Related Experiment Video
Updated: Aug 15, 2026

High-resolution Optical Mapping of the Mouse Sino-atrial Node
Published on: December 2, 2016
Myocardial connections between left atrial myocardium and coronary sinus musculature in man
Insights
Discrete connections between the coronary sinus (CS) and left atrial (LA) myocardium were identified in patients with atrial arrhythmias. Block in these CS-LA connections was associated with a higher incidence of atrial fibrillation and flutter.
Area of Science:
- Electrophysiology
- Cardiac Anatomy
- Arrhythmology
Background:
- Anatomical studies reveal atrial myocardial muscle surrounding the coronary sinus (CS).
- The CS musculature connects variably to the left atrial (LA) myocardium, with fewer distal connections.
- The relationship between CS-LA connections and atrial arrhythmias requires further investigation.
Purpose of the Study:
- To identify connections between the LA myocardium and CS musculature in humans using pacing techniques.
- To investigate the association between these CS-LA connections and the occurrence of natural atrial arrhythmias.
Main Methods:
- Electrophysiologic study in 30 patients with atrial arrhythmias.
- CS pacing with extrastimulus delivery during distal and proximal pacing.
- Analysis of electrograms to detect double potentials, local delay, or absence of block in CS-LA connections.
Main Results:
- Nine patients showed evidence of block in discrete distal CS-LA pathways during pacing.
- Eight patients exhibited local delay without complete block, indicating LA activation fusion.
- Thirteen patients had no block in distal CS-LA connections.
- Block at the distal CS-LA connection was significantly associated with a history of atrial fibrillation or atypical atrial flutter (P = 0.004).
Conclusions:
- Discrete connections between the LA and distal CS exist in humans.
- The presence of block in these CS-LA connections is linked to the clinical occurrence of atrial arrhythmias.
Introduction:
Anatomic studies have shown that muscle morphologically identical to that of the atrial myocardium consistently surrounds the coronary sinus (CS). The CS musculature is connected to the left atrial (LA) myocardium in a variable fashion, with fewer connections in its distal portion. The aim of this study was to document the presence of connections between the LA myocardium and the CS musculature, using pacing maneuvers in man, and to study their potential association with natural atrial arrhythmia occurrence.
Methods And Results:
Thirty patients (19 men; mean age 50.5 years) underwent electrophysiologic study, during which a decapolar catheter with 2-mm interelectrode spacing every 10 mm was inserted into the CS, with the proximal electrode pair positioned at the ostium. Associated atrial arrhythmias were paroxysmal atrial fibrillation in 5, typical atrial flutter in 13, LA flutter in 1, and other in 11. Baseline S1 and a single extrastimulus were delivered during distal and proximal CS pacing, while recordings were obtained from the four remaining bipoles. During distal CS pacing, double potentials with increasing interpotential interval from proximal to distal CS as a function of extrastimulus prematurity were detected in nine patients, suggesting block in a discrete local pathway distally connecting the CS to the LA and leading to reversion of low LA activation. Local delay in this pathway without complete CS-LA block resulting in LA activation fusion was observed in eight patients. A single nonfractionated potential at the distal CS, even at the shortest attainable S1-S2 coupling interval, which was interpreted as no block within distal CS-LA connection(s), was observed in the other 13 patients. History of atrial fibrillation or atypical atrial flutter was found in 8 of 9 patients with block at the distal CS-LA connection but in only 3 of 13 patients with no CS-LA connection block (P = 0.004).
Conclusion:
The ability to dissociate the LA from the distal CS suggests the presence of discrete connections between these structures in man. This observation appears to be associated with the clinical occurrence of atrial arrhythmias.
More Related Videos
05:16Whole-Mount Immunofluorescence Staining, Confocal Imaging and 3D Reconstruction of the Sinoatrial and Atrioventricular Node in the Mouse
Published on: December 22, 2020
08:52Microdissection and Immunofluorescence Staining of Myocardial Sleeves in Murine Pulmonary Veins
Published on: November 21, 2023
Related Concept Videos
Anatomy of the Heart
Chambers of the Heart
Deoxygenated blood from the body is received in the right...
Coronary Circulation
Coronary circulation begins at the base of the aorta, where two main arteries arise—the left and right coronary arteries. These arteries encircle the heart in the coronary sulcus and supply the...
Overview of Systemic Veins
The coronary sinus, the heart's principal vein, resides in the coronary sulcus on the heart's posterior aspect. This broad venous channel receives nearly all venous blood from the myocardium, the heart muscle. It is fed by three primary veins: the great cardiac vein, the middle...
Anatomy of the Heart
The heart has three layers: the innermost endocardium, the muscular myocardium, and the outer epicardium, all working together for optimal cardiac function.
Chambers of the Heart
The heart is made up of four...
Physiology of the Heart: The Cardiac Cycle
Diastole: The Relaxation Phase
During diastole, all four heart chambers relax. The atrioventricular (AV) valves open, and the semilunar valves close. This phase sees the lowest chamber pressures, promoting ventricular filling. Venous blood enters the heart through the...