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1
Silica-associated lung disease: An old-world exposure in modern industries
Barnes, H.; Goh, N. S. L.; Leong, T. L.; Hoy, R.
Official Journal of the Asian Pacific Society of Respirology
(2019)
CC2
Silicosis is not a new disease; the impact of silica dust on respiratory function was observed by Hippocrates in 430 B.C. and in the 16th century by Agricol. In 1713, Rammazini described silicotic nodules in post-mortems of stone cutters presentin
...
g with respiratory symptoms. In the mid-late 1800s, the introduction of mechanized tools in the mining sector rapidly increased levels of silica exposure, resulting in an increase in cases and our understanding of silicosis.
more
A Situational Assessment and Five-YearAction Plan for the Africa CDC Strengthening Regional Public Health Institutions and Capacity for Surveillance and Response Program
Epidemiology of type 2 diabetes in India
Pradeepa, R.; Mohan, V.
Indian Journal of Ophthalmology 69(11):p 2932-2938, November 2021.
(2021)
CC2
The burden of diabetes is high and increasing globally, and in developing economies like India, mainly fueled by the increasing prevalence of overweight/obesity and unhealthy lifestyles. The estimates in 2019 showed that 77 million individuals had diabetes in India, which is expected to rise to over
...
134 million by 2045. Approximately 57% of these individuals remain undiagnosed. Type 2 diabetes, which accounts for majority of the cases, can lead to multiorgan complications, broadly divided into microvascular and macrovascular complications. These complications are a significant cause for increased premature morbidity and mortality among individuals with diabetes, leading to reduced life expectancy and financial and other costs of diabetes leading to profound economic burden on the Indian health care system. The risk for diabetes is largely influence by ethnicity, age, obesity and physical inactivity, unhealthy diet, and behavioral habits in addition to genetics and family history. Good control of blood sugar blood pressure and blood lipid levels can prevent and/or delay the onset of diabetes complications. The prevention and management of diabetes and associated complications is a huge challenge in India due to several issues and barriers, including lack of multisectoral approach, surveillance data, awareness regarding diabetes, its risk factors and complications, access to health care settings, access to affordable medicines, etc. Thus, effective health promotion and primary prevention, at both, individual and population levels are the need of the hour to curb the diabetes epidemic and reduce diabetes-related complications in India
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Childhood Respiratory Diseases & the Environment learning objectives
•To understand how the respiratory tract is affected by the environment
•To describe respiratory diseases linked to the environment
•To list one population-level intervention and one personal-level intervention for d
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ecreasing risk of respiratory diseases
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Cardiovascular diseases, principally ischemic heart disease (IHD), are the most important cause of death and disability in the majority of low- and lower-middle-income countries (LLMICs). In these countries, IHD mortality rates are significantly gre
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ater in individuals of a low socioeconomic status (SES).
Three important focus areas for decreasing IHD mortality among those of low SES in LLMICs are (1) acute coronary care; (2) cardiac rehabilitation and secondary prevention; and (3) primary prevention. Greater mortality in low SES patients with acute coronary syndrome is due to lack of awareness of symptoms in patients and primary care physicians, delay in reaching healthcare facilities, non-availability of thrombolysis and coronary revascularization, and the non-affordability of expensive medicines (statins, dual anti-platelets, renin-angiotensin system blockers). Facilities for rapid diagnosis and accessible and affordable long-term care at secondary and tertiary care hospitals for IHD care are needed. A strong focus on the social determinants of health (low education, poverty, working and living conditions), greater healthcare financing, and efficient primary care is required. The quality of primary prevention needs to be improved with initiatives to eliminate tobacco and trans-fats and to reduce the consumption of alcohol, refined carbohydrates, and salt along with the promotion of healthy foods and physical activity. Efficient primary care with a focus on management of blood pressure, lipids and diabetes is needed. Task sharing with community health workers, electronic decision support systems, and use of fixed-dose combinations of blood pressure-lowering drugs and statins can substantially reduce risk factors and potentially lead to large reductions in IHD. Finally, training of physicians, nurses, and health workers in IHD prevention should be strengthened.
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The article discusses the significant impact of chronic obstructive pulmonary disease (COPD) as a global health issue, with cigarette smoking as the main risk factor. However, in developing countries, the causes of COPD are often multifactorial, inv
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olving environmental tobacco smoke, biomass fuel smoke, dust, fumes, childhood illnesses, and tuberculosis (TB). Up to half of COPD patients in these regions are non-smokers. The article emphasizes that while smoking is crucial, other risk factors contribute significantly to COPD, particularly in low- and middle-income countries. It highlights the need for targeted research and public health strategies to address these diverse contributors to COPD, especially in Africa.
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Effective surveillance and monitoring of noncommunicable diseases (NCDs) and their risk factors are essential for informing evidence-based public health policies, addressing health inequities, and ensuring progress toward global and regional targets. By tracking trends in NCDs, their modifiable risk
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factors such as tobacco use, unhealthy diets, physical inactivity, harmful use of alcohol, and air pollution, along with biological risk factors such as overweight and obesity, high blood pressure (hypertension), and elevated blood glucose (diabetes), policymakers can identify emerging threats, target vulnerable populations, allocating resources efficiently. Reliable data also enable countries to evaluate interventions, adjust policies, and strengthen health systems to reduce the burden of NCDs.
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The growing burden of noncommunicable diseases (NCDs), including disability, violence and injuries, has devastating health consequences for individuals, families and communities and threatens to overwhelm health systems. It is recognized that failure to act on noncommunicable diseases in the short t
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erm would lead to massive cumulative output losses.
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Monitoring is a crucial element in any successful programme. It is important to
know if health care facilities – and ultimately countries – are meeting the agreed
goals and objectives for preventing and managing cardiovascular diseases (CVD).
Monitoring is the on-going collection, management
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and use of information to
assess whether an activity or programme is proceeding according to plan and/
or achieving defined targets. Not all outcomes of interest can be monitored. Clear
outcomes must be identified that relate to the most important changes expected to result from the project and to what is realistic and measurable within the timescale of the project. Once these outcomes have been articulated, indicators can be chosen that best measure whether the desired outcomes are being met.
To allow progress to be monitored, this module provides a set of indicators on
CVD management. Agreeing on a set of indicators allows countries to compare
progress in CVD management and treatment across different districts or
subnational jurisdictions, as well as at a facility level, identify where performance
can be improved, and track trends in implementation over time. Monitoring
these indicators also helps identify problems that may be encountered so that
implementation efforts can be redirected.
This module starts from the collection of data at facility level, which is then
“transferred up” the system: facility-level data are aggregated at subnational level
to produce reports that allow tracking of facility and subnational performance over time and allow for comparison among facilities. National-level data are obtained through population-based surveys.
Implementing a monitoring system requires action at many levels. At national and
subnational levels, staff can determine how best to integrate data elements into
existing data collection systems – such as the routine service-delivery data that are collected through facility-level Health Management Information Systems (HMIS).
In the facility setting, personnel must be aware of what data are needed. Sample
data-collection tools are included, recognizing that countries use different datamanagement systems for HMIS, so the CVD monitoring tools will be adapted to work with the HMIS system being used by the country, such that the indicators can be collected with minimal disruption/work to existing systems and tools
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Appropriate use and withdrawal of inhaled corticosteroids (ICS) in patients with chronic obstructive pulmonary disease (COPD)
Román-Rodríguez, M.; Tsiligianni, I.; Wiliams, S.; et al.
International Primary Care - Respiratory Group
(2020)
CC2
The document "Appropriate use and withdrawal of inhaled corticosteroids (ICS) in patients with chronic obstructive pulmonary disease (COPD)" from the IPCRG provides guidance on when to start, adjust, or discontinue ICS in COPD treatment. It highligh
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ts the benefits and risks, emphasizing personalized treatment based on patient history, exacerbation frequency, and eosinophil count, while detailing how to optimize bronchodilator use to manage symptoms effectively.
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This is an update (third edition) of the BACPR Standards & Core Components and represents current evidence-based best practice and a pragmatic overview of the structure and function of Cardiovascular Prevention and Rehabilitation Programmes (CPRPs) in the UK. The previously described seven standards
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have now been reduced to six but without sacrificing any of the key elements and with a greater emphasis placed on measurable clinical outcomes, audit and certification. Similarly, the second edition provided an overview of seven core components felt to be essential for the delivery of quality prevention and rehabilitation, and this too has been reduced to six. The interplay between cardio-protective therapies and medical risk factors is almost impossible to disentangle for the vast majority of patients and even if specific drug therapies are deployed exclusively for risk factor modulation, the indirect effect will also be cardio-protective. Thus, these have been combined into a single core component – medical risk management.
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The Noncommunicable Diseases (NCD) Data Portal offers comprehensive data on NCDs such as cardiovascular diseases, cancer, diabetes, and chronic respiratory diseases. It provides country-specific information on NCD mortality rates, risk factors, and national responses, facilitating analysis and compa
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rison across regions. The portal also includes resources like publications and tools to support global efforts in NCD prevention and control.
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The Noncommunicable Diseases (NCD) Data Portal offers comprehensive data on NCDs such as cardiovascular diseases, cancer, diabetes, and chronic respiratory diseases. It provides country-specific information on NCD mortality rates, risk factors, and national responses, facilitating analysis and compa
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rison across regions. The portal also includes resources like publications and tools to support global efforts in NCD prevention and control.
more
The Noncommunicable Diseases (NCD) Data Portal offers comprehensive data on NCDs such as cardiovascular diseases, cancer, diabetes, and chronic respiratory diseases. It provides country-specific information on NCD mortality rates, risk factors, and national responses, facilitating analysis and compa
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rison across regions. The portal also includes resources like publications and tools to support global efforts in NCD prevention and control.
more
The Noncommunicable Diseases (NCD) Data Portal offers comprehensive data on NCDs such as cardiovascular diseases, cancer, diabetes, and chronic respiratory diseases. It provides country-specific information on NCD mortality rates, risk factors, and national responses, facilitating analysis and compa
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rison across regions. The portal also includes resources like publications and tools to support global efforts in NCD prevention and control.
more
The Noncommunicable Diseases (NCD) Data Portal offers comprehensive data on NCDs such as cardiovascular diseases, cancer, diabetes, and chronic respiratory diseases. It provides country-specific information on NCD mortality rates, risk factors, and national responses, facilitating analysis and compa
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rison across regions. The portal also includes resources like publications and tools to support global efforts in NCD prevention and control.
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HEARTS provides a set of locally adaptable tools for strengthening the
management of CVD in primary health care.
HEARTS is designed to enhance implementation of WHO PEN by providing:
• operational guidance on further integrating CVD management
• technical guidance on evaluating the impact of
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CVD care on patient outcomes.
For countries not using WHO PEN, CVD management can still be integrated into
primary health care. The process of implementing HEARTS will vary, depending
on country context, and may require a significant reorienting and strengthening
of the health system. At some sites, existing CVD management services may be
reoriented toward a risk-based approach, while other sites may adopt a public
health approach, strengthening management of particular risk factors such as
hypertension. Whether or not introducing CVD management into primary care is a
new intervention, successful implementation will require engagement with national and local health planners, managers, service providers, and other stakeholders.
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Many features of the environment have been found to exert an important influence on cardiovascular disease (CVD) risk, progression, and severity. Changes in the environment due to migration to different geographic locations, modifications in lifesty
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le choices, and shifts in social policies and cultural practices alter CVD risk, even in the absence of genetic changes. Nevertheless, the cumulative impact of the environment on CVD risk has been difficult to assess
and the mechanisms by which some environment factors influence CVD remain obscure. Human environments are complex; and their natural, social and personal domains are highly variable due to diversity in human ecosystems, evolutionary histories, social structures, and individual choices. Accumulating evidence supports the notion that ecological features such as the diurnal cycles of
light and day, sunlight exposure, seasons, and geographic characteristics of the natural environment such altitude, latitude and greenspaces are important determinants of cardiovascular health and CVD risk. In highly developed societies, the influence of the natural environment is moderated by the physical characteristics of the social environments such as the built environment
and pollution, as well as by socioeconomic status and social networks. These attributes of the
social environment shape lifestyle choices that significantly modify CVD risk. An understanding
of how different domains of the environment, individually and collectively, affect CVD risk could
lead to a better appraisal of CVD, and aid in the development of new preventive and therapeutic
strategies to limit the increasingly high global burden of heart disease and stroke.
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Infographics and data
Air pollution is a major environmental risk factor and contributor to chronic, noncommunicable diseases (NCDs). However, most public health approaches to NCD prevention focus on behavioural and biomedical risk factors, rather than environmental risk factors such as air pollution. This article discus
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ses the implications of such a focus. It then outlines the opportunities for those in public health and environmental science to work together across three key areas to address air pollution, NCDs and climate change: (a) acknowledging the shared drivers, including corporate determinants; (b) taking a ‘co-benefits’ approach to NCD prevention; and (c) expanding prevention research and evaluation methods through investing in systems thinking and intersectoral, cross-disciplinary collaborations.
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