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Severe TBI Management — Lecture Notes

Severe TBI Management Mechanisms of TBI • Focal = contact injury ocausing laceration, contusion, intracranial hemorrhage • Diffuse = acceleration/deceleration injury, anoxic oleading to brain swelling, diffuse axonal injury Primary v Secondary Brain Injury • Primary = injury at

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SurgCritCare
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review pending
Updated
5/29/2026
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Severe TBI

Management
Section

Management

Mechanisms of TBI

Focal = contact injury • causing laceration, contusion, intracranial hemorrhage • Diffuse = acceleration/deceleration injury, anoxic
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  • Focal = contact injury
  • causing laceration, contusion, intracranial hemorrhage
  • Diffuse = acceleration/deceleration injury, anoxic
  • leading to brain swelling, diffuse axonal injury

Primary v Secondary Brain Injury

Primary = injury at the time of trauma/mechanical • Secondary = delayed non-mechanical damage, result of a complication from the...
Section
  • Primary = injury at the time of trauma/mechanical
  • Secondary = delayed non-mechanical damage, result of a complication from the initial trauma
  • Cerebral edema,
  • Intracranial HTN
  • Neurotransmitter changes
  • Inflammation
  • Hypoperfusion/hyperperfusion
  • Ischemia
  • Primary = Injury prevention
  • Irreversible damage

+Necrotic death neurons, astrocytes, oligodendrocytes, neuronal interconnection disruptions (DAI)

  • Secondary = Therapeutic/supportive measures
  • Penumbra – area of viable but threatened brain tissue around damaged tissue
  • Salvageable with support

Types of Primary TBI

Skull Fracture • ICH • EDH
Section
  • Skull Fracture
  • ICH
  • EDH
  • SDH
  • SAH
  • IPH

Extra-axial

Intra-axial

Coup–Contrecoup • Diffuse Axonal Injury (DAI)
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  • Coup–Contrecoup
  • Diffuse Axonal Injury (DAI)

Skull Fractures

Flat bones v skull base • Linear v comminuted • Degree of depression
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  • Flat bones v skull base
  • Linear v comminuted
  • Degree of depression
  • Degree of communication (dura, parenchyma)
  • Basilar w/ middle ear, nasopharynx, sinuses
  • Greater risk of post-traumatic seizures
  • Open – increased CNS infection risk

Epidural Hematoma (EDH)

Laceration of dural veins/arteries between dura & skull • i. e temporal fracture & middle meningeal artery • Arterial injury –...
Section
  • Laceration of dural veins/arteries between dura & skull
  • i. e temporal fracture & middle meningeal artery
  • Arterial injury – higher pressure – faster neurologic deterioration
  • "Lucid interval"

Subdural Hematoma (SDH)

Tearing of bridging veins • Accumulation of blood w/in arachnoid membrane
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  • Tearing of bridging veins
  • Accumulation of blood w/in arachnoid membrane

& dura

  • Hematoma does not develop as rapidly, but leads to mass lesions
  • Mortality of 60–80% (higher than EDH)

Subarachnoid Hemorrhage (SAH)

Accumulation of blood between arachnoid & pia mater • Adjacent to site injury/impact • Portend worse outcome
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  • Accumulation of blood between arachnoid & pia mater
  • Adjacent to site injury/impact
  • Portend worse outcome
  • Outside of trauma associated w/ aneurysmal rupture
  • "Worst headache of life"
  • Vasospasm

Intraparenchymal Hemorrhage

(IPH)
Section

(IPH)

  • Frequently evolve
  • Increasing cerebral edema, mass effect
  • Delayed IPH in 20% of TBI
  • Typically w/in 72h

Coup–Contrecoup Injury

Contusion both initial site & opposite side of the insult, • Movement of the brain within skull • Energy leads to rupture of micro...
Section
  • Contusion both initial site & opposite side of the insult,
  • Movement of the brain within skull
  • Energy leads to rupture of micro vessels
  • Extravasation of blood & inability of these vessels to perfuse tissues

DAI

Disruption of neuronal interconnections – shear/stretch injury • CT normal in 50-80% • Poor prognosis
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  • Disruption of neuronal interconnections – shear/stretch injury
  • CT normal in 50-80%
  • Poor prognosis
  • Grades:
  • Grade 1: Mild diffuse external injury w/ microscopic white matter changes of the cerebral cortex, corpus callosum, brain stem
  • Grade 2: Moderate DAI w/ focal corpus callosum lesions
  • Grade 3: Grade 2 & additional brain stem lesions

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Operative Indications

EDH • Coma (GCS score < 9) with anisocoria • EDH > 30 cm3 (regardless of GCS)
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  • EDH
  • Coma (GCS score < 9) with anisocoria
  • EDH > 30 cm3 (regardless of GCS)
  • SDH
  • Thickness > 10 mm OR midline shift > 5 mm (regardless of GCS)
  • Comatose (GCS < 9) & SDH < 10mm thick & midline shift < 5mm should undergo surgical evacuation if:
  • GCS decreased ≥ 2 between time of injury & admission
  • Presents with asymmetric or fixed & dilated pupils
  • ICP > 20 mm Hg
  • 11/29/2025
  • IPH
  • Progressive neuro deterioration, refractory intracranial HTN, or mass effect (CT)
  • GCS 6-8 w/ frontal or temporal contusions > 20 cm 3 w/ midline shift > 5 mm and/or cisternal compression
  • Any lesion > 50 cm 3
  • Skull fractures
  • Open, depressed > than thickness of cranium (to prevent infection)
  • 11/29/2025

Nonsurgical Treatment

aka
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aka

GOAL = Prevent Secondary Injury

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2° Injury in TBI

TBI = loss of cerebral autoregulation • blood flow/perfusion • O2 delivery
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  • TBI = loss of cerebral autoregulation
  • Disrupted:
  • blood flow/perfusion
  • O2 delivery
  • Brain perfusion & oxygenation #1
  • Hypotension & Hypoxia = INCREASE mortality with every episode

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  • Edema
  • Electrolyte disturbances, hypoglycemia
  • Infection
  • Seizure

Metabolic demand

Hyperthermia
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  • Hyperthermia

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ICP Management

Cerebral perfusion pressure (CPP) = MAP - ICP • Represents cerebral blood flow & oxygen delivery • Goal 50-70mm Hg
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  • Cerebral perfusion pressure (CPP) = MAP - ICP
  • Represents cerebral blood flow & oxygen delivery
  • Goal 50-70mm Hg
  • TOO low - inability to meet metabolic demands – worse
  • utcome
  • TOO high - cerebral edema
  • ICP < 22mmHg
  • Monro-Kellie Doctrine = total volume fixed (brain,

CSF, intracranial blood)

  • If 1 increases the volume of the others must decrease

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ICP Monitoring

Severe TBI (GCS 3-8 after resuscitation) & abnormal CT • Or in severe TBI with normal CT if ≥ 2 of the following: • Age > 40 years,
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  • Severe TBI (GCS 3-8 after resuscitation) & abnormal CT
  • Or in severe TBI with normal CT if ≥ 2 of the following:
  • Age > 40 years,
  • Unilateral or bilateral motor posturing
  • SBP <90 mm Hg
  • Internal monitors – invasive, introduced into specific anatomical locations (i. e intraparenchymal, intraventricular)
  • EVD is gold standard
  • External monitors – accuracy? (TCD, TMD, ONSD)

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ICP Management (continued)

Treat pain & agitation • Propofol reduces cerebral oxygen consumption – possible neuroprotective effect (acute setting) • No...
Section
  • Treat pain & agitation
  • Propofol reduces cerebral oxygen consumption – possible neuroprotective effect (acute setting)
  • No evidence improved outcome
  • High dose therapy can worsen mortality
  • Barbiturates – only in high ICP refractory to max medical/ surgical treatment
  • Elevation head of bed (30-45°)
  • Displaces CSF
  • Venous outflow

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  • Hyperosmolar therapy
  • Na goal 145-160 mEq/L - oncotic gradient
  • Hypertonic Saline
  • Oncotic gradient & volume expansion
  • Onset minutes (can last hours)
  • Mannitol
  • Osmotic diuresis
  • o.25-1g/kg, onset minutes (can last 6h)
  • AVOID in hypotensive

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  • Hyperventilation
  • Hypocarbia resulting in cerebral vasoconstriction
  • Acutely reduces cerebral volume – reduced ICP (temporizing therapy, bridge to emergent surgery ONLY)
  • Long term – vasoconstriction = reduced perfusion
  • Hypercarbia – vasodilation & increased ICP

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Refractory ICP elevations

Decompressive Craniectomy (DC) = consider for laterefractory ICP elevation but not early-refractory ICP elevation • Diffuse...
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  • Decompressive Craniectomy (DC) = consider for laterefractory ICP elevation but not early-refractory ICP elevation
  • Diffuse Traumatic Brain Injury (DECRA) trial - secondary DC for early-refractory ICP elevation (w/in 72h)
  • No mortality benefit, poorer function outcomes (6m)
  • Randomized Evaluation of Surgery with Craniectomy for

Uncontrolled Elevation of Intracranial Pressure (RESCUEicp) trialsecondary DC for late-refractory ICP elevation

  • Mortality benefit
  • BUT HIGHER rates of vegetative state & severe disability

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Hemodynamic goals

Blood pressure • SBP ≥100 mm Hg (50 to 69 years) • SBP ≥110 mm Hg (15 to 49 or > 70 years)
Section
  • Blood pressure
  • SBP ≥100 mm Hg (50 to 69 years)
  • SBP ≥110 mm Hg (15 to 49 or > 70 years)
  • Oxygenation/Ventilation
  • Normal pH, normocarbia (35-40)
  • PaO2 80-200 mmHg (some suggest 120 mmHg as max)
  • Higher PEEP - increased intrathoracic pressure & impair venous return – can increased ICP & reduced CPP
  • Data mixed on whether clinically sig effect, must balance pt needs

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  • Temperature = Fever in 40-70% (pyrogens, disruption hypothalamic set point, infx)
  • Increase brain metabolic demand – cerebral ischemia/injury
  • Goal = normothermia
  • Avoid shivering – counter acts benefit via O2 reduction to brain tissue
  • Buspirone, meperidine
  • Dexmedetomidine
  • Magnesium?
  • Euglycemia

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  • Avoidance coagulopathy
  • INR < 1.5, plt >100, Hgb>7
  • CRASH 3 (RCT TXA 2g within 3h of injury)
  • Mild to moderate TBI (GCS>8) - reduction in head-injury-related
  • Severe TBI no difference
  • Earlier treatment more effective
  • No difference in VTE or seizures
  • VTE ppx
  • ASAP
  • LMWH or SQH

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  • Seizure ppx
  • Phenytoin (or levetiracetam) recommended to decrease incidence of early PTS (w/in 7d of injury) (when benefit felt to outweigh the complication risk of meds)
  • Early PTS not associated w/ worse outcomes