References
- 1Banerjee A, Chen S, Pasea L, et al. Excess Deaths in People with Cardiovascular Diseases during the COVID-19 Pandemic. Eur J Prev Cardiol. 2021; zwaa155. DOI: 10.1093/eurjpc/zwaa155
- 2Wadhera RK, Shen C, Gondi S, Chen S, Kazi DS, Yeh RW. Cardiovascular Deaths During the COVID-19 Pandemic in the United States. J Am Coll Cardiol. 2021; 77(2): 159–69. DOI: 10.1016/j.jacc.2020.10.055
- 3Ahmad FB, Anderson RN. The Leading Causes of Death in the US for 2020. JAMA. 2021; 325(18): 1829–30. DOI: 10.1001/jama.2021.5469
- 4Kontopantelis E, Mamas MA, Webb RT, et al. Excess Deaths from COVID-19 and Other Causes by Region, Neighbourhood Deprivation Level and Place of Death During the First 30 Weeks of the Pandemic in England and Wales: A Retrospective Registry Study. Lancet Reg Health Eur. 2021; 7:
100144 . DOI: 10.1016/j.lanepe.2021.100144 - 5Butt JH, Fosbøl EL, Gerds TA, et al. All-Cause Mortality and Location of Death in Patients with Established Cardiovascular Disease Before, During, and After the COVID-19 Lockdown: A Danish Nationwide Cohort Study. Eur Heart J. 2021; 42(15): 1516–23. DOI: 10.1093/eurheartj/ehab028
- 6Marinho MF, Torrens A, Teixeira R, et al. Racial Disparity in Excess Mortality in Brazil During COVID-19 Times. Eur J Public Health. 2021; ckab097. DOI: 10.1093/eurpub/ckab097
- 7Brant LCC, Nascimento BR, Teixeira RA, et al. Excess of Cardiovascular Deaths During the COVID-19 Pandemic in Brazilian Capital Cities. Heart. 2020; 106(24): 1898–905. DOI: 10.1136/heartjnl-2020-317663
- 8Baqui P, Bica I, Marra V, Ercole A, van der Schaar M. Ethnic and Regional Variations in Hospital Mortality from COVID-19 in Brazil: A Cross-Sectional Observational Study. Lancet Glob Health. 2020; 8(8): 1018–26. DOI: 10.1016/S2214-109X(20)30285-0
- 9Passos VMA, Brant LCC, Pinheiro PC, et al. Higher Mortality During the COVID-19 Pandemic in Socially Vulnerable Areas in Belo Horizonte: Implications for Vaccine Prioritization. Rev Bras Epidemiol. 2021; 24:
e210025 . DOI: 10.1590/1980-549720210025 - 10Universidade Federal de Pelotas.
EPICOVID19 . Pelotas: UFPel; 2020. Retrieved from:http://epidemio-ufpel.org.br/uploads/downloads/19c528cc30e4e5a90d9f71e56f8808ec.pdf . (assessed 01 October 2021). - 11Guedes MBOG, Assis SJC, Sanchis GJB, Araujo DN, Oliveira AGRDC, Lopes JM. COVID-19 in Brazilian Cities: Impact of Social Determinants, Coverage and Quality of Primary Health Care. PLoS One. 2021; 16(9):
e0257347 . DOI: 10.1371/journal.pone.0257347 - 12Belo Horizonte (MG). Coronavírus [Internet]. Belo Horizonte: Prefeitura de Belo Horizonte; 2021. Retrieved from:
https://prefeitura.pbh.gov.br/saude/coronavirus . (assessed 23 June 2021). - 13Dias RR, Santiago JAD, Madrini V,
Jr. , Mady C, Jatene FB. Impact of COVID-19 Pandemic in a Brazilian High-Volume Aortic Center. Braz J Cardiovasc Surg. 2021; 36(2): 145–19. DOI: 10.21470/1678-9741-2020-0567 - 14Instituto Brasileiro de Geografia e Estatística.
Belo Horizonte: Panorama [Internet] . Rio de Janeiro: IBGE; c2021. Retrieved from:https://cidades.ibge.gov.br/brasil/mg/belo-horizonte/panorama . (assessed 01 October 2021). - 15Ribeiro ALP, Duncan BB, Brant LC, Lotufo PA, Mill JG, Barreto SM. Cardiovascular health in Brazil: Trends and perspectives. Circulation. 2016; 133(4): 422–33. DOI: 10.1161/CIRCULATIONAHA.114.008727
- 16Agência Nacional de Saúde Suplementar (Brazil) [Internet]. Brasília, DF: Agência Nacional de Saúde Suplementar; 2021 [cited 2021 Jun 23]. Retrieved from:
https://www.gov.br/ans/pt-br . (assessed 23 June 2021). - 17Malta M, Cardoso LO, Bastos FI, Magnanini MM, Silva CM. STROBE Initiative: Guidelines on Reporting Observational Studies. Rev Saude Publica. 2010; 44(3): 559–65. DOI: 10.1590/S0034-89102010000300021
- 18GBD 2016 Brazil Collaborators. Burden of Disease in Brazil, 1990–2016: A Systematic Subnational Analysis for the Global Burden of Disease Study 2016. Lancet. 2018; 392(10149): 760–75. DOI: 10.1016/S0140-6736(18)31221-2
- 19Belo Horizonte (MG).
Índice de Vulnerabilidade da Saúde (IVS-BH) . Belo Horizonte: Prefeitura de Belo Horizonte; 2018. Retrieved from:https://prefeitura.pbh.gov.br/estatisticas-e-indicadores/indice-de-vulnerabilidade-da-saude . (assessed 02 October 2021). - 20Freire FHMA, Gonzaga MR, Queiroz BL.
Projeção Populacional Municipal com Estimadores Bayesianos, Brasil 2010–2030 . In: Sawyer DO (ed.), Seguridade Social Municipais: Projeto Brasil 3 Tempos. Brasília: Secretaria Especial de Assuntos Estratégicos da Presidência da República; 2019. - 21Centers for Disease Control and Prevention.
International Classification of Diseases (ICD 10) . Herndon: National Center for Health Statistics; 2020. - 22World Health Organization.
International Statistical Classification of Diseases and Related Health Problems: Tenth Revision . 2nd ed. Geneva: WHO Library; 2004. - 23Belo Horizonte (MG).
Reabertura Gradual de Atividades e Protocolos de Funcionamento: Decretos [Internet] . Belo Horizonte: Prefeitura de Belo Horizonte; 2021. Retrieved from:https://prefeitura.pbh.gov.br/reabertura-de-atividades . (assessed 02 October 2021). - 24Kirkwood BR, Sterne J.
Essential Medical Statistics . 2nd ed. Hoboken: Blackwell Publishers; 2003. - 25R Foundation.
The R Project for Statistical Computing [Internet] . Vienna: R Development Core Team; 2014. Retrieved from:https://www.r-project.org/foundation/ . (assessed 02 October 2021). - 26De Filippo O, D’Ascenzo F, Angelini F, et al. Reduced Rate of Hospital Admissions for ACS during Covid-19 Outbreak in Northern Italy. N Engl J Med. 2020; 383(1): 88–9. DOI: 10.1056/NEJMc2009166
- 27Chew NWS, Ow ZGW, Teo VXY, et al. The Global Impact of the COVID-19 Pandemic on STEMI Care: A Systematic Review and Meta-Analysis. Can J Cardiol. 2021; 37: 1450–59. DOI: 10.1016/j.cjca.2021.04.003
- 28Mohamed MO, Banerjee A, Clarke S, et al. Impact of COVID-19 on Cardiac Procedure Activity in England and Associated 30-Day Mortality. Eur Heart J Qual Care Clin Outcomes. 2021; 7(3): 247–56. DOI: 10.1093/ehjqcco/qcaa079
- 29Bhatt AS, Moscone A, McElrath EE, et al. Fewer Hospitalizations for Acute Cardiovascular Conditions During the COVID-19 Pandemic. J Am Coll Cardiol. 2020; 76(3): 280–8. DOI: 10.1016/j.jacc.2020.05.038
- 30Wosik J, Clowse MEB, Overton R, et al. Impact of the COVID-19 Pandemic on Patterns of Outpatient Cardiovascular Care. Am Heart J. 2021; 231: 1–5. DOI: 10.1016/j.ahj.2020.10.074
- 31Normando PG, Araujo-Filho JA, Fonseca GA, et al. Reduction in Hospitalization and Increase in Mortality Due to Cardiovascular Diseases During the COVID-19 Pandemic in Brazil. Arq Bras Cardiol. 2021; 116(3): 371–80. DOI: 10.36660/abc.20200821
- 32Tam CF, Cheung KS, Lam S, et al. Impact of Coronavirus Disease 2019 (COVID-19) Outbreak on ST-Segment-Elevation Myocardial Infarction Care in Hong Kong, China. Circ Cardiovasc Qual Outcomes. 2020; 13(4):
e006631 . DOI: 10.1161/CIRCOUTCOMES.120.006631 - 33Baldi E, Sechi GM, Mare C, et al. Out-of-Hospital Cardiac Arrest During the Covid-19 Outbreak in Italy. N Engl J Med. 2020; 383(5): 496–8. DOI: 10.1056/NEJMc2010418
- 34Guimarães NS, Carvalho TML, Machado-Pinto J, et al. Increased Home Death Due to Cardiopulmonary Arrest in Times of COVID-19 Pandemic. Arq Bras Cardiol. 2021; 116(2): 266–71. DOI: 10.36660/abc.20200547
- 35Cannata A, Watson SA, Daniel A, et al. Impact of the COVID-19 Pandemic on In-Hospital Mortality in Cardiovascular Disease: A Meta-Analysis. Eur J Prev Cardiol. 2021; zwab119. DOI: 10.1093/eurjpc/zwab119
- 36Rattka M, Dreyhaupt J, Winsauer C, et al. Effect of the COVID-19 Pandemic on Mortality of Patients with STEMI: A Systematic Review and Meta-Analysis. Heart. 2021; 107(6): 482–487. DOI: 10.1136/heartjnl-2020-318360
- 37Sanmarchi F, Golinelli D, Lenzi J, et al. Exploring the Gap Between Excess Mortality and COVID-19 Deaths in 67 Countries. JAMA Netw Open. 2021; 4(7):
e2117359 . DOI: 10.1001/jamanetworkopen.2021.17359 - 38Woolf SH, Chapman DA, Sabo RT, Weinberger DM, Hill L. Excess Deaths From COVID-19 and Other Causes, March–April 2020. JAMA. 2020; 324(5): 510–3. DOI: 10.1001/jama.2020.11787
- 39Cosentino N, Bartorelli AL, Marenzi G. Time to Treatment Still Matters in ST-Elevation Myocardial Infarction: A Call to Maintain Treatment Effectiveness during the COVID-19 Pandemic. Eur Heart J Cardiovasc Pharmacother. 2020; 6(6): 408–9. DOI: 10.1093/ehjcvp/pvaa054
- 40Wu J, Mamas MA, Mohamed MO, et al. Place and Causes of Acute Cardiovascular Mortality During the COVID-19 Pandemic. Heart. 2021; 107(2): 113–119. DOI: 10.1136/heartjnl-2020-317912
- 41Williamson EJ, Walker AJ, Bhaskaran K, et al. Factors Associated with COVID-19-Related Death Using OpenSAFELY. Nature. 2020; 584(7821): 430–6. DOI: 10.1038/s41586-020-2521-4
- 42Belo Horizonte (MG).
Proposta para Acompanhamento de Usuários com Condições Crônicas na APS, no Contexto da Pandemia pelo Vírus da SARS-CoV-2 . Belo Horizonte: Prefeitura de Belo Horizonte; 2020. - 43Secretaria de Atenção Primária à Saúde.
Nota Técnica N° 6/2020-COSAPI/CGCIVI/DAPES/SAPS/MS . Brasília: Ministério da Saúde; 2020. - 44Malta DC, Gomes CS, Silva AGD, et al. Use of Health Services and Adherence to Social Distancing by Adults with Noncommunicable Diseases During the COVID-19 Pandemic, Brazil, 2020. Cien Saude Colet. 2021; 26(7): 2833–42. DOI: 10.1590/1413-81232021267.00602021
- 45World Health Organization.
Health Inequity and the Effects of COVID-19 . Geneva: WHO; 2020. - 46Center for Disease Control and Prevent.
Health Equity Considerations and Racial and Ethnic Minority Groups [Internet] . Atlanta: CDC; c2021. Retrieved from:https://www.cdc.gov/coronavirus/2019-ncov/community/health-equity/race-ethnicity.html . (assessed 02 October 2021). - 47Malta DC, Campos MO, Oliveira MM, et al. Noncommunicable chronic disease risk and protective factor prevalence among adults in Brazilian state capital cities, 2013. Epidemiol Serv Saúde. 2015; 24(3): 373–87. DOI: 10.5123/S1679-49742015000200006
- 48Nascimento BR, Brant LCC, Yadgir S, et al. Trends in Prevalence, Mortality, and Morbidity Associated with High Systolic Blood Pressure in Brazil from 1990 to 2017: Estimates from the ‘Global Burden of Disease 2017’ (GBD 2017) Study. Popul Health Metr. 2020; 18(Suppl 1): 17. DOI: 10.1186/s12963-020-00218-z
- 49Eberly LA, Khatana SAM, Nathan AS, et al. Telemedicine Outpatient Cardiovascular Care During the COVID-19 Pandemic: Bridging or Opening the Digital Divide? Circulation. 2020; 142(5): 510–2. DOI: 10.1161/CIRCULATIONAHA.120.048185
- 50NCD Alliance.
A Global NCD Agenda for Resilience and Recovery from COVID-19 . Geneva: NCD Alliance; 2021. - 51Lopes R, Vargas M. Mortes por Causas Mal Definidas Saltam 30% na Pandemia de Covid. Folha de S.Paulo [Internet]. 25 September 2021. Retrieved from:
https://www1.folha.uol.com.br/equilibrioesaude/2021/09/mortes-por-causas-mal-definidas-cresce . (assessed 01 October 2021). - 52Laurenti R, Jorge MHPM, Gotlieb SLD. Mortality information: the use of international rules for the selection of the underlying cause. Rev Bras Epidemiol. 2009; 12(2): 195–203. DOI: 10.1590/S1415-790X2009000200009
- 53Minas Gerais (Brazil).
Secretaria de Estado de Saúde. Plano Estadual de Contingência para Emergência em Saúde: Infecção Humana pelo SARS-CoV-2 (doença pelo coronavirus – COVID-2019) . Belo Horizonte: Secretaria de Estado de Saúde; 2020. Retrieved from:https://coronavirus.saude.mg.gov.br/images/2021/09/Plano_de_Contingencia_-_Revisao_3_-_03_09_2021.pdf . (assessed 23 June 2021). - 54Brazil.
Ministério da Saúde. Portaria no 245, de 24 de março de 2020. Inclui procedimento na Tabela de Procedimentos, Medicamentos, Órteses, Próteses e Materiais Especiais (OPM) do Sistema Único de Saúde (SUS), para Atendimento Exclusivo de Pacientes com Diagnóstico de Infecção pelo COVID-19 […] . Brasília, DF, Diário Oficial da União. 30 April 2020. Retrieved from:https://www.in.gov.br/en/web/dou/-/portaria-n-245-de-24-de-marco-de-2020-*-254675204 . (assessed 23 June 2021). - 55Pinto FJ, Piñeiro D, Banerjee A, Perel P, Pervan B, Eiselé JL. World Heart Day 2021: COVID-19, Digital Health, and Tackling Cardiovascular Disease. Lancet; 2021. DOI: 10.1016/S0140-6736(21)02144-9
- 56Malta DC, Gomes CS, Souza PRB,
Jr. , et al. Factors Associated with Increased Cigarette Consumption in the Brazilian Population During the COVID-19 Pandemic. Cad Saude Publica. 2021; 37(3):e00252220 . DOI: 10.1590/0102-311x00252220 - 57Malta DC, Szwarcwald CL, Barros MBA, et al. The COVID-19 Pandemic and Changes in Adult Brazilian Lifestyles: A Cross-Sectional Study, 2020. Epidemiol Serv Saude. 2020; 29(4):
e2020407 . DOI: 10.1590/s1679-49742020000400026 - 58Werneck AO, Silva DR, Malta DC, et al. Associations of Sedentary Behaviours and Incidence of Unhealthy Diet During the COVID-19 Quarantine in Brazil. Public Health Nutr. 2021; 24(3): 422–426. DOI: 10.1017/S1368980020004188
