Apnea, hypoventilation and pulmonary hypertension: Pathology review

Last updated: November 01, 2022

Apnea, hypoventilation and pulmonary hypertension: Pathology review

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Diagnoses

Anatomy of the coronary circulation
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Coronary artery disease: Pathology review
Anticoagulants: Direct factor inhibitors
Anticoagulants: Heparin
Antiplatelet medications
Thrombolytics
Renal failure: Pathology review
ACE inhibitors, ARBs and direct renin inhibitors
Anatomy of the lungs and tracheobronchial tree
Anatomy clinical correlates: Pleura and lungs
Alveolar surface tension and surfactant
Breathing cycle and regulation
Gas exchange in the lungs, blood and tissues
Pulmonary shunts
Regulation of pulmonary blood flow
Respiratory system anatomy and physiology
Ventilation
Ventilation-perfusion ratios and V/Q mismatch
Zones of pulmonary blood flow
Obstructive lung diseases: Pathology review
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy clinical correlates: Other abdominal organs
Bile secretion and enterohepatic circulation
Liver anatomy and physiology
Cirrhosis: Pathology review
Anatomy of the heart
Anatomy of the coronary circulation
Anatomy of the inferior mediastinum
Anatomy of the superior mediastinum
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Cardiac afterload
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Cardiac work
Cardiovascular system anatomy and physiology
Changes in pressure-volume loops
Frank-Starling relationship
Measuring cardiac output (Fick principle)
Microcirculation and Starling forces
Pressure-volume loops
Stroke volume, ejection fraction, and cardiac output
Heart failure: Pathology review
Anatomy of the coronary circulation
Anatomy clinical correlates: Heart
Cardiovascular system anatomy and physiology
Atherosclerosis and arteriosclerosis: Pathology review
Coronary artery disease: Pathology review
Anatomy of the cerebral cortex
Anatomy of the limbic system
Anatomy clinical correlates: Cerebral hemispheres
Dementia: Pathology review
Mood disorders: Pathology review
Selective serotonin reuptake inhibitors
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Monoamine oxidase inhibitors
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Pancreas histology
Diabetes mellitus: Pathology review
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Lipid-lowering medications: Statins
Miscellaneous lipid-lowering medications
Enteric nervous system
Esophageal motility
Gastrointestinal system anatomy and physiology
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Hypertension: Pathology review
ACE inhibitors, ARBs and direct renin inhibitors
Adrenergic antagonists: Beta blockers
Calcium channel blockers
Thiazide and thiazide-like diuretics
Anatomy of the thyroid and parathyroid glands
Thyroid and parathyroid gland histology
Endocrine system anatomy and physiology
Thyroid hormones
Hyperthyroidism: Pathology review
Anatomy of the thyroid and parathyroid glands
Thyroid and parathyroid gland histology
Endocrine system anatomy and physiology
Thyroid hormones
Hypothyroidism: Pathology review
Introduction to the skeletal system
Bone remodeling and repair
Bone disorders: Pathology review
Anatomy of the abdominal viscera: Pancreas and spleen
Anatomy clinical correlates: Other abdominal organs
Pancreas histology
Pancreatic secretion
Pancreatitis: Pathology review
Anatomy of the diaphragm
Anatomy of the larynx and trachea
Anatomy of the lungs and tracheobronchial tree
Anatomy of the nose and paranasal sinuses
Anatomy of the pleura
Bones and joints of the thoracic wall
Muscles of the thoracic wall
Vessels and nerves of the thoracic wall
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Thoracic wall
Alveolar surface tension and surfactant
Anatomic and physiologic dead space
Breathing cycle and regulation
Gas exchange in the lungs, blood and tissues
Lung volumes and capacities
Pulmonary shunts
Regulation of pulmonary blood flow
Respiratory system anatomy and physiology
Ventilation
Ventilation-perfusion ratios and V/Q mismatch
Zones of pulmonary blood flow
Pneumonia: Pathology review
Drug misuse, intoxication and withdrawal: Alcohol: Pathology review
Drug misuse, intoxication and withdrawal: Hallucinogens: Pathology review
Drug misuse, intoxication and withdrawal: Other depressants: Pathology review
Drug misuse, intoxication and withdrawal: Stimulants: Pathology review
Atypical antidepressants
Nasal, oral and pharyngeal diseases: Pathology review
Anatomy of the abdominal viscera: Kidneys, ureters and suprarenal glands
Anatomy of the female urogenital triangle
Anatomy of the male urogenital triangle
Anatomy of the perineum
Anatomy of the urinary organs of the pelvis
Anatomy clinical correlates: Female pelvis and perineum
Anatomy clinical correlates: Male pelvis and perineum
Renal system anatomy and physiology
Urinary tract infections: Pathology review
Anatomy of the lungs and tracheobronchial tree
Fascia, vessels and nerves of the upper limb
Vessels and nerves of the forearm
Vessels and nerves of the gluteal region and posterior thigh
Anatomy clinical correlates: Pleura and lungs
Clot retraction and fibrinolysis
Coagulation (secondary hemostasis)
Platelet plug formation (primary hemostasis)
Deep vein thrombosis and pulmonary embolism: Pathology review
Anticoagulants: Direct factor inhibitors
Anticoagulants: Heparin
Anticoagulants: Warfarin

Clinical conditions

Abdominal quadrants, regions and planes
Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the abdominal viscera: Innervation of the abdominal viscera
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy of the abdominal viscera: Pancreas and spleen
Anatomy of the abdominal viscera: Small intestine
Anatomy of the anterolateral abdominal wall
Anatomy of the diaphragm
Anatomy of the gastrointestinal organs of the pelvis and perineum
Anatomy of the inguinal region
Anatomy of the muscles and nerves of the posterior abdominal wall
Anatomy of the peritoneum and peritoneal cavity
Anatomy of the vessels of the posterior abdominal wall
Anatomy clinical correlates: Anterior and posterior abdominal wall
Anatomy clinical correlates: Inguinal region
Anatomy clinical correlates: Other abdominal organs
Anatomy clinical correlates: Peritoneum and diaphragm
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Appendicitis: Pathology review
Diverticular disease: Pathology review
Gallbladder disorders: Pathology review
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Inflammatory bowel disease: Pathology review
Pancreatitis: Pathology review
Acid-base map and compensatory mechanisms
Buffering and Henderson-Hasselbalch equation
Physiologic pH and buffers
The role of the kidney in acid-base balance
Acid-base disturbances: Pathology review
Anatomy of the abdominal viscera: Kidneys, ureters and suprarenal glands
Kidney histology
Renal system anatomy and physiology
Renal failure: Pathology review
Anatomy of the basal ganglia
Anatomy of the blood supply to the brain
Anatomy of the brainstem
Anatomy of the cerebellum
Anatomy of the cerebral cortex
Anatomy of the cranial meninges and dural venous sinuses
Anatomy of the diencephalon
Anatomy of the limbic system
Anatomy of the ventricular system
Anatomy of the white matter tracts
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Anatomy clinical correlates: Cerebellum and brainstem
Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Posterior blood supply to the brain
Nervous system anatomy and physiology
Amnesia, dissociative disorders and delirium: Pathology review
Central nervous system infections: Pathology review
Cerebral vascular disease: Pathology review
Dementia: Pathology review
Drug misuse, intoxication and withdrawal: Alcohol: Pathology review
Drug misuse, intoxication and withdrawal: Hallucinogens: Pathology review
Drug misuse, intoxication and withdrawal: Other depressants: Pathology review
Drug misuse, intoxication and withdrawal: Stimulants: Pathology review
Mood disorders: Pathology review
Schizophrenia spectrum disorders: Pathology review
Seizures: Pathology review
Traumatic brain injury: Pathology review
Anticonvulsants and anxiolytics: Benzodiazepines
Atypical antipsychotics
Typical antipsychotics
Blood histology
Blood components
Erythropoietin
Extrinsic hemolytic normocytic anemia: Pathology review
Intrinsic hemolytic normocytic anemia: Pathology review
Macrocytic anemia: Pathology review
Microcytic anemia: Pathology review
Non-hemolytic normocytic anemia: Pathology review
Introduction to the central and peripheral nervous systems
Introduction to the muscular system
Introduction to the skeletal system
Introduction to the somatic and autonomic nervous systems
Anatomy of the ascending spinal cord pathways
Anatomy of the descending spinal cord pathways
Anatomy of the muscles and nerves of the posterior abdominal wall
Anatomy of the vertebral canal
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Back pain: Pathology review
Positive and negative predictive value
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Type I and type II errors
Anatomy of the breast
Anatomy of the coronary circulation
Anatomy of the heart
Anatomy of the inferior mediastinum
Anatomy of the lungs and tracheobronchial tree
Anatomy of the pleura
Anatomy of the superior mediastinum
Bones and joints of the thoracic wall
Muscles of the thoracic wall
Vessels and nerves of the thoracic wall
Anatomy clinical correlates: Breast
Anatomy clinical correlates: Heart
Anatomy clinical correlates: Mediastinum
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Thoracic wall
Cardiovascular system anatomy and physiology
Respiratory system anatomy and physiology
Aortic dissections and aneurysms: Pathology review
Coronary artery disease: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Pleural effusion, pneumothorax, hemothorax and atelectasis: Pathology review
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Small intestine
Anatomy of the gastrointestinal organs of the pelvis and perineum
Gastrointestinal system anatomy and physiology
Enteric nervous system
Colorectal polyps and cancer: Pathology review
Diverticular disease: Pathology review
Laxatives and cathartics
Anatomy of the diaphragm
Anatomy of the larynx and trachea
Anatomy of the lungs and tracheobronchial tree
Anatomy of the nose and paranasal sinuses
Anatomy of the pleura
Bones and joints of the thoracic wall
Muscles of the thoracic wall
Vessels and nerves of the thoracic wall
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Thoracic wall
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Lung cancer and mesothelioma: Pathology review
Nasal, oral and pharyngeal diseases: Pathology review
Obstructive lung diseases: Pathology review
Pneumonia: Pathology review
Restrictive lung diseases: Pathology review
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Small intestine
Anatomy of the gastrointestinal organs of the pelvis and perineum
Bile secretion and enterohepatic circulation
Enteric nervous system
Gastrointestinal system anatomy and physiology
Inflammatory bowel disease: Pathology review
Malabsorption syndromes: Pathology review
Bacillus cereus (Food poisoning)
Campylobacter jejuni
Clostridium difficile (Pseudomembranous colitis)
Clostridium perfringens
Escherichia coli
Norovirus
Salmonella (non-typhoidal)
Shigella
Staphylococcus aureus
Vibrio cholerae (Cholera)
Yersinia enterocolitica
Anatomy of the heart
Anatomy of the lungs and tracheobronchial tree
Anatomy of the pleura
Anatomy clinical correlates: Heart
Anatomy clinical correlates: Mediastinum
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Thoracic wall
Alveolar surface tension and surfactant
Anatomic and physiologic dead space
Breathing cycle and regulation
Diffusion-limited and perfusion-limited gas exchange
Gas exchange in the lungs, blood and tissues
Pulmonary shunts
Regulation of pulmonary blood flow
Respiratory system anatomy and physiology
Ventilation
Ventilation-perfusion ratios and V/Q mismatch
Zones of pulmonary blood flow
Cardiac afterload
Cardiac contractility
Cardiac cycle
Cardiac preload
Cardiac work
Frank-Starling relationship
Measuring cardiac output (Fick principle)
Pressure-volume loops
Stroke volume, ejection fraction, and cardiac output
Acid-base map and compensatory mechanisms
Buffering and Henderson-Hasselbalch equation
Physiologic pH and buffers
The role of the kidney in acid-base balance
Apnea, hypoventilation and pulmonary hypertension: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
Heart failure: Pathology review
Lung cancer and mesothelioma: Pathology review
Obstructive lung diseases: Pathology review
Pleural effusion, pneumothorax, hemothorax and atelectasis: Pathology review
Pneumonia: Pathology review
Restrictive lung diseases: Pathology review
Tuberculosis: Pathology review
Introduction to the cardiovascular system
Introduction to the lymphatic system
Microcirculation and Starling forces
Cirrhosis: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
Heart failure: Pathology review
Hypothyroidism: Pathology review
Nephrotic syndromes: Pathology review
Renal failure: Pathology review
Antidiuretic hormone
Phosphate, calcium and magnesium homeostasis
Potassium homeostasis
Renin-angiotensin-aldosterone system
Sodium homeostasis
Diabetes insipidus and SIADH: Pathology review
Electrolyte disturbances: Pathology review
Parathyroid disorders and calcium imbalance: Pathology review
Anxiety disorders, phobias and stress-related disorders: Pathology Review
Apnea, hypoventilation and pulmonary hypertension: Pathology review
Mood disorders: Pathology review
Psychological sleep disorders: Pathology review
Adrenergic antagonists: Beta blockers
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Antihistamines for allergies
Nonbenzodiazepine anticonvulsants
Opioid agonists, mixed agonist-antagonists and partial agonists
Tricyclic antidepressants
Cytokines
Inflammation
Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Small intestine
Anatomy of the gastrointestinal organs of the pelvis and perineum
Anatomy of the vessels of the posterior abdominal wall
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Gastrointestinal bleeding: Pathology review
Anatomy of the blood supply to the brain
Anatomy of the cranial base
Anatomy of the cranial meninges and dural venous sinuses
Anatomy of the nose and paranasal sinuses
Anatomy of the suboccipital region
Anatomy of the temporomandibular joint and muscles of mastication
Anatomy of the trigeminal nerve (CN V)
Bones of the cranium
Bones of the neck
Deep structures of the neck: Prevertebral muscles
Muscles of the face and scalp
Nerves and vessels of the face and scalp
Superficial structures of the neck: Cervical plexus
Anatomy clinical correlates: Bones, fascia and muscles of the neck
Anatomy clinical correlates: Skull, face and scalp
Anatomy clinical correlates: Temporal regions, oral cavity and nose
Anatomy clinical correlates: Trigeminal nerve (CN V)
Anatomy clinical correlates: Vessels, nerves and lymphatics of the neck
Headaches: Pathology review
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy of the abdominal viscera: Pancreas and spleen
Anatomy clinical correlates: Other abdominal organs
Gallbladder histology
Liver histology
Bile secretion and enterohepatic circulation
Liver anatomy and physiology
Pancreatic secretion
Jaundice: Pathology review
Anatomy of the elbow joint
Anatomy of the glenohumeral joint
Anatomy of the hip joint
Anatomy of the knee joint
Anatomy of the radioulnar joints
Anatomy of the sternoclavicular and acromioclavicular joints
Anatomy of the tibiofibular joints
Joints of the ankle and foot
Joints of the wrist and hand
Anatomy clinical correlates: Arm, elbow and forearm
Anatomy clinical correlates: Clavicle and shoulder
Anatomy clinical correlates: Knee
Anatomy clinical correlates: Leg and ankle
Anatomy clinical correlates: Wrist and hand
Gout and pseudogout: Pathology review
Rheumatoid arthritis and osteoarthritis: Pathology review
Seronegative and septic arthritis: Pathology review
Anatomy of the knee joint
Anatomy clinical correlates: Knee
Rheumatoid arthritis and osteoarthritis: Pathology review
Seronegative and septic arthritis: Pathology review
Candida
Clostridium difficile (Pseudomembranous colitis)
Enterobacter
Enterococcus
Escherichia coli
Proteus mirabilis
Pseudomonas aeruginosa
Staphylococcus aureus
Bacterial and viral skin infections: Pathology review
Skin histology
Skin anatomy and physiology
Acneiform skin disorders: Pathology review
Papulosquamous and inflammatory skin disorders: Pathology review
Pigmentation skin disorders: Pathology review
Skin cancer: Pathology review
Vesiculobullous and desquamating skin disorders: Pathology review
Anatomy of the heart
Anatomy of the vagus nerve (CN X)
Aortic dissections and aneurysms: Pathology review
Cardiomyopathies: Pathology review
Coronary artery disease: Pathology review
Heart blocks: Pathology review
Supraventricular arrhythmias: Pathology review
Valvular heart disease: Pathology review
Ventricular arrhythmias: Pathology review
Hunger and satiety
Anxiety disorders, phobias and stress-related disorders: Pathology Review
Breast cancer: Pathology review
Colorectal polyps and cancer: Pathology review
Dementia: Pathology review
Diabetes mellitus: Pathology review
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Heart failure: Pathology review
HIV and AIDS: Pathology review
Hyperthyroidism: Pathology review
Inflammatory bowel disease: Pathology review
Jaundice: Pathology review
Lung cancer and mesothelioma: Pathology review
Malabsorption syndromes: Pathology review
Mood disorders: Pathology review
Tuberculosis: Pathology review

Transcript

Watch video only

Joseph, a 42 year old man comes to the clinic because he’s been waking up many times at night, which makes him very sleepy during the day.

His partner also complains that Joseph has always snored but recently it’s louder than ever.

On physical examination he has a BMI of 35 kilograms per square meter, and has a blood pressure of 140 over 90 millimeters of mercury.

You decide to conduct a sleep study, which reveals a very low partial pressure of oxygen.

Later, a 35 year old woman called Robin also comes to the clinic.

She tells you that, lately, she’s been experiencing shortness of breath and fatigue.

Robin is quite worried, and mentions that she has a congenital heart defect.

On physical examination, she has a mean pulmonary arterial pressure of 28 millimeters of mercury.

You decide to perform an electrocardiogram or ECG test, and a chest X-ray, which show that Robin has right ventricular hypertrophy.

Based on the presentation, both cases seem to have some respiratory disease, associated with some cardiovascular issues.

Now, for your exams, some important conditions include sleep apnea, obesity hypoventilation syndrome, and pulmonary hypertension.

So, let’s begin with sleep apnea!

This is when a person, during their sleep, experiences recurrent and intermittent episodes in which they stop breathing for more than 10 seconds.

In addition, since fresh air is not getting into the lungs, individuals with sleep apnea will have nocturnal hypoxia.

This puts the body under stress, which in turn responds by releasing epinephrine.

Now, the recurrent epinephrine surges have several effects.

Firstly, this wakes up the person so that they can breathe again.

This causes disrupted sleep, which in turn leads to somnolence or sleepiness during the day or while awake.

Secondly, the body tries to compensate for the hypoxia by increasing the amount of red blood cells, or erythrocytes, available to carry the oxygen in blood to our tissues.

To do so, our kidneys produce a hormone called erythropoietin, or EPO, which stimulates the bone marrow to produce more red blood cells, and this process is known as erythropoiesis.

The problem with sleep apnea though is that, even if we increase the number of red blood cells, the amount of oxygen that’s entering the body is not enough, so there’s still hypoxia.

Third, having high epinephrine levels can cause vasoconstriction, increasing the vascular resistance.

Over time, this can result in vascular remodeling, which can lead to the development of both pulmonary and systemic hypertension.

Pulmonary hypertension is when the blood pressure in the lung arteries is increased, while systemic hypertension involves the arteries of the rest of the body.

Over time, this can put too much strain on the heart, and ultimately cause abnormal heart rhythms, like atrial fibrillation or atrial flutter, heart failure, and even sudden death.

Diagnosis of sleep apnea involves a sleep study, also known as polysomnography, which counts the number of apnea episodes, and monitors several parameters like heart rhythm and oxygen saturation.

Another important diagnostic value is partial pressure of oxygen in the arteries, since it helps us understand if the tissues are receiving adequate oxygen supply.

This value can be easily and indirectly obtained with a pulse oximeter, or directly obtained via blood gas sampling.

For your exams, remember that people with sleep apnea have low oxygen saturation levels, and thus low partial arterial pressure of oxygen during sleep, but bear in mind that this partial pressure is typically normal when they’re awake.

Now, when the cause of sleep apnea originates in the central nervous system, it’s called central sleep apnea.

Most often though, sleep apnea is caused by an obstruction of airflow in the airways, which is known as obstructive sleep apnea.

And when a person experiences both obstructive and central sleep apnea, it’s called complex or mixed sleep apnea.

Okay, let’s start with central sleep apnea or CSA for short.

Central sleep apnea is caused by an imbalance in the respiratory center of the brain, so during sleep it fails to activate the muscles that control breathing.

The main causes of central sleep apnea include central nervous system injury involving the respiratory center, as well as central nervous system toxicity, often due to use of opioid medications.

Another major risk factor for central sleep apnea is congestive heart failure.

What’s important for your exams is that congestive heart failure leads to increased chemosensitivity, which is how the body senses and responds to changes in the partial pressures of oxygen and carbon dioxide.

So when there’s an apnea episode, oxygen levels decrease while carbon dioxide levels rise.

Now, keep in mind that carbon dioxide is the main stimulus for the respiratory center, so when there are high levels of carbon dioxide, the respiratory center responds by increasing our respiratory rate.

Now, when there’s increased chemosensitivity, the increased CO2 triggers an exaggerated response in the form of hyperventilation, and ends up decreasing the carbon dioxide too much.

So now the CO2 level is too low, and this ultimately causes depression of the respiratory center and thus another apnea episode.

As a result, there’s a vicious cycle that leads to central sleep apnea.

Now, when central sleep apnea is associated with congestive heart failure, it often manifests as an abnormal breathing pattern called Cheyne-Stokes respiration, also known as cyclic respiration.

This is a periodic breathing characterized by oscillation between periods of apnea alternated with deep breaths or hyperpnea.

So, for your exams, remember that the three main things you need to know all start with a ‘C’ for central sleep apnea!

The first is central nervous system injury or toxicity, the second ‘c’ is congestive heart failure, and the third ‘c’ is for- Cheyne-Stokes respiration.

Treatment of central sleep apnea mainly involves positive airway pressure therapy, as well as taking care of the underlying cause.

And then we have obstructive sleep apnea, or OSA for short.

As the name suggests, it is caused by a narrowing or obstruction of the airways.

Now, normally, the airway muscles relax while sleeping

In healthy people though, the airway muscle tone is strong enough to counteract factors that would cause the airway to collapse, such as gravity while lying down, and the negative pressure in the airway during inspiration.

In obstructive sleep apnea, the airway muscle tone is not strong enough to counteract these factors, and so the airway collapses.

In adults, the most common cause is an excess of parapharyngeal tissue, which basically means that there’s excess fat in the neck region.

That’s why obstructive sleep apnea is most common in obese individuals, so those with a BMI over 30 kilograms per square meter.

On a test question, the most important clue suggesting obstructive sleep apnea is loud snoring in an obese individual, like they’re trying to gasp for air until they wake up.

This leads to disrupted sleep, which in turn causes excessive sleepiness during the day or while awake.

Sometimes though, obstructive sleep apnea may affect children; in this case, the most common cause is adenotonsillar hypertrophy, meaning an enlargement of the pharyngeal and palatine tonsils.

Treatment of obstructive sleep apnea involves continuous positive airway pressure, or CPAP therapy, which delivers a steady stream of pressure, in order to keep the airway open.

In addition, weight loss is highly recommended for overweight people.

Finally, one last option is surgery to remove the excess parapharyngeal tissue.

Now, another important respiratory disease that’s very often related to obstructive sleep apnea is obesity hypoventilation syndrome, or OHS for short.

Obesity hypoventilation syndrome is also named Pickwickian syndrome after Charles Dickens’ novel “The Pickwick Papers”, in which there is an overweight character who’s constantly falling asleep at any time of the day.

As the name suggests, obesity hypoventilation syndrome only affects obese individuals.

That’s because the excess weight can restrict the movement of the diaphragm and chest wall, which impairs lung expansion.

As a result, affected individuals develop hypoventilation, meaning slow or shallow breathing.

In most cases, obesity hypoventilation syndrome also causes obstructive sleep apnea and hypoventilation during sleep, but bear in mind that these individuals also experience hypoventilation while awake.

And that’s a high yield fact!

Because of that, diagnosis of obesity hypoventilation syndrome includes an increased partial pressure of carbon dioxide while awake, and while sleeping, they’ll also have a decreased partial pressure of oxygen.

Treatment is mainly focused on weight loss, and some cases can also get positive airway pressure during sleep.

Sources

  1. "Robbins Basic Pathology" Elsevier (2017)
  2. "Harrison's Principles of Internal Medicine, Twentieth Edition (Vol.1 & Vol.2)" McGraw-Hill Education / Medical (2018)
  3. "Pathophysiology of Disease: An Introduction to Clinical Medicine 8E" McGraw-Hill Education / Medical (2018)
  4. "Diagnostic and Statistical Manual of Mental Disorders" A.P. Association and A.P.A.T.F.O.N.A. Statistics (1980)
  5. "Robbins Basic Pathology" Elsevier (2017)
  6. "Sleep Apnoea In The Older Adult" Drugs & Aging (2003)
  7. "Obesity hypoventilation syndrome" European Respiratory Review (2019)
  8. "Pathology of Pulmonary Hypertension" Clinics in Chest Medicine (2007)
  9. "Plexiform Lesions in Pulmonary Arterial Hypertension" The American Journal of Pathology (2011)
  10. "Heart rate and blood pressure responses during hypoxic cycles of a 3-week intermittent hypoxia breathing program in patients at risk for or with mild COPD" International Journal of Chronic Obstructive Pulmonary Disease (2015)
  11. "Cheyne-Stokes respiration in patients with congestive heart failure: causes and consequences" Clinics (2005)
  12. "Congestive Heart Failure and Central Sleep Apnea" Critical Care Clinics (2015)
  13. "Pulmonary hypertension due to lung diseases: Updated recommendations from the Cologne Consensus Conference 2018" International Journal of Cardiology (2018)
  14. "Update on Chronic Thromboembolic Pulmonary Hypertension" Circulation (2014)