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  2. Junctional rhythm - Wikipedia

    en.wikipedia.org/wiki/Junctional_rhythm

    The most obvious abnormal finding will be abnormal P waves. One of three options can occur: [12] 1. There are no P waves. This is because of either failure of retrograde flow to the atria or the P wave is hidden in the QRS. If the P wave is hidden that implies the atria depolarize at the same time as the ventricles. 2.

  3. Ectopic pacemaker - Wikipedia

    en.wikipedia.org/wiki/Ectopic_pacemaker

    On an ECG, the QRS complex will be abnormally shaped when looking at ventricular ectopic activity, often it occurs earlier with an absent P wave. It can be perceived as a skipped beat on both the ECG and through normal pulse-taking. [12] During atrial ectopic activity where the P wave is normally rounded can be inverted or peaked.

  4. Sinoatrial arrest - Wikipedia

    en.wikipedia.org/wiki/Sinoatrial_arrest

    Atrial escape (rate 60–80): originates within atria, not sinus node (normal P morphology is lost). Junctional escape (rate 40–60): originates near the AV node; a normal P wave is not seen, may occasionally see a retrograde P wave. Ventricular escape (rate 20–40): originates in ventricular conduction system; no P wave, wide, abnormal QRS.

  5. Electrocardiography - Wikipedia

    en.wikipedia.org/wiki/Electrocardiography

    The P wave is typically upright in most leads except for aVR; an unusual P wave axis (inverted in other leads) can indicate an ectopic atrial pacemaker. If the P wave is of unusually long duration, it may represent atrial enlargement. Typically a large right atrium gives a tall, peaked P wave while a large left atrium gives a two-humped bifid P ...

  6. Idioventricular rhythm - Wikipedia

    en.wikipedia.org/wiki/Idioventricular_rhythm

    An idioventricular rhythm is a cardiac rhythm characterized by a rate of <50 beats per minute (bpm), absence of conducted P waves and widening of the QRS complex. [1] In cases where the heart rate is between 50 and 110 bpm, it is known as accelerated idioventricular rhythm and ventricular tachycardia if the rate exceeds 120 bpm.

  7. Wandering atrial pacemaker - Wikipedia

    en.wikipedia.org/wiki/Wandering_atrial_pacemaker

    To make the diagnosis, there must be at least 3 different P-wave morphologies in a single ECG lead due to the shifting of the pacemaker in the atria. [1] This is different from normal sinus rhythm where one will see the same P-wave morphology through the same lead because each beat is started from the SA node. The P-wave is normally upright or ...

  8. Cardiac conduction system - Wikipedia

    en.wikipedia.org/wiki/Cardiac_conduction_system

    Different wave shapes generated by different parts of the heart's action potential The ECG complex. P=P wave, PR=PR interval, QRS=QRS complex, QT=QT interval, ST=ST segment, T=T wave Principle of ECG formation. The red lines represent the depolarization wave, not bloodflow. An electrocardiogram is a recording of the electrical activity of the ...

  9. Rhythm interpretation - Wikipedia

    en.wikipedia.org/wiki/Rhythm_interpretation

    Ventricular tachycardia is a regular rhythm with a rate of 140-250 bpm, there are no P waves and the main feature is a wide QRS complex (0.12 and greater) Ventricular fibrillation has no p waves or QRS complexes, there are only wavy irregular deflections throughout the heart rhythm, at this point the heart would have a rate of 0 and be ...