Delirium

Last updated: February 22, 2023

Delirium

CAT 5

CAT 5

Approach to differentiating lesions (brainstem): Clinical sciences
Approach to differentiating lesions (cerebellum): Clinical sciences
Approach to differentiating lesions (cerebral cortical and subcortical structures): Clinical sciences
Approach to differentiating lesions (motor neuron): Clinical sciences
Approach to differentiating lesions (muscle): Clinical sciences
Approach to differentiating lesions (nerve root, plexus, and peripheral nerve): Clinical sciences
Approach to differentiating lesions (neuromuscular junction): Clinical sciences
Approach to differentiating lesions (spinal cord): Clinical sciences
Approach to diplopia: Clinical sciences
Idiopathic intracranial hypertension: Clinical sciences
Multiple sclerosis: Clinical sciences
Myasthenia gravis: Clinical sciences
Approach to dysarthria or dysphagia: Clinical sciences
Guillain-Barré syndrome: Clinical sciences
Approach to gradual cognitive decline: Clinical sciences
Alzheimer disease: Clinical sciences
Parkinson disease and dementia with Lewy bodies: Clinical sciences
Approach to headache or facial pain: Clinical sciences
Primary headaches (tension, migraine, and cluster): Clinical sciences
Subarachnoid hemorrhage: Clinical sciences
Temporal arteritis: Clinical sciences
Approach to involuntary movements: Clinical sciences
Approach to tremor: Clinical sciences
Approach to medication-induced movement disorders: Clinical sciences
Approach to urinary incontinence (GYN): Clinical sciences
Stress, urge, overflow, and mixed urinary incontinence (GYN): Clinical sciences
Urinary retention: Clinical sciences
Approach to weakness (focal and generalized): Clinical sciences
Acute stroke (ischemic or hemorrhagic) or TIA: Clinical sciences
Approach to altered mental status: Clinical sciences
Delirium: Clinical sciences
Approach to aphasia: Clinical sciences
Approach to dizziness and vertigo: Clinical sciences
Approach to back pain: Clinical sciences
Approach to unsteadiness, gait disturbance, or falls: Clinical sciences
Approach to acute vision loss: Clinical sciences
Approach to blunt cerebrovascular injury: Clinical sciences
Approach to convulsive status epilepticus: Clinical sciences
Approach to encephalitis: Clinical sciences
Approach to encephalopathy (acute and subacute): Clinical sciences
Approach to increased intracranial pressure: Clinical sciences
Approach to traumatic brain injury (pediatrics): Clinical sciences
Approach to traumatic brain injury: Clinical sciences
Brain death: Clinical sciences
Hepatic encephalopathy: Clinical sciences
Meningitis and brain abscess: Clinical sciences
Uremic encephalopathy: Clinical sciences
Approach to compressive mononeuropathies: Clinical sciences
Approach to epilepsy: Clinical sciences
Approach to facial palsy: Clinical sciences
Approach to polyneuropathy: Clinical sciences
Inflammatory myopathies: Clinical sciences
Anatomy clinical correlates: Glossopharyngeal (CN IX), vagus (X), spinal accessory (CN XI) and hypoglossal (CN XII) nerves
Anatomy clinical correlates: Anterior blood supply to the brain
Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Cerebellum and brainstem
Anatomy clinical correlates: Posterior blood supply to the brain
Anatomy clinical correlates: Spinal cord pathways
Anatomy clinical correlates: Vertebral canal
Anatomy clinical correlates: Olfactory (CN I) and optic (CN II) nerves
Anatomy clinical correlates: Oculomotor (CN III), trochlear (CN IV) and abducens (CN VI) nerves
Anatomy clinical correlates: Trigeminal nerve (CN V)
Anatomy clinical correlates: Facial (CN VII) and vestibulocochlear (CN VIII) nerves
Anatomy clinical correlates: Hip, gluteal region and thigh
Anatomy clinical correlates: Median, ulnar and radial nerves
Anatomy clinical correlates: Wrist and hand
Cerebral vascular disease: Pathology review
Demyelinating disorders: Pathology review
Neuromuscular junction disorders: Pathology review
Autosomal trisomies: Pathology review
Congenital neurological disorders: Pathology review
Developmental and learning disorders: Pathology review
Miscellaneous genetic disorders: Pathology review
Vertigo: Pathology review
Movement disorders: Pathology review
Dementia: Pathology review
Central nervous system infections: Pathology review
Headaches: Pathology review
Traumatic brain injury: Pathology review
Vasculitis: Pathology review
Back pain: Pathology review
Apnea, hypoventilation and pulmonary hypertension: Pathology review
Psychological sleep disorders: Pathology review
Urinary incontinence: Pathology review
Myalgias and myositis: Pathology review
Eye conditions: Inflammation, infections and trauma: Pathology review
Eye conditions: Refractive errors, lens disorders and glaucoma: Pathology review
Eye conditions: Retinal disorders: Pathology review
Seizures: Pathology review
Muscular dystrophies and mitochondrial myopathies: Pathology review
Spinal cord disorders: 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 base
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
Bones of the cranium
Anatomy of the external and middle ear
Anatomy of the eye
Anatomy of the inner ear
Development of the face and palate
Development of the nervous system
Development of the eye
Development of the ear
Central nervous system histology
Peripheral nervous system histology
Eye and ear histology
Varicella zoster virus
Serotonin syndrome
Broca aphasia
Wernicke aphasia
Intracerebral hemorrhage
Subarachnoid hemorrhage
Epidural hematoma
Subdural hematoma
Ischemic stroke
Transient ischemic attack
Cerebral palsy
Spina bifida
Bell palsy
Charcot-Marie-Tooth disease
Guillain-Barre syndrome
Sciatica
Alzheimer disease
Multiple sclerosis
Cauda equina syndrome
Vitamin B12 deficiency
Delirium
Huntington disease
Parkinson disease
Fibromyalgia
Trigeminal neuralgia
Seizures and epilepsy
Cranial nerves
Ascending and descending spinal tracts
Anatomy of the abdominal viscera: Kidneys, ureters and suprarenal glands
Anatomy of the urinary organs of the pelvis
Anatomy of the perineum
Anatomy of the male urogenital triangle
Anatomy of the female urogenital triangle
Anatomy clinical correlates: Other abdominal organs
Anatomy clinical correlates: Female pelvis and perineum
Anatomy clinical correlates: Male pelvis and perineum
Development of the renal system
Kidney histology
Ureter, bladder and urethra histology
Chlamydia trachomatis
Neisseria gonorrhoeae
Bladder exstrophy
Horseshoe kidney
Hydronephrosis
Hypospadias and epispadias
Potter sequence
Renal agenesis
Hypercalcemia
Hyperkalemia
Hypermagnesemia
Hypernatremia
Hyperphosphatemia
Hypocalcemia
Hypokalemia
Hypomagnesemia
Hyponatremia
Hypophosphatemia
Acute pyelonephritis
Chronic pyelonephritis
Lower urinary tract infection
Lupus nephritis
Diabetic nephropathy
Chronic kidney disease
Kidney stones
Angiomyolipoma
Medullary cystic kidney disease
Non-urothelial bladder cancers
Nephroblastoma (Wilms tumor)
Renal cell carcinoma
Transitional cell carcinoma
Urinary incontinence
Renal artery stenosis
Acid-base disturbances: Pathology review
Electrolyte disturbances: Pathology review
Urinary tract infections: Pathology review
Renal failure: Pathology review
Renal tubular acidosis: Pathology review
Kidney stones: Pathology review
Renal tubular defects: Pathology review
Renal and urinary tract masses: Pathology review
ACE inhibitors, ARBs and direct renin inhibitors
Carbonic anhydrase inhibitors
Loop diuretics
Osmotic diuretics
Potassium sparing diuretics
Thiazide and thiazide-like diuretics
Acid-base map and compensatory mechanisms
Buffering and Henderson-Hasselbalch equation
Physiologic pH and buffers
The role of the kidney in acid-base balance
Metabolic acidosis
Plasma anion gap
Respiratory acidosis
Metabolic alkalosis
Respiratory alkalosis
Renal system anatomy and physiology
Glomerular filtration
Measuring renal plasma flow and renal blood flow
Regulation of renal blood flow
Renal clearance
TF/Px ratio and TF/Pinulin
Phosphate, calcium and magnesium homeostasis
Potassium homeostasis
Sodium homeostasis
Erythropoietin
Vitamin D
Antidiuretic hormone
Distal convoluted tubule
Loop of Henle
Proximal convoluted tubule
Urea recycling
Renin-angiotensin-aldosterone system
Polycystic kidney disease
Approach to cystic kidney disease: Clinical sciences
Chronic kidney disease: Clinical sciences
Lower urinary tract infection: Clinical sciences
Nephritic syndromes: Pathology review
Nephrotic syndromes: Pathology review
Rapidly progressive glomerulonephritis
IgA nephropathy (NORD)
Membranoproliferative glomerulonephritis
Poststreptococcal glomerulonephritis
Goodpasture syndrome
Prerenal acute kidney injury: Clinical sciences
Intrinsic acute kidney injury (glomerular causes): Clinical sciences
Approach to acute kidney injury: Clinical sciences

Flashcards

Delirium

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Content Reviewers

Delirium is a common and very serious neuropsychiatric syndrome.

Typically it affects older patients with multiple medical problems, in fact up to half of all elderly patients in the hospital will have an episode of delirium at some point, but being said it can affect anyone - even children, even though that’s much less common.

So, what is delirium exactly? Well let’s look at a quick example. Let’s say there is an elderly man with diabetes and heart disease, who comes into the hospital with pneumonia.

He might be slowly recovering, even about to go home, and then one evening things change all of the sudden. He might get really hyperactive, and by that I mean that he may get agitated or aggressive with the staff, mumble or say things incoherently, and have disorganized thoughts or even delusions, perhaps talking about things that haven’t happened or happened years ago. He might even hear or see things like hallucinations, and not know where he is or what he’s doing there.

We would call this an episode of delirium, and it can be really scary for him or someone who is taking care of him, especially the first time it happens because it can come out of the blue.

These are the symptoms of what we call hyperactive delirium.

But there’s also hypoactive delirium which is like the flip side of the coin.

As an example, you might have a woman with a history of chronic constipation who has recently come out of back surgery.

If she has hypoactive delirium she might feel suddenly sluggish and drowsy, less reactive and sullen, and might look withdrawn, perhaps because she’s scared of having hallucinations.

These symptoms of both hyperactive and hypoactive delirium can start pretty suddenly and can happen off and on over the course of a few hours to a few days, with some patients having what they call mix state delirium where they are sometimes having hyperactive symptoms and sometimes having hypoactive symptoms.

As you might guess, delirium symptoms can be really tiresome for a patient and can make them sleepy during the day, and keep them up at night - all of which causes massive disruption to a person’s life and to the lives of their friends and family.

Even though this sounds pretty hard to miss, delirium can often go unnoticed or confused with other conditions like dementia, which has some similarities.

To help distinguish delirium from dementia, there are some key differences to keep in mind.

Unlike delirium where the symptoms can start pretty suddenly, patients with dementia typically have a slow mental decline over months to years.

Early on, dementia patients are also generally alert, oriented, have normal behavior, and don’t have hallucinations.

The good news is that unlike dementia, delirium is usually temporary, resolving when the underlying cause is addressed promptly.

Delirium can sometimes resolve within hours to days.

But in other cases, it takes weeks or months to fully resolve.

So what causes delirium? Well the exact mechanism is not well understood, and unlike a lot of diseases there probably is no single cause.

But we do have a lot of clues and these come from understanding the risk factors for getting delirium in the first place.

Patients who have had recent surgery are often at risk for delirium, and it might be related to the effects of certain medications such as narcotic pain medication, benzodiazepines, hypnotics, and anticholinergics as well as the underlying diseases and chronic fatigue from not sleeping well in the hospital.

Since delirium can also cause trouble sleeping, losing sleep can turn into a dangerous cycle that can really worsen the symptoms.