COPD
Read the topic background here, then explore the labeled visual and structured learning explanations on this page.
Read explanation on this page ↓ See diagram ↓Chronic obstructive pulmonary disease — on-site reading
This reference extract addresses Chronic obstructive pulmonary disease, a related subject. It does not cover every part of COPD.. The article introduction is reproduced here, so you do not need to leave MedAtlas to read it. It may not match the latest official medical guidance.
Chronic obstructive pulmonary disease (COPD) is a long-term lung condition that makes it progressively harder to breathe. It occurs when the airways and lung tissue become damaged, leading to reduced airflow and reduced efficiency of oxygen exchange in the lungs. COPD develops gradually over time, and while it cannot currently be cured, treatments and lifestyle changes can help control symptoms and slow disease progression. Early diagnosis and prompt treatment are recommended.
The condition includes two related lung problems: chronic bronchitis and emphysema. Chronic bronchitis involves ongoing inflammation of the airways, causing excess mucus production, coughing, and chest discomfort. Emphysema involves damage to the small air sacs in the lungs, which reduces the lungs' ability to transfer oxygen into the bloodstream. Many people with COPD experience shortness of breath, persistent cough, wheezing, and reduced exercise tolerance. Symptoms can become more severe during acute flare-ups, which can be triggered by viral and bacterial infections and exposure to irritants. People with COPD generally display a combination of these symptoms, and are likely to have additional health issues.
COPD can develop due to multiple factors, most often involving long-term exposure to lung irritants. The strongest risk factors are tobacco smoke, air pollution, and workplace dust and chemical fumes. Smoke from fuels used for cooking and heating is a primary risk factor in some places, particularly for women and young children. Factors affecting lung development in early life such as respiratory infections, poor nutrition, and physical inactivity, can increase risk of COPD in later life. Genetics can also play a role.
The diagnosis of COPD is usually confirmed using lung function tests that measure how well air moves in and out of the lungs. While COPD cannot currently be cured, treatment can significantly improve quality of life. Common treatments include inhaled medications that help open the airways, pulmonary rehabilitation programmes that improve fitness and breathing control, and oxygen therapy for people with advanced disease. Quitting smoking is strongly recommended, as is reducing exposure to other lung irritants.
As of 2021, COPD affected about 213 million people worldwide. COPD typically occurs in people over the age of 35–40, and risk increases with age. In 2021, COPD was the fourth-biggest cause of death, responsible for approximately 5% of total deaths. Almost 90% of COPD deaths in those under 70 years of age occur in low and middle income countries. The number of deaths is projected to increase further because of continued exposure to risk factors and an ageing population.
How this connects to General Medicine
Molecular investigation links DNA variation and gene regulation to RNA, proteins and cellular function. Assays measure selected molecular features with finite sensitivity and specificity; a detected variant or transcript does not automatically establish biological causation or a clinical diagnosis.
Text credit: Wikipedia contributors, “Chronic obstructive pulmonary disease”, original article · authors & revision history · CC BY-SA 4.0. Unmodified opening extract, accessed 24 September 2026. This Wikipedia-derived section is provided under CC BY-SA 4.0; the independent MedAtlas notes and design are separate works.
COPD · visual study map
Scalable vector illustration. Labeled conceptual map, not a precise anatomical, histological or diagnostic image.The wording in this learning map is adapted from the attributed Wikipedia background section below (CC BY-SA 4.0).
What the underlying subject studies
Internal medicine integrates the patient history, examination and selected investigations to explain symptoms across interacting organ systems. A diagnosis is a testable clinical hypothesis, not a result inferred from one symptom or diagram.
How mechanisms and evidence connect
Build a mechanistic differential by distinguishing structural, infectious, inflammatory, metabolic, genetic, vascular and medication-related processes as relevant. Consider time course, comorbidities and warning findings.
How to develop a sound explanation
For revision, connect normal physiology to possible dysfunction, characteristic patterns and the tests that may discriminate between alternatives. Actual diagnosis and therapy must follow current supervised clinical practice.
References and verification (optional)
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