Health Care Services Diagram And Summary
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The Impacts of Climate Change on Human Health in the United States: A Scientific Assessment
Climate change is a significant threat to the health of the American people. This scientific assessment examines how climate change is already affecting human health and the changes that may occur in the future.
Summary
Figure ES1: Examples of Climate Impacts on Human Health
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The diagram shows specific examples of how
can affect human
, now and in the future. These effects could occur at local, regional, or national scales. The examples listed in the first column are those described in each underlying chapter's
pathway diagram (see Guide to the Report). Moving from left to right along one health impact row, the three middle columns show how climate drivers affect an individual's or a community's exposure to a health threat and the resulting change in health outcome. The overall climate impact is summarized in the final gray column. For a more comprehensive look at how climate change affects health, and to see the environmental, institutional, social, and behavioral factors that play an interactive role in determining health outcomes, see the exposure pathway diagrams in chapters 2–8.
Climate change is a significant threat to the health of the American people. The impacts of human-induced climate change are increasing nationwide. Rising greenhouse gas concentrations result in increases in temperature, changes in precipitation, increases in the frequency and intensity of some extreme weather events, and rising sea levels. These climate change impacts endanger our health by affecting our food and water sources, the air we breathe, the weather we experience, and our interactions with the built and natural environments. As the climate continues to change, the risks to human health continue to grow.
Current and future climate impacts expose more people in more places to public health threats. Already in the United States, we have observed climate-related increases in our exposure to elevated temperatures; more frequent, severe, or longer-lasting
Every American is vulnerable to the health impacts associated with climate change. Increased exposure to multiple health threats, together with changes in
In recent years, scientific understanding of how climate change increases risks to human health has advanced significantly. Even so, the ability to evaluate, monitor, and project health effects varies across climate impacts. For instance, information on health outcomes differ in terms of whether complete, long-term datasets exist that allow quantification of observed changes, and whether existing models can project impacts at the timescales and geographic scales of interest. Differences also exist in the metrics available for observing or projecting different health impacts. For some health impacts, the available metrics only describe changes in risk of exposure, while for others, metrics describe changes in actual health outcomes (such as the number of new cases of a disease or an increase in deaths).
This assessment strengthens and expands our understanding of climate-related health impacts by providing a more definitive description of climate-related health burdens in the United States. It builds on the 2014 National Climate Assessment5 and reviews and synthesizes key contributions to the published literature. Acknowledging the rising demand for data that can be used to characterize how climate change affects health, this report assesses recent analyses that quantify observed and projected health impacts. Each chapter characterizes the strength of the scientific evidence for a given climate–health exposure pathway or "link" in the causal chain between a climate change impact and its associated health outcome. This assessment's findings represent an improvement in scientific confidence in the link between climate change and a broad range of threats to public health, while recognizing
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Climate Change and Human Health
Summary
Climate Change and Human Health
Figure ES2: Climate Change and Health
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Conceptual diagram illustrating the
pathways by which
affects human
. Here, the center boxes list some selected examples of the kinds of changes in climate drivers, exposure, and health outcomes explored in this report. Exposure pathways exist within the context of other factors that positively or negatively influence health outcomes (gray side boxes). Some of the key factors that influence
for individuals are shown in the right box, and include
and behavioral choices. Some key factors that influence vulnerability at larger scales, such as natural and built environments, governance and management, and institutions, are shown in the left box. All of these influencing factors can affect an individual's or a community's vulnerability through changes in exposure,
, and
and may also be affected by climate change.
The influences of weather and climate on human health are significant and varied. Exposure to health hazards related to climate change affects different people and different communities to different degrees. While often assessed individually, exposure to multiple climate change threats can occur simultaneously, resulting in compounding or cascading health impacts (see Figure ES2).
With climate change, the frequency, severity, duration, and location of weather and climate phenomena—like rising temperatures, heavy rains and droughts, and some other kinds of severe weather—are changing. This means that areas already experiencing health-threatening weather and climate phenomena, such as severe heat or hurricanes, are likely to experience worsening impacts, such as higher temperatures and increased storm intensity, rainfall rates, and
Climate change can therefore affect human health in two main ways: first, by changing the severity or frequency of health problems that are already affected by climate or weather factors; and second, by creating unprecedented or unanticipated health problems or health threats in places where they have not previously occurred.
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Temperature-Related Death and Illness
Summary
Temperature-Related Death and Illness
Figure ES3: Projected Changes in Deaths in U.S. Cities by Season
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This figure shows the projected increase in deaths due to warming in the summer months (hot season, April–September), the projected decrease in deaths due to warming in the winter months (cold season, October–March), and the projected net change in deaths compared to a 1990
period for the 209 U.S. cities examined, using the GFDL–CM3 and MIROC5
models (see Ch. 2: Temperature-Related Deaths and Illness). (Figure source: adapted from Schwartz et al. 2015)1
Increasing concentrations of
Key Finding 1: Future Increases in Temperature-Related Deaths
Based on present-day
Key Finding 2: Even Small Differences from Seasonal Average Temperatures Result in Illness and Death
Days that are hotter than usual in the summer or colder than usual in the winter are both associated with increased illness and death [Very High Confidence].
Key Finding 3: Changing Tolerance to Extreme Heat
An increase in population tolerance to extreme heat has been observed over time [Very High Confidence]. Changes in this tolerance have been associated with increased use of air conditioning, improved social responses, and/or physiological
Key Finding 4: Some Populations at Greater Risk
Older adults and children have a higher
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Air Quality Impacts
Summary
Air Quality Impacts
Figure ES4: Projected Change in Temperature, Ozone, and Ozone-Related Premature Deaths in 2030
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The air quality response to
can vary substantially by region across scenarios. Two downscaled global climate model projections using two greenhouse gas concentration pathways estimate increases in average daily maximum temperatures of 1.8°F to 7.2°F (1°C to 4°C) and increases of 1 to 5 parts per billion (ppb) in daily 8-hour maximum
in the year 2030 relative to the year 2000 throughout the continental United States. Unless reductions in ozone precursor
offset the influence of climate change, this "climate penalty" of increased ozone concentrations due to climate change would result in tens to thousands of additional ozone-related premature deaths per year, shown here as incidences per year by county (see Ch. 3: Air Quality Impacts). (Figure source: adapted from Fann et al. 2015)2
Changes in the climate affect the air we breathe, both indoors and outdoors. The changing climate has modified weather patterns, which in turn have influenced the levels and location of outdoor air pollutants such as ground-level ozone (
Key Finding 1: Exacerbated Ozone Health Impacts
Key Finding 2: Increased Health Impacts from Wildfires
Wildfires emit fine particles and
Key Finding 3: Worsened Allergy and Asthma Conditions
Changes in
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Extreme Events
Summary
Extreme Events
Figure ES5: Estimated Deaths and Billion Dollar Losses from Extreme Events in the United States, 2004–2013
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This figure provides 10-year estimates of fatalities related to
from 2004 to 2013,3 as well as estimated economic damages from 58
and
disaster events with losses exceeding $1 billion (see Smith and Katz 2013 to understand how total losses were calculated).4 These statistics are indicative of the human and economic costs of extreme weather events over this time period.
will alter the frequency, intensity, and geographic distribution of some of these extremes,5 which has consequences for
to
risks from extreme events. Trends and future projections for some extremes, including tornadoes, lightning, and wind storms are still uncertain (see Ch. 4: Extreme Events).
Climate change projections show that there will be continuing increases in the occurrence and severity of some extreme events by the end of the century, while for other extremes the links to climate change are more uncertain. Some regions of the United States have already experienced costly impacts—in terms of both lives lost and economic damages (see Figure ES5)—from observed changes in the frequency, intensity, or duration of certain extreme events (see Table 1 in Ch 4: Extreme Events). While it is intuitive that extremes can have health impacts such as death or injury during an event (for example, drowning during floods), health impacts can also occur before or after an extreme event, as individuals may be involved in activities that put their health at risk, such as disaster preparation and post-event cleanup. Health risks may also arise long after the event, or in places outside the area where the event took place, as a result of damage to property, destruction of assets, loss of
Key Finding 1: Increased Exposure to Extreme Events
Key Finding 2: Disruption of Essential Infrastructure
Many types of
Key Finding 3: Vulnerability to Coastal Flooding
Coastal populations with greater
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Vector-Borne Diseases
Summary
Vector-Borne Diseases
Figure ES6: Changes in Lyme Disease Case Report Distribution
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Maps show the reported cases of
in 2001 and 2014 for the areas of the country where Lyme disease is most common (the Northeast and Upper Midwest). Both the distribution and the numbers of cases have increased (see Ch. 5: Vector-Borne Diseases). (Figure source: adapted from
2015)6
Vector-borne diseases are illnesses that are transmitted by vectors, which include mosquitoes, ticks, and fleas. These vectors can carry infective pathogens such as viruses,
Key Finding 1: Changing Distributions of Vectors and Vector-Borne Diseases
Key Finding 2: Earlier Tick Activity and Northward Range Expansion
Ticks capable of carrying the
Key Finding 3: Changing Mosquito-Borne Disease Dynamics
Rising temperatures, changing precipitation patterns, and a higher frequency of some extreme
Key Finding 4: Emergence of New Vector-Borne Pathogens
Vector-borne pathogens are expected to emerge or reemerge due to the interactions of
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Water-Related Illness
Summary
Water-Related Illness
Figure ES7: Links between Climate Change , Water Quantity and Quality, and Human Exposure to Water-Related Illness
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Precipitation and temperature changes affect fresh and marine water quantity and quality primarily through urban, rural, and agriculture runoff. This runoff in turn affects human
to water-related illnesses primarily through contamination of drinking water, recreational water, and fish or shellfish (see Ch. 6: Water-Related Illness).
Across most of the United States, climate change is expected to affect fresh and marine water resources in ways that will increase people's exposure to water-related contaminants that cause illness (see Figure ES7). Water-related illnesses include waterborne diseases caused by pathogens, such as
Key Finding 1: Seasonal and Geographic Changes in Waterborne Illness Risk
Increases in water temperatures associated with
Key Finding 2: Runoff from Extreme Precipitation Increases Exposure Risk
Runoff from more frequent and intense extreme precipitation events will increasingly compromise recreational waters, shellfish harvesting waters, and sources of drinking water through increased introduction of pathogens and
Key Finding 3: Water Infrastructure Failure
Increases in some extreme
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Food Safety, Nutrition, and Distribution
Summary
Food Safety, Nutrition, and Distribution
Figure ES8: Farm to Table: The Potential Interactions of Rising CO2 and Climate Change on Food Safety and Nutrition
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The food system involves a network of interactions with our physical and biological environments as food moves from production to consumption, or from "farm to table." Rising
and
will affect the quality and distribution of food, with subsequent effects on food safety and nutrition (see Ch. 7: Food Safety).
A safe and nutritious food supply is a vital component of
Key Finding 1: Increased Risk of Foodborne Illness
Key Finding 3: Rising Carbon Dioxide Lowers Nutritional Value of Food
The nutritional value of agriculturally important food crops, such as wheat and rice, will decrease as rising levels of atmospheric
Key Finding 4: Extreme Weather Limits Access to Safe Foods
Increases in the frequency or intensity of some extreme
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Mental Health and Well-Being
Summary
Mental Health and Well-Being
Figure ES9: Impact of Climate Change on Physical, Mental, and Community Health
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At the center of the diagram are human figures representing adults, children, older adults, and people with disabilities. The left circle depicts
impacts including air quality,
, sea level rise and
, heat, storms, and
. The right circle shows the three interconnected
domains that will be affected by climate impacts: Medical and Physical Health, Mental Health, and Community Health (see Ch. 8: Mental Health). (Figure source: adapted from Clayton et al. 2014)8
The effects of global climate change on mental health and well-being are integral parts of the overall climate-related human health impacts. Mental health consequences of climate change range from minimal stress and distress symptoms to clinical disorders, such as
Key Finding 1: Exposure to Disasters Results in Mental Health Consequences
Many people exposed to
Key Finding 2: Specific Groups of People Are at Higher Risk
Specific groups of people are at higher
Key Finding 3: Climate Change Threats Result in Mental Health Consequences and Social Impacts
Many people will experience adverse mental
Key Finding 4: Extreme Heat Increases Risks for People with Mental Illness
People with mental illness are at higher
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Populations of Concern
Summary
Populations of Concern
Figure ES10: Determinants of Vulnerability
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Defining the determinants of
to
impacts associated with
, including
,
, and
(see Ch. 9: Populations of Concern). (Figure source: adapted from Turner et al. 2003)9
Climate change is already causing, and is expected to continue to cause, a range of health impacts that vary across different population groups in the United States. The vulnerability of any given group is a function of its sensitivity to climate change related health risks, its exposure to those risks, and its capacity for responding to or coping with climate variability and change (see Figure ES10). Vulnerable groups of people, described here as populations of concern, include those with low income, some communities of color, immigrant groups (including those with limited English proficiency), Indigenous peoples, children and pregnant women, older adults, vulnerable occupational groups, persons with disabilities, and persons with preexisting or
Key Finding 1: Vulnerability Varies Over Time and Is Place-Specific
Key Finding 1: Across the United States, people and communities differ in their exposures, their inherent
Key Finding 2: Health Impacts Vary with Age and Life Stage
People experience different inherent sensitivities to the impacts of
Key Finding 3: Social Determinants of Health Interact with Climate Factors to Affect Health Risks
Key Finding 4: Mapping Tools and Vulnerability Indices Identify Climate Health Risks
The use of geographic data and tools allows for more sophisticated mapping of
Recommended Citation
USGCRP, 2016: The Impacts of Climate Change on Human Health in the United States: A Scientific Assessment. Crimmins, A., J. Balbus, J.L. Gamble, C.B. Beard, J.E. Bell, D. Dodgen, R.J. Eisen, N. Fann, M.D. Hawkins, S.C. Herring, L. Jantarasami, D.M. Mills, S. Saha, M.C. Sarofim, J. Trtanj, and L. Ziska, Eds. U.S. Global Change Research Program, Washington, DC, 312 pp. http://dx.doi.org/10.7930/J0R49NQX
References
Source: https://health2016.globalchange.gov/
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