Conduction Physiology
Automaticity & Cellular Physiology Category Name
EKG Correlation
Anatomy & Localization
Clinical Application
200


This conduction structure is specifically designed with switchbacks and multiple changes in direction to intentionally slow electrical propagation.


Answer: What is the AV node?

200


The SA node suppresses lower pacemakers because it possesses this unique characteristic.


Answer: What is the lowest automaticity threshold (fastest intrinsic firing rate)?

200


Mechanical systole begins during this portion of the EKG.


Answer: What is the ST segment?

200


The AV node lies within this anatomical triangle.



Answer: What is the Triangle of Koch?

200


An EKG demonstrates a PR interval of 0.10 seconds. According to the lecture, this interval is considered:


Answer: What is abnormally short?

400


Without this fibrous structure, atrial impulses could bypass the AV node and depolarize the ventricles directly.


Answer: What is the fibrous cardiac skeleton?

400


Immediately after ventricular depolarization, what happens to the automaticity timers throughout the myocardium?


Answer: They are reset simultaneously.

400

The atria repolarize during this electrical event, making atrial repolarization normally invisible.


Answer: What is the QRS complex?

400


Name all three borders of the Triangle of Koch.


Answer: What are the coronary sinus, septal leaflet of the tricuspid valve, and interatrial septum?

400


An EKG has a heart rate of 92 bpm, regular rhythm, PR interval of 0.16 sec, QRS duration of 0.09 sec, and a 1:1 P:QRS ratio. Identify the rhythm.


Answer: What is normal sinus rhythm?

600


If the Bundle of His is completely interrupted, what intrinsic pacemaker tissue would most likely maintain ventricular contraction?


Answer: What are the Purkinje fibers (ventricular pacemakers)?

600


Besides pacemaker cells, what other cardiac cells possess automaticity?


Answer: What are mechanical (myocardial) cells?

600


Which electrical event immediately precedes isovolumic contraction?


Answer: What is ventricular depolarization (QRS complex)?

600


This fascicle courses toward the inferior and posterior left ventricle.


Answer: What is the left posterior fascicle?

600


An EKG has a heart rate of 48 bpm, normal PR interval, narrow QRS, and a 1:1 P:QRS ratio. Identify the rhythm.


Answer: What is sinus bradycardia?

800


A depolarization begins in the SA node but cannot travel through the anterior internodal tract. Which remaining pathways still conduct the impulse to the AV node?


Answer: What are the middle and posterior internodal tracts?

800

Which myocardial property would be most directly affected if intercalated discs suddenly failed?


Answer: What is conductivity?

800


A patient demonstrates ventricular depolarization but no preceding atrial depolarization. Which EKG wave is absent?


Answer: What is the P wave?

800


This fascicle wraps around the apex before traveling basally along the anterior LV wall.


Answer: What is the left anterior fascicle?

800


An EKG has a heart rate of 132 bpm, normal PR interval, narrow QRS, and every QRS is preceded by a P wave. Identify the rhythm.


Answer: What is sinus tachycardia?

1000


Name every structure an impulse must travel through to depolarize the anterior wall of the left ventricle.


Answer: What is SA node → internodal tracts → AV node → Bundle of His → Left Bundle Branch → Left Anterior Fascicle → Purkinje fibers?

1000

A ventricular myocyte experiences increased intracellular calcium binding to troponin. Which myocardial property is directly enhanced?



Answer: What is contractility?

1000


Name every electrical component occurring between the onset of atrial depolarization and the onset of ventricular repolarization.


Answer: What are the P wave, PR segment, PR interval, QRS complex, and ST segment?

1000


This conduction pathway allows the left atrium to depolarize nearly simultaneously with the right atrium.


Answer: What is Bachmann's Bundle?

1000


A rhythm has a heart rate of 88 bpm but demonstrates a PR interval of 0.28 seconds. Does this meet the criteria for normal sinus rhythm?


Answer: No. Although the rate and rhythm are sinus, the PR interval is prolonged (>0.20 sec), so it does not meet the criteria for normal sinus rhythm as defined in the lecture.