Epidural hematoma

Epidural hematoma

Neurology

Neurology

Stroke: Clinical
Meningitis, encephalitis and brain abscesses: Clinical
Hyperkinetic movement disorders: Clinical
Hypokinetic movement disorders: Clinical
Seizures: Clinical
Headaches: Clinical
Dementia and delirium: Clinical
Dizziness and vertigo: Clinical
Disorders of consciousness: Clinical
Muscle weakness: Clinical
Brain tumors: Clinical
Lower back pain: Clinical
Ischemic stroke
Transient ischemic attack
Intracerebral hemorrhage
Saccular aneurysm
Subarachnoid hemorrhage
Subdural hematoma
Epidural hematoma
Meningitis
Encephalitis
Brain abscess
Cavernous sinus thrombosis
Epidural abscess
Creutzfeldt-Jakob disease
Seizures and epilepsy
Febrile seizure
Migraine
Tension headache
Cluster headache
Hepatic encephalopathy
Reye syndrome
Wernicke-Korsakoff syndrome
Beriberi
Alzheimer disease
Frontotemporal dementia
Vascular dementia
Dementia with Lewy bodies
Broca aphasia
Wernicke aphasia
Kluver-Bucy syndrome
Multiple sclerosis
Transverse myelitis
Central pontine myelinolysis
Acute disseminated encephalomyelitis
Charcot-Marie-Tooth disease
Guillain-Barre syndrome
Normal pressure hydrocephalus
Chiari malformation
Septo-optic dysplasia
Dandy-Walker malformation
Tethered spinal cord syndrome
Spina bifida
Cerebral palsy
Rett syndrome
Aqueductal stenosis
Syringomyelia
Muscular dystrophy
Neurofibromatosis
von Hippel-Lindau disease
Ataxia-telangiectasia
Tuberous sclerosis
Sturge-Weber syndrome
Bell palsy
Trigeminal neuralgia
Shaken baby syndrome
Concussion and traumatic brain injury
Brain herniation
Idiopathic intracranial hypertension
Cauda equina syndrome
Brown-Sequard Syndrome
Neurogenic bladder
Parkinson disease
Essential tremor
Restless legs syndrome
Neuroleptic malignant syndrome
Vertigo
Meniere disease
Labyrinthitis
Acoustic neuroma (schwannoma)
Amyotrophic lateral sclerosis
Spinal muscular atrophy
Myasthenia gravis
Lambert-Eaton myasthenic syndrome
Sciatica
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Winged scapula
Ulnar claw
Erb-Duchenne palsy
Thoracic outlet syndrome
Klumpke paralysis
Orthostatic hypotension
Horner syndrome
Pediatric brain tumors
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Otitis externa
Otitis media
Tympanic membrane perforation
Conductive hearing loss
Cataract
Glaucoma
Corneal ulcer
Retinoblastoma
Diabetic retinopathy
Retinopathy of prematurity
Retinal detachment
Age-related macular degeneration
Keratitis
Orbital cellulitis
Periorbital cellulitis
Hordeolum (stye)
Conjunctivitis
Uveitis
Color blindness
Hemianopsia
Homonymous hemianopsia
Cortical blindness
Bitemporal hemianopsia
Nervous system anatomy and physiology
Anatomy and physiology of the eye
Anatomy and physiology of the ear
Neuron action potential
Sympathetic nervous system
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Adrenergic receptors
Cholinergic receptors
Blood brain barrier
Cerebrospinal fluid
Sleep
Consciousness
Learning
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Memory
Language
Emotion
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Motor cortex
Muscle spindles and golgi tendon organs
Pyramidal and extrapyramidal tracts
Cerebellum
Basal ganglia: Direct and indirect pathway of movement
Spinal cord reflexes
Sensory receptor function
Somatosensory pathways
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Photoreception
Optic pathways and visual fields
Auditory transduction and pathways
Vestibular transduction
Vestibulo-ocular reflex and nystagmus
Olfactory transduction and pathways
Taste and the tongue
Cranial nerves
Brachial plexus
Thyroid hormones
Parathyroid hormone
Calcitonin
Vitamin D
Phosphate, calcium and magnesium homeostasis
Stroke: Clinical
Hypokinetic movement disorders: Clinical
Headaches: Clinical
Meningitis, encephalitis and brain abscesses: Clinical
Hyperkinetic movement disorders: Clinical
Dementia and delirium: Clinical
Traumatic brain injury: Clinical
Seizures: Clinical
Dizziness and vertigo: Clinical
Disorders of consciousness: Clinical
Brain tumors: Clinical
Lower back pain: Clinical
Muscle weakness: Clinical
Spinal cord disorders: Pathology review

Transcript

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Epidural hemorrhage can be broken down. "Epi" means above, "dural" refers to the outermost protective layer of the brain, which is called dura mater and and “hemorrhage” refers to bleeding.

So, an epidural hemorrhage is when there’s bleeding above the dura mater.

OK - let’s start with some basic brain anatomy. The brain is protected by the meninges, which are 3 thin layers of tissue which cover the brain and spinal cord.

The inner layer of the meninges is the pia mater, the middle layer is the arachnoid mater, and the outer layer is the dura mater.

The pia and arachnoid maters, are also called leptomeninges.

Between the leptomeninges, there’s the subarachnoid space, which houses cerebrospinal fluid, or CSF.

CSF is a clear, watery liquid which is pumped around the spinal cord and brain, cushioning them from impact and bathing them in nutrients.

The outer membrane, the dura mater consists of two layers.

The internal layer of the dura mater lies above the arachnoid mater - the two are separated by the subdural space.

The external layer of the dura mater adheres to the inner surface of the skull.

These two layers of the dura mater travel together, but at certain spots, the internal layer of the dura mater separates from the external one to form the meningeal folds.

The meningeal folds help divide the sections of the brain like the falx cerebri which separates the two hemispheres of the cerebrum, and the tentorium, which covers the cerebellum and separates it from the cerebrum.

Between the external layer of the dura mater and the inner surface of the skull, there are arteries that supply meninges.

The most common cause of epidural hemorrhage is a head trauma which might happen after tripping and falling in a bathtub.

The meningeal arteries are protected by the skull but can be damaged by a serious head trauma.

The most common site is at the pterion which is the spot where the frontal, parietal, temporal and sphenoid bones join together.

This section of the skull is relatively thin and it’s located right above the middle meningeal artery.

When a blood vessel is damaged and there’s active bleeding, it’s called a hemorrhage, and the collection of blood that results is called a hematoma.

In the case of an epidural hemorrhage, once a meningeal artery is torn, blood will pool between the skull and the external layer of the dura mater, separating it from the inner surface of the skull.

The blood builds up between the skull and the outer layer of the dura mater but cannot cross the suture lines where the dura mater adheres more tightly.

Key Takeaways

An epidural hematoma is a collection of blood above the dural mater, usually due to a head trauma. When blood accumulates in this space, it can result in raised intracranial pressure, damaging delicate nerve cells.

Epidural hematomas are most commonly caused by head injuries, such as those sustained in car accidents or falls. They can also be associated with childbirth (in newborns), cancer, or certain medical procedures. Symptoms vary depending on the size and location of the hematoma, but may include a headache, nausea and vomiting, loss of consciousness, seizures, or paralysis.

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. "CURRENT Medical Diagnosis and Treatment 2020" McGraw-Hill Education / Medical (2019)
  5. "Pediatric head trauma" Journal of Emergencies, Trauma, and Shock (2011)
  6. "Surgical management of head trauma" Neuroimaging Clinics of North America (2002)
  7. "Emergency Department Skull Trephination for Epidural Hematoma in Patients Who Are Awake But Deteriorate Rapidly" The Journal of Emergency Medicine (2010)