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Treatment modalities for atrial flutter include:  
Treatment modalities for atrial flutter include:  
====Electric Cardioversion====
====Electric Cardioversion====
Synchronous direct current (DC) [[cardioversion]] is used as the initial treatment strategy in the management of [[hemodynamically unstable]] atrial flutter patients in emergency department.  External electrical [[cardioversion]] is effective in more than 90% of the cases and the initial shock strength used is 50 joules biphasic direct current.  Sometimes the first shock may convert an atrial flutter to atrial fibrillation, in such cases a second shock preferable of a higher strength is usually given to restore [[sinus rhythm]].  Electric [[cardioversion]] increases the risk of [[stroke]] and hence pre-treatment with a blood thinner is advised if time permits.
*Synchronous direct current (DC) [[cardioversion]] is used as the initial treatment strategy in the management of [[hemodynamically unstable]] atrial flutter patients in the emergency department.  External electrical [[cardioversion]] is effective in more than 90% of the cases and the initial shock strength used is 50 joules biphasic direct current.   
*Sometimes the first shock may convert an atrial flutter to atrial fibrillation, in such cases a second shock preferable of a higher strength is usually given to restore [[sinus rhythm]].   
*Electric [[cardioversion]] increases the risk of [[stroke]] and hence pre-treatment with a blood thinner is advised if time permits.


====AV Nodal Agents====
====AV Nodal Agents====
Ventricular rate control is the prime goal in the management of atrial flutter.  Drugs such as [[Calcium channel blocker|calcium channel blockers]] ([[verapamil]] or [[diltiazem]]) or [[beta-blocker]]s can be used for this.  These drugs act as AV node blocking agents and control ventricular rate, thereby preventing [[tachycardia induced cardiomyopathy]]. Beta-blockers also have a direct [[Antiarrhythmic agent|antiarrhythmic]] effect on the atria. Administration of [[adenosine]] reveals flutter waves by blocking the [[AV node]]. History of [[Wolff-Parkinson-White syndrome]] or [[pre-excitation syndrome]] has to be ruled out before administrating, as these agents while acting on AV node can accelerate conduction in the accessory pathways and can precipitate [[ventricular fibrillation]]. [[Digoxin]] can also be used as an AV blocking agent in combination with [[calcium channel blockers]] and [[beta-blockers]] in the event of failure of electric [[cardioversion]], atrial pacing and pharmacologic therapy.
*Ventricular rate control is the prime goal in the management of atrial flutter.   
*Drugs such as [[Calcium channel blocker|calcium channel blockers]] ([[verapamil]] or [[diltiazem]]) or [[beta-blocker]]s can be used for this.  These drugs act as AV node blocking agents and control ventricular rate, thereby preventing [[tachycardia induced cardiomyopathy]].
*Beta-blockers also have a direct [[Antiarrhythmic agent|antiarrhythmic]] effect on the atria. Administration of [[adenosine]] reveals flutter waves by blocking the [[AV node]].  
*History of [[Wolff-Parkinson-White syndrome]] or [[pre-excitation syndrome]] has to be ruled out before administrating, as these agents while acting on AV node can accelerate conduction in the accessory pathways and can precipitate [[ventricular fibrillation]].  
*[[Digoxin]] can also be used as an AV blocking agent in combination with [[calcium channel blockers]] and [[beta-blockers]] in the event of failure of electric [[cardioversion]], atrial pacing and pharmacologic therapy.


====Antiarrhythmic Agents====
====Antiarrhythmic Agents====
Class III agents like [[ibutilide]], [[dofetilide]], [[sotalol]] or [[amiodarone]] are typically used for pharmacologic [[cardioversion]] in the treatment of atrial flutter.  Intravenous ibutilide is very effective in controlling acute atrial flutter episode and is found to be effective in at least 63% patients.  Patients who are administered i.v ibutilide should be monitored using an EKG for at least 4 hrs after the infusion as [[ibutilide]] is known to cause [[QT prolongation]] and [[torsades de pointes]].
*Class III agents like [[ibutilide]], [[dofetilide]], [[sotalol]] or [[amiodarone]] are typically used for pharmacologic [[cardioversion]] in the treatment of atrial flutter.   
 
*Intravenous ibutilide is very effective in controlling acute atrial flutter episodes and is found to be effective in at least 63% of patients.   
Class IC agents like [[propafenone]] or [[flecainide]] have also shown to be effective in the conversion of acute onset atrial flutter to [[normal sinus rhythm]].
*Patients who are administered i.v ibutilide should be monitored using an EKG for at least 4 hrs after the infusion as [[ibutilide]] is known to cause [[QT prolongation]] and [[torsades de pointes]].
*Class IC agents like [[propafenone]] or [[flecainide]] have also shown to be effective in the conversion of acute onset atrial flutter to [[normal sinus rhythm]].


====Rapid Atrial Pacing====
====Rapid Atrial Pacing====
As external electrical [[cardioversion]] requires anesthesia some doctors prefer atrial overdrive pacing to terminate episodes of atrial flutter.  In overdrive pacing the atria are continuously paced at a rate higher than that of the patient's sinus node, which causes an alteration in the atrial rate, propagation and also suppresses the [[automaticity]] caused by electrical remodeling in the diseased fibers. Unsuccessful pacing can be due to:<ref name="pmid64788432">{{cite journal |vauthors=Rozsíval V, Kvasnicka J |title=Atrial flutter treatment by rapid atrial pacing |journal=Cor Vasa |volume=26 |issue=3 |pages=167–72 |date=1984 |pmid=6478843 |doi= |url=}}</ref>
*As external electrical [[cardioversion]] requires anesthesia some doctors prefer atrial overdrive pacing to terminate episodes of atrial flutter.   
*In overdrive pacing the atria are continuously paced at a rate higher than that of the patient's sinus node, which causes an alteration in the atrial rate, propagation and also suppresses the [[automaticity]] caused by electrical remodeling in the diseased fibers. Unsuccessful pacing can be due to:<ref name="pmid64788432">{{cite journal |vauthors=Rozsíval V, Kvasnicka J |title=Atrial flutter treatment by rapid atrial pacing |journal=Cor Vasa |volume=26 |issue=3 |pages=167–72 |date=1984 |pmid=6478843 |doi= |url=}}</ref>


====Contraindicated medications====
* Insufficient rate and duration of pacing
* Insufficient rate and duration of pacing
* Bad [[electrode]] contact in the [[Atrium (heart)|atrium]]
* Bad [[electrode]] contact in the [[Atrium (heart)|atrium]]
* Insufficient outlet current
* Insufficient outlet current


====Contraindicated medications====
{{MedCondContrAbs
|MedCond = Atrial flutter|Verapamil|Diltiazem injection}}


==References==
==References==

Revision as of 16:15, 6 January 2020

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Editor-In-Chief: C. Michael Gibson, M.S., M.D. [1]; Associate Editor(s)-in-Chief: Raviteja Guddeti, M.B.B.S. [2]

Overview

The management of atrial flutter is similar to that of atrial fibrillation with primary goals being control of ventricular rate, restoration of sinus rhythm, and prevention of recurrent episodes and thromboembolic episodes. In the setting of unstable hemodynamics immediate electrical cardioversion is recommended. because of the high success rate and low complication rate radiofrequency ablation is considered superior to medical therapy in atrial flutter.

Medical Therapy

Treatment goals in the management of atrial flutter include:

Treatment modalities for atrial flutter include:

Electric Cardioversion

  • Synchronous direct current (DC) cardioversion is used as the initial treatment strategy in the management of hemodynamically unstable atrial flutter patients in the emergency department. External electrical cardioversion is effective in more than 90% of the cases and the initial shock strength used is 50 joules biphasic direct current.
  • Sometimes the first shock may convert an atrial flutter to atrial fibrillation, in such cases a second shock preferable of a higher strength is usually given to restore sinus rhythm.
  • Electric cardioversion increases the risk of stroke and hence pre-treatment with a blood thinner is advised if time permits.

AV Nodal Agents

Antiarrhythmic Agents

Rapid Atrial Pacing

  • As external electrical cardioversion requires anesthesia some doctors prefer atrial overdrive pacing to terminate episodes of atrial flutter.
  • In overdrive pacing the atria are continuously paced at a rate higher than that of the patient's sinus node, which causes an alteration in the atrial rate, propagation and also suppresses the automaticity caused by electrical remodeling in the diseased fibers. Unsuccessful pacing can be due to:[1]

Contraindicated medications

  • Insufficient rate and duration of pacing
  • Bad electrode contact in the atrium
  • Insufficient outlet current


References

  1. Rozsíval V, Kvasnicka J (1984). "Atrial flutter treatment by rapid atrial pacing". Cor Vasa. 26 (3): 167–72. PMID 6478843.

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