Bijaya K Padhi, Abhay M Gaidhane, Prakasini Satapathy, Ganesh Bushi, Suhas Ballal, Pooja Bansal, Balvir S Tomar, Ayash Ashraf, M Ravi Kumar, Pramod Rawat, Mohammed Garout, Fatimah S Aljebaly, Amal A Sabour, Maha A Alshiekheid, Nawal A Al Kaabi, Hayam A Alrasheed, Maha F Al-Subaie, Ali A Rabaan, Ahmed Saif, Sarvesh Rustagi, Quazi Syed Zahiruddin, Muhammed Shabil
{"title":"评估生态、气候和社会经济因素对印度特定年龄疟疾发病率的影响:利用全球疾病负担研究(2010-2019 年)的混合模型方法。","authors":"Bijaya K Padhi, Abhay M Gaidhane, Prakasini Satapathy, Ganesh Bushi, Suhas Ballal, Pooja Bansal, Balvir S Tomar, Ayash Ashraf, M Ravi Kumar, Pramod Rawat, Mohammed Garout, Fatimah S Aljebaly, Amal A Sabour, Maha A Alshiekheid, Nawal A Al Kaabi, Hayam A Alrasheed, Maha F Al-Subaie, Ali A Rabaan, Ahmed Saif, Sarvesh Rustagi, Quazi Syed Zahiruddin, Muhammed Shabil","doi":"10.1186/s12936-024-05151-2","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>Malaria continues to be a critical public health concern in India, predominantly driven by complex interplays of ecological, climatic, and socioeconomic factors.</p><p><strong>Methods: </strong>This study aimed to assess the association between climatic variables (temperature and precipitation) and malaria incidence across India from 2010 to 2019, utilizing data from the Global Historical Weather and Climate Data for climate metrics and the Global Burden of Disease Study for malaria incidence rates. Generalized Linear Mixed Models (GLMMs) with a Poisson distribution were employed to analyze the data, adjusting for socio-economic status, as indexed by the Human Development Index (HDI).</p><p><strong>Results: </strong>The results indicated a declining trend in both the number of malaria cases and age-specific incidence rates (ASIR) over the study period. In 2010, India reported approximately 20.7 million cases with an ASIR of 1688.86 per 100,000 population, which significantly reduced to 9.8 million cases and an ASIR of 700.80 by 2019. High malaria incidence was consistently observed in the states of Jharkhand and Odisha, whereas Sikkim reported the lowest numbers. Statistical analysis identified significant associations between malaria incidence and both temperature deviations and precipitation levels, with variations also linked to HDI, suggesting better detection and reporting capabilities in more developed areas.</p><p><strong>Conclusion: </strong>The study underscores the critical interactions between climatic variables and socio-economic factors in shaping the trends of malaria incidence across India. These findings highlight the necessity for adaptive, localized public health strategies that integrate environmental monitoring with socio-economic data to efficiently predict and manage malaria outbreaks.</p>","PeriodicalId":18317,"journal":{"name":"Malaria Journal","volume":"23 1","pages":"332"},"PeriodicalIF":2.4000,"publicationDate":"2024-11-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11549856/pdf/","citationCount":"0","resultStr":"{\"title\":\"Assessing the impact of ecological, climatic, and socioeconomic factors on age-specific malaria incidence in India: a mixed-model approach using the Global Burden of Disease Study (2010-2019).\",\"authors\":\"Bijaya K Padhi, Abhay M Gaidhane, Prakasini Satapathy, Ganesh Bushi, Suhas Ballal, Pooja Bansal, Balvir S Tomar, Ayash Ashraf, M Ravi Kumar, Pramod Rawat, Mohammed Garout, Fatimah S Aljebaly, Amal A Sabour, Maha A Alshiekheid, Nawal A Al Kaabi, Hayam A Alrasheed, Maha F Al-Subaie, Ali A Rabaan, Ahmed Saif, Sarvesh Rustagi, Quazi Syed Zahiruddin, Muhammed Shabil\",\"doi\":\"10.1186/s12936-024-05151-2\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>Malaria continues to be a critical public health concern in India, predominantly driven by complex interplays of ecological, climatic, and socioeconomic factors.</p><p><strong>Methods: </strong>This study aimed to assess the association between climatic variables (temperature and precipitation) and malaria incidence across India from 2010 to 2019, utilizing data from the Global Historical Weather and Climate Data for climate metrics and the Global Burden of Disease Study for malaria incidence rates. Generalized Linear Mixed Models (GLMMs) with a Poisson distribution were employed to analyze the data, adjusting for socio-economic status, as indexed by the Human Development Index (HDI).</p><p><strong>Results: </strong>The results indicated a declining trend in both the number of malaria cases and age-specific incidence rates (ASIR) over the study period. In 2010, India reported approximately 20.7 million cases with an ASIR of 1688.86 per 100,000 population, which significantly reduced to 9.8 million cases and an ASIR of 700.80 by 2019. High malaria incidence was consistently observed in the states of Jharkhand and Odisha, whereas Sikkim reported the lowest numbers. Statistical analysis identified significant associations between malaria incidence and both temperature deviations and precipitation levels, with variations also linked to HDI, suggesting better detection and reporting capabilities in more developed areas.</p><p><strong>Conclusion: </strong>The study underscores the critical interactions between climatic variables and socio-economic factors in shaping the trends of malaria incidence across India. 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Assessing the impact of ecological, climatic, and socioeconomic factors on age-specific malaria incidence in India: a mixed-model approach using the Global Burden of Disease Study (2010-2019).
Background: Malaria continues to be a critical public health concern in India, predominantly driven by complex interplays of ecological, climatic, and socioeconomic factors.
Methods: This study aimed to assess the association between climatic variables (temperature and precipitation) and malaria incidence across India from 2010 to 2019, utilizing data from the Global Historical Weather and Climate Data for climate metrics and the Global Burden of Disease Study for malaria incidence rates. Generalized Linear Mixed Models (GLMMs) with a Poisson distribution were employed to analyze the data, adjusting for socio-economic status, as indexed by the Human Development Index (HDI).
Results: The results indicated a declining trend in both the number of malaria cases and age-specific incidence rates (ASIR) over the study period. In 2010, India reported approximately 20.7 million cases with an ASIR of 1688.86 per 100,000 population, which significantly reduced to 9.8 million cases and an ASIR of 700.80 by 2019. High malaria incidence was consistently observed in the states of Jharkhand and Odisha, whereas Sikkim reported the lowest numbers. Statistical analysis identified significant associations between malaria incidence and both temperature deviations and precipitation levels, with variations also linked to HDI, suggesting better detection and reporting capabilities in more developed areas.
Conclusion: The study underscores the critical interactions between climatic variables and socio-economic factors in shaping the trends of malaria incidence across India. These findings highlight the necessity for adaptive, localized public health strategies that integrate environmental monitoring with socio-economic data to efficiently predict and manage malaria outbreaks.
期刊介绍:
Malaria Journal is aimed at the scientific community interested in malaria in its broadest sense. It is the only journal that publishes exclusively articles on malaria and, as such, it aims to bring together knowledge from the different specialities involved in this very broad discipline, from the bench to the bedside and to the field.