Published November 2016 | Version v1
Journal article

Pneumatic distension of ventricular mural architecture validated histologically

  • 1. University Hospital Muenster (Germany). Dept. of Clinical Radiology
  • 2. University Hospital Muenster (Germany). Dept. of Experimental Thoraco-vascular Surgery
  • 3. ETH and University of Zuerich (Switzerland). Inst. for Biomedical Engineering
  • 4. Twente Univ. (Netherlands). Dept. of Applied Mathematics
  • 5. University Hospital Muenster (Germany). Center for Reproductive Medicine and Andrology
  • 6. Aarhus University Hospital (Denmark). Dept. of Cardiothoracic and Vascular Surgery
  • 7. University Hospital Muenster (Germany). Dept. Surgical Research
  • 8. Cologne Univ. (Germany). Dept. of Radiology
  • 9. Newcastle Univ., London (United Kingdom). Inst. of Genetic Medicine

Description

There are ongoing arguments as to how cardiomyocytes are aggregated together within the ventricular walls. We used pneumatic distension through the coronary arteries to exaggerate the gaps between the aggregated cardiomyocytes, analyzing the pattern revealed using computed tomography, and validating our findings by histology. We distended 10 porcine hearts, arresting 4 in diastole by infusion of cardioplegic solutions, and 4 in systole by injection of barium chloride. Mural architecture was revealed by computed tomography, measuring also the angulations of the long chains of cardiomyocytes. We prepared the remaining 2 hearts for histology by perfusion with formaldehyde. Increasing pressures of pneumatic distension elongated the ventricular walls, but produced insignificant changes in mural thickness. The distension exaggerated the spaces between the aggregated cardiomyocytes, compartmenting the walls into epicardial, central, and endocardial regions, with a feathered arrangement of transitions between them. Marked variation was noted in the thicknesses of the parts in the different ventricular segments, with no visible anatomical boundaries between them. Measurements of angulations revealed intruding and extruding populations of cardiomyocytes that deviated from a surface-parallel alignment. Scrolling through the stacks of tomographic images revealed marked spiraling of the aggregated cardiomyocytes when traced from base to apex. Our findings call into question the current assumption that cardiomyocytes are uniformly aggregated together in a tangential fashion. There is marked heterogeneity in the architecture of the different ventricular segments, with the aggregated units never extending in a fully transmural fashion.

Additional details

Publishing Information

Journal Title
RoeFo - Fortschritte auf dem Gebiete der Roentgenstrahlen und der bildgebenden Verfahren
Journal Volume
188
Journal Issue
11
Journal Page Range
p. 1045-1053
ISSN
1438-9029
CODEN
RFGNDO