Literature DB >> 31548271

Climate change threatens the achievement of effective universal healthcare.

Renee N Salas, Ashish K Jha.   

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Year:  2019        PMID: 31548271      PMCID: PMC6753637          DOI: 10.1136/bmj.l5302

Source DB:  PubMed          Journal:  BMJ        ISSN: 0959-8138


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Climate change is threatening to undermine the achievement of universal health care (UHC) through negative health outcomes and healthcare system disruptions Climate change and UHC agendas bolster each other as they both strive to improve health and achieve health equity Many regions of the world with the highest vulnerability to climate change are also those with the lowest UHC coverage. These regions stand to have enormous gains through an integrated approach UHC plans should work to improve the understanding of climate change, use novel climate sensitive financial frameworks, and incorporate the mitigation of greenhouse gases They should strive for evidence based climate adaptation that protects health and prioritise health system climate resiliency The sustainable development goals (SDGs) target many different aspects of human wellbeing; they are interconnected and some might seem to create tension (such as economic growth in SDG 8 and ecological stewardship in SDGs 12 and 15).1 These interconnections are particularly clear for universal health coverage (UHC) (SDG 3.8), which will be substantially harder to achieve without climate action (SDG 13). Climate change threatens the very tenets of UHC; the regions of the world most vulnerable to climate change face the greatest difficulties in achieving it. United Nations countries agreed to achieve UHC by 2030, which requires optimal access to essential, high quality services without sacrificing affordability.2 This extends beyond merely providing “coverage” and has three main components: a broad set of healthcare services must be accessible, affordable, and of sufficiently high quality to improve health outcomes. To track progress on SDG 3.8, the World Health Organization (WHO) and World Bank created a service coverage index to measure the extent of coverage of “essential health services.” Although coverage has increased globally, only 22 countries currently have a “high coverage” index.2 Climate change is already threatening many health achievements of the past 50 years and will continue to do so at an accelerated pace unless we take action.3 WHO estimates that climate change will cause an additional 250 000 deaths a year by 2030, when taking into account just five exposure pathways (undernutrition, malaria, diarrheal disease, dengue, and heat).4 Our understanding of how climate change affects health is still growing, but we know it will have multiple direct and indirect negative effects, including greater heat related morbidity, undernutrition, increasing water and foodborne illnesses, and mental health problems.5 The largest driver for greenhouse gases globally is the combustion of fossil fuels,6 7 and the resultant air pollution leads to an additional seven million deaths annually.6 Although the health effects of climate change are wide reaching, they can still be mitigated if we take action now. Beyond direct health effects, climate change will make it more difficult to achieve UHC. The global community has the urgent opportunity to tackle two pressing challenges of our time: UHC and climate change. In this piece, we discuss the pathways through which climate change will create barriers for achieving UHC and how policy makers should mitigate these harms.

How climate change threatens UHC

Achieving effective UHC even in the absence of climate change is difficult.8 Climate change is a “meta problem,” creating strong headwinds that will make ensuring access to affordable, high quality care more challenging (fig 1). Climate change threatens UHC through five key pathways.
Fig 1

How climate change threatens the achievement of universal health coverage

How climate change threatens the achievement of universal health coverage

Changes in disease burdens (type and distribution)

The effects of climate change will interact with other forces that affect health (box 1). Non-communicable diseases accounted for 71% of global deaths in 2016, and three of the top causes (cardiovascular disease, chronic respiratory disease, and diabetes) are exacerbated by climate change, as is mental health.5 9 10 11 Climate change is also increasing the frequency and geographic spread of infectious diseases. A temperature rise of 1°C is linked to a 3.4% rise in cardiovascular mortality, a 3.6% rise in respiratory mortality, and a 1.4% rise in cerebrovascular mortality13 High temperatures are linked to a 6% increase in hospital admissions for coronary artery disease14; cardiovascular events are also associated with exposure to air pollution—such as byproducts from the burning of fossil fuels (for example, fine particulate matter (PM2.5)) and ozone—which is amplified by temperature changes15 Higher temperatures, increased intensity of wildfires, more severe and longer pollen seasons, and ground level air pollution like ozone and PM2.5 increase the burden of respiratory disease6 15 Early data found that diabetes incidence increases by 0.314 per 1000 people for every 1°C rise in temperature,9 although more research is needed Extreme weather, forced displacement, and violence can precipitate mental health concerns; extreme heat can exacerbate existing conditions11 Chronic kidney disease of unknown origin has been linked to increasing heat stress in many regions, especially in agricultural communities16 Vectorial capacity for the transmission of malaria has increased by over 20% in higher elevations in Africa since 1950.3 WHO predicts major future rises in mortality due to climate change related increases in malaria in central and eastern regions of sub-Saharan Africa4 Since the 1950s, vectorial capacity for the transmission of dengue has increased by 7.8-9.6%3 Warmer ambient temperatures have been associated with foodborne illnesses, like salmonella17 A 1°C rise in temperature may lead to a 0.8-2.1% increase in hand, foot, and mouth disease18 At higher temperatures, risk of work related injuries and illnesses increases among both indoor and outdoor workers19 Outdoor workers in particular face increased risk of heat related illness as heatwaves become more frequent and last longer20 These disease burdens related to climate change pose added obstacles to UHC by increasing overall use and costs of healthcare.12 As UHC programmes seek to define the essential services that they will cover and to build financial models for their costs, these growing and novel burdens will make appropriate coverage more challenging. In addition, tools used by policy makers for prioritisation in coverage decisions will need to be updated to reflect shifts in disease burdens from climate change.

Population displacement and migration

The number of displaced people is predicted to be 143 million by 2050 in just three regions (Latin America, sub-Saharan Africa, and South Asia), in part because of climate change.21 Displacement might be driven by property loss, resource shortages, and conflicts. These consequences of climate change occur on the backdrop of broader political and societal issues, such as immigration policies and conflict, showing the complexities of the problem.22 Ensuring that a largely stationary population can access a broad set of high quality services is hard enough; delivering UHC to a migratory population is substantially more challenging. Chad, for example, is experiencing increased migration secondary to drought with concerns for strain on public health services and health complications.23 Displaced populations have distinct health related needs, as they may have different rates of conditions, face mental health problems, and bring novel diseases. The influx of people alone might pose a challenge to local healthcare systems—particularly in locations with no or low coverage—as they struggle to manage the increased patient volume and provide culturally sensitive care.

Rising poverty

The World Bank estimates that climate change will push 100 million more people into poverty by 2030 due to factors like property loss, increased health burdens, and decreased crop yields.24 Poorer populations are particularly susceptible to the threats posed by climate change, creating a cycle in which climate change exacerbates existing social and political issues by both creating poverty and trapping people within it. Worsening poverty will contribute to higher burdens of disease, placing more stress on healthcare systems, and will put greater strains on government budgets for countries seeking to provide affordable, accessible care.

Disruption of healthcare infrastructure and care delivery

Extreme weather events related to climate change, like more intense hurricanes and floods, can cause structural damage or power outages at healthcare facilities (box 2). Even undamaged facilities can be affected by supply chain disruptions—due to factory disruption, increased demand, or transportation disruptions—and subsequent resource shortages.

Low health risk country: hurricane Maria in the United States

Hurricane Maria struck the US in 2017, causing major damage to Puerto Rico. Devastating rainfall and landslides, both attributed to climate change, battered the island.25 Combined with ineffective governance and disaster relief from the US government, the storm took a major toll on the island. The initial death count was 64, but subsequent household survey estimates place the loss of life at nearly 5700.26 The average household went 84 days without electricity, 68 days without water, and 41 days without cellular phone coverage.26 Nearly a third of households reported a disruption to health services, including 14% who were unable to access medications, 10% who were unable to use medical device equipment that required power, 9% who reported closed medical facilities, and 6% who found a lack of doctors. Nearly 9% of the most remote households could not reach emergency medical services by phone.26 Healthcare disruption was not limited to Puerto Rico. Approximately 44% of US intravenous fluid was produced on this island, and damage to the factory led to shortages that lasted months at hospitals throughout the US and other countries.27 The cascading effects of this one storm show how vulnerable supply chains are and the importance of fortifying climate resilience in healthcare systems.

High health risk country: Bangladesh and flooding of the Brahmaputra River

Bangladesh is a low lying, densely populated country with enormous vulnerability to rising sea levels and climate driven extreme weather, including flooding, cyclones, and drought.28 In 2017, climate change (along with other factors, such as deforestation and higher population density) contributed to the flooding of the Brahmaputra River, which destroyed nearly 500 community health clinics. This is catastrophic in a country with approximately five medical doctors and eight hospital beds per 10 000 people.29 The destruction of already limited healthcare infrastructure had a drastic effect on access to care. Solutions are difficult, as the climate driven weather is constantly creating and destroying floating islands, which makes establishing permanent clinics or hospitals impossible. Forced to develop innovative solutions, some communities have launched “floating hospitals.”28 These consist of boats that bring basic medical services to people who live in the riverine islands. A boat can see about 60 000 patients a year over hundreds of miles. Countries already at extreme risk, like Bangladesh, represent early examples of the enormous climate change related healthcare challenges we face and the need for creative solutions. Infrastructure damage limits a facility’s ability to deliver essential, high quality services. People might be unable to access care due to transportation difficulties, caused by road damage or the unavailability of emergency medical services. Systems might face barriers to maintaining public health and preventive strategies, such as the surveillance of emerging threats. These many obstacles are likely to place additional cost burdens on health systems, which will trickle down to the individual or insurance provider, further exacerbating affordability concerns.

Health workforce disruptions and impairments

There is already a shortage and maldistribution of well trained healthcare workers around the world.30 This is likely to be exacerbated by climate change, as the workforce is also affected by the forces driving migration. Quality of care is poor in many settings, with high rates of misdiagnosis and inappropriate treatments, which is probably due to inadequate training.31 As outlined in box 3, the workforce might be further impaired through cognitive effects of climate change and knowledge deficits, causing substantial problems in areas that already lack high quality training.

Climate sensitive health and travel concerns

Healthcare workers might provide lower quality of care if they have impaired cognitive function due to climate change (extreme heat,32 nutritional deficiencies, and infectious diseases). Heat is of particular concern where air conditioning is permanently or frequently unavailable or water for cooling is scarce. Healthcare workers might also have difficulty reporting to work during extreme weather situations, such as when flooding disrupts roadways.

Climate change and health knowledge deficits

Climate change alters existing disease burdens through various routes. Although a growing proportion of the healthcare workforce recognises that climate change negatively affects health, there are gaps in understanding around the details.33 34 Only 19% of disease control workers in China understood that poor people were at greater risk of climate change related health problems. In addition, only one-third had a good understanding of how climate change affects the transmission of infectious diseases.34 The healthcare workforce is one of the most important factors in UHC—both the availability of providers and the quality of care they provide. Shortages caused by geographic redistribution of providers might hinder access to care, whereas inadequate training might lead to misdiagnosis, ineffective disease surveillance, and, ultimately, harm to patients.

Vulnerable countries

The countries that are most vulnerable to climate change35 are often those that face the greatest barriers to achieving UHC (fig 2). This is not surprising—both are related to the country’s economic strength and availability of resources. Because of the unique challenges they face, these regions have enormous opportunity to take a more integrated approach to their agendas. This would not be easy; given the financial restraints many of these countries already face related to healthcare, they might see tackling climate change as impossible. Implementing and optimising UHC, however, is a key strategy to minimise the health burdens of climate change and will probably be financially beneficial in the long run. Some countries might benefit more than others, but all can make immense gains from taking an integrated systems approach.
Fig 2

A: Global map of climate change vulnerability. This map uses climate change vulnerability data from the Notre Dame Global Adaptation Initiative (ND-GAIN) Country Index,35 which is based on indicators of adaptive capacity, sensitivity, and exposure and includes health, food, ecosystems, habitat, water, and infrastructure. Countries are categorised by quintile. B: Global map of universal health coverage. This map uses the universal health coverage index of essential service coverage data from the World Health Organization,36 which is based on indicators for reproductive, maternal/newborn/child health, infectious diseases, non-communicable diseases, service capacity, and access. Countries are categorised by quintile.

A: Global map of climate change vulnerability. This map uses climate change vulnerability data from the Notre Dame Global Adaptation Initiative (ND-GAIN) Country Index,35 which is based on indicators of adaptive capacity, sensitivity, and exposure and includes health, food, ecosystems, habitat, water, and infrastructure. Countries are categorised by quintile. B: Global map of universal health coverage. This map uses the universal health coverage index of essential service coverage data from the World Health Organization,36 which is based on indicators for reproductive, maternal/newborn/child health, infectious diseases, non-communicable diseases, service capacity, and access. Countries are categorised by quintile.

Integrated solutions

Countries have already taken important steps towards tackling climate change through the Paris Agreement, which was called “the strongest health agreement of this century” by WHO and outlines the benefits of climate mitigation for health and development.6 Global leaders can and must incorporate climate related threats into their considerations related to UHC (box 4). Understand how individuals use healthcare for climate sensitive conditions and determine how different UHC models will affect this Gather experts across sectors (as in the One Health approach) to develop an agenda for tackling these issues together Develop joint metrics tracking both SDGs (3 and 13) Use carbon pricing that includes climate driven health and healthcare system costs Finance UHC from the elimination of fossil fuel subsidies37 and carbon pricing Frame transition to renewable energy around the anticipated health and health equity benefits Ensure that transition to renewable energy is urgent and extensive in healthcare facilities, fuelled by advocacy from healthcare professionals and political leaders Broad divestment from fossil fuel companies to numerous sectors, especially healthcare Data driven approach to identifying those most vulnerable to heat exposure in a city, how they access care, and how the public health infrastructure can best protect them through adaptation interventions Translate data into effective surveillance systems and efficient sharing of emerging health concerns across borders Train medical professionals in skills that transcend current specialty boundaries, such as disaster preparedness training for hospitalists, and knowledge of emerging climate sensitive threats, such as new geographic distributions of infectious diseases Map out climate hazards, such as flooding and other extreme weather implications, for local regions using different future climate models (eg, moderate to severe) Redesign facilities (eg, protection from flooding), relocate generators (eg, roof placement), and engage with the local health community (eg, coordination between local hospitals) Create incentives for strategic geographic placement of the health workforce and use health technologies like predictive staffing models and telemedicine

Improved understanding and integrated agendas

New research to facilitate data driven solutions would be helpful, but we already have sufficient understanding to integrate the UHC and climate action agendas. These two communities need open dialogue with each other—with cross sectorial representation—and to push jointly for bold and innovative solutions.

Novel financial frameworks

Financial limitations are often seen as a major barrier to climate action, but this field actually provides a major opportunity for economic benefit. We need forward thinking financial solutions to stimulate action in conjunction with political will. By 2030, climate action is estimated to create $23 trillion (£19 trillion; €21 trillion) in investment opportunity in just 21 emerging market economies21—and this may translate to healthcare. We also need to include health and healthcare climate burdens in discussions around the economics of climate action. As of February 2019, 46 national and 28 subnational jurisdictions have implemented or planned carbon pricing, with novel opportunities to integrate with UHC (box 4).21

Climate change mitigation

A rapid transition to renewable energy, which is both feasible and cost effective, would have direct health benefits now and would minimise health burdens in the future. But we need political will to take the urgent and bold steps necessary. Mitigation must also specifically occur in the health sector, which contributes to a disproportionate amount of carbon emissions.39 Health professionals can play an important role in advocating for policies that will incentivise this transition.

Adaptation to climate change

UHC is itself a fundamental adaptation intervention as it mitigates the negative health burdens of climate change. Meanwhile, we need investment in research to understand the health risks of climate change in local populations. There then needs to be political and fiscal support to translate this research into interventions and infrastructure that protect the most vulnerable. Another essential component of achieving UHC is the development of a dynamic health workforce that can respond to the changing needs of a region. Healthcare workers will be on the front lines of disaster response and disease surveillance efforts, so appropriate education on local climate health is critical to improve their adaptive capacity.

Health system climate resiliency

As climate change exacerbates existing threats and exposes new vulnerabilities, health systems must introduce forward thinking, data driven resiliency measures that are based on the unprecedented challenges of the future. This mandates global assessments of climate hazards and health system vulnerabilities, which can then be tailored to unique local environments. The results of these assessments can then be implemented into strategic capital investment priorities and appropriate health workforce management. Meanwhile, creative workforce models and integration of technology will further bolster health system capacities.

Conclusions

We are at an important point in time where action—or inaction—on the intersecting issues of climate change and UHC will drive the health of nations for decades to come. Estimates show that we have about a decade to decrease greenhouse gas emissions to avoid the most catastrophic health outcomes.40 Thus, the opportunities to transform health are enormous, and the time to act is now. As global decision makers aim to improve the health and quality of life for all people, they must not overlook the effects that climate change will have on disease burden and healthcare infrastructure. Only through bold, innovative, and cross disciplinary action can we tackle these unprecedented complex challenges and ensure a healthier world for future generations.
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1.  Financing universal health coverage by cutting fossil fuel subsidies.

Authors:  Vinay Gupta; Ranu Dhillon; Robert Yates
Journal:  Lancet Glob Health       Date:  2015-06       Impact factor: 26.763

2.  A New Era of Climate Medicine - Addressing Heat-Triggered Renal Disease.

Authors:  Cecilia Sorensen; Ramon Garcia-Trabanino
Journal:  N Engl J Med       Date:  2019-08-22       Impact factor: 91.245

Review 3.  The Imperative for Climate Action to Protect Health.

Authors:  Andy Haines; Kristie Ebi
Journal:  N Engl J Med       Date:  2019-01-17       Impact factor: 91.245

4.  The effects of ambient temperatures on the risk of work-related injuries and illnesses: Evidence from Adelaide, Australia 2003-2013.

Authors:  Blesson M Varghese; Adrian G Barnett; Alana L Hansen; Peng Bi; Scott Hanson-Easey; Jane S Heyworth; Malcolm R Sim; Dino L Pisaniello
Journal:  Environ Res       Date:  2018-12-13       Impact factor: 6.498

5.  Mortality in Puerto Rico after Hurricane Maria.

Authors:  Nishant Kishore; Domingo Marqués; Ayesha Mahmud; Mathew V Kiang; Irmary Rodriguez; Arlan Fuller; Peggy Ebner; Cecilia Sorensen; Fabio Racy; Jay Lemery; Leslie Maas; Jennifer Leaning; Rafael A Irizarry; Satchit Balsari; Caroline O Buckee
Journal:  N Engl J Med       Date:  2018-05-29       Impact factor: 91.245

6.  Diabetes incidence and glucose intolerance prevalence increase with higher outdoor temperature.

Authors:  Lisanne L Blauw; N Ahmad Aziz; Martijn R Tannemaat; C Alexander Blauw; Anton J de Craen; Hanno Pijl; Patrick C N Rensen
Journal:  BMJ Open Diabetes Res Care       Date:  2017-02-20

7.  Rethinking assumptions about delivery of healthcare: implications for universal health coverage.

Authors:  Jishnu Das; Liana Woskie; Ruma Rajbhandari; Kamran Abbasi; Ashish Jha
Journal:  BMJ       Date:  2018-05-21

8.  The 2018 report of the Lancet Countdown on health and climate change: shaping the health of nations for centuries to come.

Authors:  Nick Watts; Markus Amann; Nigel Arnell; Sonja Ayeb-Karlsson; Kristine Belesova; Helen Berry; Timothy Bouley; Maxwell Boykoff; Peter Byass; Wenjia Cai; Diarmid Campbell-Lendrum; Jonathan Chambers; Meaghan Daly; Niheer Dasandi; Michael Davies; Anneliese Depoux; Paula Dominguez-Salas; Paul Drummond; Kristie L Ebi; Paul Ekins; Lucia Fernandez Montoya; Helen Fischer; Lucien Georgeson; Delia Grace; Hilary Graham; Ian Hamilton; Stella Hartinger; Jeremy Hess; Ilan Kelman; Gregor Kiesewetter; Tord Kjellstrom; Dominic Kniveton; Bruno Lemke; Lu Liang; Melissa Lott; Rachel Lowe; Maquins Odhiambo Sewe; Jaime Martinez-Urtaza; Mark Maslin; Lucy McAllister; Slava Jankin Mikhaylov; James Milner; Maziar Moradi-Lakeh; Karyn Morrissey; Kris Murray; Maria Nilsson; Tara Neville; Tadj Oreszczyn; Fereidoon Owfi; Olivia Pearman; David Pencheon; Steve Pye; Mahnaz Rabbaniha; Elizabeth Robinson; Joacim Rocklöv; Olivia Saxer; Stefanie Schütte; Jan C Semenza; Joy Shumake-Guillemot; Rebecca Steinbach; Meisam Tabatabaei; Julia Tomei; Joaquin Trinanes; Nicola Wheeler; Paul Wilkinson; Peng Gong; Hugh Montgomery; Anthony Costello
Journal:  Lancet       Date:  2018-11-28       Impact factor: 79.321

9.  Increased coronary heart disease and stroke hospitalisations from ambient temperatures in Ontario.

Authors:  Li Bai; Qiongsi Li; Jun Wang; Eric Lavigne; Antonio Gasparrini; Ray Copes; Abderrahmane Yagouti; Richard T Burnett; Mark S Goldberg; Sabit Cakmak; Hong Chen
Journal:  Heart       Date:  2017-11-03       Impact factor: 5.994

10.  Reduced cognitive function during a heat wave among residents of non-air-conditioned buildings: An observational study of young adults in the summer of 2016.

Authors:  Jose Guillermo Cedeño Laurent; Augusta Williams; Youssef Oulhote; Antonella Zanobetti; Joseph G Allen; John D Spengler
Journal:  PLoS Med       Date:  2018-07-10       Impact factor: 11.069

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  11 in total

Review 1.  Blood pressure management in an ecosystem context.

Authors:  Yuichiro Yano
Journal:  Hypertens Res       Date:  2020-05-21       Impact factor: 3.872

2.  'We have a plan for that': a qualitative study of health system resilience through the perspective of health workers managing antenatal and childbirth services during floods in Cambodia.

Authors:  Dell D Saulnier; Dawin Thol; Ir Por; Claudia Hanson; Johan von Schreeb; Helle Mölsted Alvesson
Journal:  BMJ Open       Date:  2022-01-03       Impact factor: 2.692

3.  Climate change: an urgent priority for health policy and systems research.

Authors:  Robert Marten; Sonam Yangchen; Diarmid Campbell-Lendrum; Elena Villalobos Prats; Maria Purificacion Neira; Abdul Ghaffar
Journal:  Health Policy Plan       Date:  2021-03-26       Impact factor: 3.344

4.  Universal Health Coverage in Fragile and Humanitarian Contexts.

Authors:  Dick Chamla; Claudia Vivas-Torrealba
Journal:  Int J Health Policy Manag       Date:  2020-02-01

5.  Decarbonising healthcare in low and middle income countries: potential pathways to net zero emissions.

Authors:  Fawzia N Rasheed; Jerome Baddley; Poornima Prabhakaran; Enrique Falceto De Barros; K Srinath Reddy; Nelzair Araujo Vianna; Robert Marten
Journal:  BMJ       Date:  2021-11-09

6.  Stress-testing the resilience of the Austrian healthcare system using agent-based simulation.

Authors:  Michaela Kaleta; Jana Lasser; Elma Dervic; Liuhuaying Yang; Johannes Sorger; D Ruggiero Lo Sardo; Stefan Thurner; Alexandra Kautzky-Willer; Peter Klimek
Journal:  Nat Commun       Date:  2022-07-23       Impact factor: 17.694

Review 7.  [New challenges for intensive care medicine due to climate change and global warming].

Authors:  T Bein; C Karagiannidis; M Gründling; M Quintel
Journal:  Anaesthesist       Date:  2020-07       Impact factor: 1.041

8.  Primary health care and the climate crisis.

Authors:  Sowmya Kadandale; Robert Marten; Sarah L Dalglish; Dheepa Rajan; David B Hipgrave
Journal:  Bull World Health Organ       Date:  2020-09-28       Impact factor: 9.408

9.  A Systems Understanding Underpins Actions at the Climate and Health Nexus.

Authors:  Montira J Pongsiri; Andrea M Bassi
Journal:  Int J Environ Res Public Health       Date:  2021-03-01       Impact factor: 3.390

Review 10.  Positive Externalities of Climate Change Mitigation and Adaptation for Human Health: A Review and Conceptual Framework for Public Health Research.

Authors:  Jean C Bikomeye; Caitlin S Rublee; Kirsten M M Beyer
Journal:  Int J Environ Res Public Health       Date:  2021-03-03       Impact factor: 3.390

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