marketing means and ends for a sustainable society: A welfare agenda for transformative change. Journal of Macromarketing, 30(2), 112–126.

Watson, F., & Austin, P. (2021). Physiology of human fluid balance. Anaesthesia & Intensive Care Medicine, 22(10), 644–651.

Welis, W., Effendi, R., Ilham, I., Mario, D. T., Bafirman, B., & Ihsan, N. (2024). Suplemento de harina de soja a base de proteínas para respaldar los efectos del entrenamiento con pesas sobre la hipertrofia muscular (Protein-Based Soy Flour Supplementation to Support the Effects of Weight Training on Muscle Hyper-trophy Suplemento de h. Retos, 51, 923–929. https://doi.org/10.47197/retos.v51.99162

Widiyanto, A., Putri, S. I., Fajriah, A. S., & Atmojo, J. T. (2021). Prevention of Hypertension at Home. Journal for Quality in Public Health, 4(2), 301–308.

Yildizhan, R., Yildizhan, B., Adali, E., Yoruk, P., Birol, F., & Suer, N. (2009). Effects of two combined oral contraceptives containing ethinyl estradiol 30 μg combined with either gestodene or drospirenone on hemostatic parameters, lipid profiles and blood pressure. Archives of Gynecology and Obstetrics, 280, 255–261.

Yu, J., Thout, S. R., Li, Q., Tian, M., Marklund, M., Arnott, C., Huffman, M. D., Praveen, D., Johnson, C., & Huang, L. (2021). Effects of a reduced-sodium added-potassium salt substitute on blood pressure in rural Indian hypertensive patients: a randomized, double-blind, controlled trial. The American Journal of Clinical Nutrition, 114(1), 185–193.

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2024-05-27

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Sari, A. P., Kurniawan, R., Selviani, I., Okilanda, A., Bafirman, B., Rifki, M. . S., Setiawan, E., Effendi, R., Putra, R. A., Pavlovic, R., & Jimenez, J. V. G. (2024). Terapia com exercícios Maumere e dieta com baixo teor de sal em pacientes hipertensos: um esforço para reduzir a pressão arterial: Maumere Exercise Therapy and Low Salt Diet in Hypertension Sufferers: An Effort to Lower Blood Pressure. Retos, 56, 1016–1025. https://doi.org/10.47197/retos.v56.106718

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Artigos de caráter científico: trabalhos de pesquisas básicas e/ou aplicadas.

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