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Cadaveric Study on the Morphology and Morphometry of Heart Papillary Muscles
Pooja Bhadoria1, Kanchan Bisht1, Brijendra Singh1
1Anatomy, All India Institute of Medical Sciences, Rishikesh, IND.
Insights
This study details the anatomy of papillary muscles in human heart ventricles. Findings confirm consistent numbers and prevalent shapes, crucial for understanding heart valve function and surgical interventions.
Area of Science:
- Cardiovascular Anatomy
- Cardiac Surgery
Background:
- The atrioventricular valve complex includes the A-V ring, cusps, chordae tendineae, and papillary muscles.
- Papillary muscles are vital for proper valve function, with variations potentially impacting cardiac health.
Purpose of the Study:
- To investigate the anatomical variations of papillary muscles in human ventricles.
- To provide essential data for cardiac surgeons and anatomists regarding papillary muscle morphology.
Main Methods:
- Examination of 50 formalin-preserved human cadaver hearts.
- Detailed recording of the number, shape, size, and pattern of papillary muscles in both ventricles.
- Statistical analysis of collected data using SPSS.
Main Results:
- Consistent presence of three papillary muscles in the right ventricle and two in the left ventricle across all specimens.
- Conical shape and single base and divided apex (SBDA) pattern were most common in the right ventricle.
- Statistically significant differences in mean lengths of anterior and posterior papillary muscles between the right and left ventricles were observed.
Conclusions:
- Papillary muscle anatomy is crucial for atrioventricular valve function.
- A comprehensive understanding of papillary muscle variations is essential for anatomists, physiologists, and cardiologists in managing valvular conditions.
Abstract:
Introduction A normal atrioventricular valve complex of the heart consists of the atrioventricular (A-V) ring, cusps, chordae tendineae, and papillary muscles. The right ventricle contains three while the left ventricle contains only two papillary muscles, which are named according to their location. A thorough understanding of the normal anatomy as well as possible variations can help surgeons in various corrective surgeries involving papillary muscles. Material & methods The study included 50 formalin-preserved hearts procured from human cadavers of unknown age and cause of death. The number of papillary muscles along with their shape, size, and pattern were noted separately for each ventricle. Data were analyzed using SPSS Version 21.0 (IBM Corp., Armonk, NY). Results The left and right ventricles contained two and three papillary muscles, respectively, in all the hearts. In the right ventricles, conical shape and the single base and divided apex (SBDA) pattern were found to be most prevalent. Anterior papillary muscles exhibited the mean length of 12.71±3.81 and 16.41±4.33 in the right and left ventricles, respectively. Similarly, posterior papillary muscles exhibited a mean length of 12.40±3.03 and 14.64±3.92 in the right and left ventricles, respectively. Both differences were found to be statistically significant Conclusion For the appropriate functioning of valves, both anatomical and mechanical coherence of the papillary muscles is required. A very keen understanding of this valvular complex is thus essential for anatomists, physiologists, and cardiologists to deal with normal as well as pathological valvular conditions.
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