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  • What is the accessory pathway in Wolff-Parkinson-White (WPW) syndrome called?


    Bundle of Kent

    wpw anatomy
  • How does the Bundle of Kent alter ventricular activation in WPW?


    It provides a pre-excitation pathway that bypasses the AV node and reaches the ventricles earlier.

    wpw physiology
  • What are the three classic EKG findings in sinus rhythm with WPW?


    • Delta wave (slurred QRS upstroke)
    • Shortened PR interval
    • Widened QRS complex
    wpw ekg
  • Why does a delta wave appear on the EKG in WPW?


    Because the pre-excitation pathway activates the ventricles before the AV node signal, producing a slurred QRS upstroke.

    wpw ekg
  • How are many WPW cases discovered clinically?


    Often asymptomatic and discovered incidentally on EKG in younger patients.

    wpw epidemiology
  • What is orthodromic AVRT in WPW?


    A reentrant circuit where signal goes anterograde through the AV node and retrograde through the Bundle of Kent, causing SVT.

    wpw arrhythmia
  • What are the EKG features and typical rate of orthodromic AVRT?


    • Narrow QRS complex
    • Rapid rate often in the 160s-170s
    • Delta wave absent during orthodromic AVRT
    wpw ekg
  • What acute treatments are appropriate for orthodromic AVRT?


    Adenosine and calcium channel blockers to block the AV node and break the reentrant circuit.

    wpw treatment
  • What is antidromic AVRT in WPW?


    A reentrant circuit with anterograde conduction through the Bundle of Kent and retrograde conduction through the AV node.

    wpw arrhythmia
  • Which AV nodal drugs are contraindicated in antidromic AVRT and why?


    Do NOT use adenosine or calcium channel blockers because blocking the AV node forces conduction through the Bundle of Kent and can cause ventricular tachycardia or fibrillation.

    wpw contraindication
  • What is the recommended drug treatment for antidromic AVRT?


    Use procainamide instead of AV nodal blocking agents.

    wpw treatment
  • Why are AV nodal blocking agents contraindicated in WPW with atrial fibrillation?


    Blocking the AV node lets atrial signals flood the accessory pathway (which lacks the same refractory period), risking ventricular tachycardia or fibrillation.

    wpw afib
  • Which drugs should NOT be used in WPW with atrial fibrillation?


    • Calcium channel blockers
    • Digoxin
    • Beta blockers
    wpw contraindication
  • What atrial rate example is given for atrial fibrillation that can occur in WPW?


    Atrial fibrillation can generate rapid atrial rates, e.g., 400 beats per minute.

    wpw afib
  • What is the immediate management for unstable WPW patients?


    Unstable patients require electrical cardioversion.

    wpw emergency
  • What is the definitive treatment for WPW?


    Catheter ablation of the accessory pathway.

    wpw definitive
ํ•™์Šต ๋…ธํŠธ

Overview

  • Wolffโ€“Parkinsonโ€“White (WPW) syndrome is cardiac pre-excitation caused by an accessory pathway (Bundle of Kent) that can bypass the AV node and alter ventricular activation and arrhythmia risk.
  • Often asymptomatic and found incidentally on ECG, but can produce reentrant supraventricular tachycardia or dangerous rapid ventricular rates when atrial fibrillation occurs.

Anatomy & basic pathophysiology

  • The Bundle of Kent connects atria to ventricles outside the AV node, allowing earlier ventricular activation (pre-excitation).
  • In normal conduction: SA node โ†’ AV node โ†’ ventricles. In WPW, accessory pathway can deliver impulses faster to ventricles, competing with AV nodal conduction.
  • Pre-excitation short-circuits normal delay at the AV node and can form reentrant circuits when dual conduction pathways exist.

Key ECG features in sinus rhythm (WPW pattern)

  • Delta wave: a slurred upstroke of the QRS due to early ventricular activation via the accessory pathway.
  • Short PR interval: impulse reaches ventricles earlier than via AV node.
  • Widened QRS: because initial activation is abnormal and full ventricular depolarization follows a longer route.
  • The delta wave may be subtle or intermittent; careful inspection of ECG leads is required.

Reentrant tachycardias in WPW

Orthodromic AVRT (most common SVT in WPW)

  • Reentry travels anterograde through the AV node and retrograde via the Bundle of Kent, forming a continuous loop.
  • Produces a narrow-complex tachycardia because ventricular activation runs through the normal Hisโ€“Purkinje system.
  • Delta wave is absent during the tachycardia (pre-excitation not seen because anterograde conduction uses AV node).
  • Typical rate: about \(160\)โ€“\(170\) bpm; patients report sudden palpitations.
  • Acute treatment: AV nodal blocking agents such as adenosine or calcium channel blockers are effective because they interrupt the anterograde limb of the circuit.

Antidromic AVRT

  • Reentry goes anterograde through the Bundle of Kent and retrograde through the AV node.
  • Results in a wide-complex tachycardia because ventricles are activated via the accessory pathway.
  • Do NOT use adenosine or AV-nodal blocking drugs hereโ€”blocking the AV node can force all conduction down the accessory pathway and precipitate ventricular tachyarrhythmia.
  • Preferred acute pharmacologic therapy: procainamide (stabilizes conduction via accessory pathway).

WPW with atrial fibrillation (AF)

  • AF can produce very fast atrial rates (e.g., around \(400\) beats per minute).
  • The AV node normally limits how many impulses reach the ventricles; the accessory pathway often lacks the same rate-limiting refractory properties.
  • Giving AV nodal blockers (calcium channel blockers, digoxin, beta blockers) can block the AV node and divert conduction to the accessory pathway, risking extremely rapid ventricular rates, ventricular tachycardia, or ventricular fibrillation.
  • AV nodal blockers are contraindicated in WPW with AF. Use agents that slow conduction through or modify the accessory pathway (e.g., procainamide) or perform urgent electrical cardioversion if unstable.

Acute management summary

  • Unstable patient (hypotension, ischemia, shock, altered mental status): immediate synchronized electrical cardioversion.
  • Stable patient with narrow-complex orthodromic AVRT: adenosine or AV node blockers (if not contraindicated) to interrupt the circuit.
  • Stable patient with wide-complex tachycardia suspicious for antidromic AVRT or WPW with pre-excited AF: avoid AV nodal blockers; use procainamide or consult electrophysiology.

Definitive treatment

  • Catheter ablation of the accessory pathway is the definitive therapy and is curative in most patients.
  • Ablation is indicated for symptomatic patients, recurrent tachyarrhythmias, or high-risk accessory pathways.

Clinical pearls

  • Always differentiate orthodromic (narrow QRS, treat with AV nodal blockers) from antidromic/pre-excited arrhythmia (wide QRS, avoid AV nodal blockers).
  • In any WPW patient with AF or an irregular wide-complex tachycardia, do not give AV nodal blockers; think accessory-pathway conduction and consider procainamide or cardioversion.
  • Delta waves may be subtleโ€”young, asymptomatic patients can still harbor a dangerous pathway.

Quick algorithm (stable vs unstable)

  1. Assess stability: if unstable โ†’ synchronized cardioversion.
  2. If stable and narrow-complex SVT consistent with orthodromic AVRT โ†’ adenosine or other AV nodal blocker.
  3. If wide-complex tachycardia, pre-excited AF, or antidromic AVRT suspected โ†’ avoid AV node blockers; use procainamide and consult EP.
  4. Consider catheter ablation for definitive management.