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Updated: Jun 6, 2026

3D Whole-heart Myocardial Tissue Analysis
Published on: April 12, 2017
Three-dimensional reconstruction of the human capillary network and the intramyocardial micronecrosis
Noboru Kaneko1, Ryuko Matsuda, Masashi Toda
1Department of Cardiology and Pneumology, Dokkyo Medical University, Mibu, Tochigi, Japan. nkaneko@aetaspharma.com
Insights
This study reveals the human heart
Area of Science:
- Cardiovascular Biology
- Microcirculation Research
- Anatomical Imaging
Background:
- Understanding intramyocardial microvasculature is crucial for cardiac function.
- Previous studies lacked detailed 3D reconstructions of the capillary network.
Purpose of the Study:
- To define the structure of the intramyocardial microvasculature using 3D reconstruction.
- To investigate the anatomical organization of capillaries within the heart muscle.
Main Methods:
- Three-dimensional reconstruction of serial sections from human left ventricular tissue.
- Detailed mapping of arterioles, venules, and capillaries.
- Analysis of capillary network architecture and spatial relationships with cardiomyocytes.
Main Results:
- The capillary network exhibits an ordered, lattice-like pattern with arterial and venous capillaries positioned alternately.
- Identified precapillary and capillary sinuses as key structures within the network.
- Cardiomyocyte size correlated with intramyocardial microcirculatory unit dimensions.
Conclusions:
- The intramyocardial capillary network is an anatomically regulated structure.
- Microcirculatory units and sinuses are vital for maintaining myocardial blood flow during cardiac cycles.
Abstract:
Three-dimensional reconstruction of the human heart was performed to define the structure of the intramyocardial microvasculature. A total of 200 consecutive serial sections of 6 μm each were prepared from the left ventricular tissue of an autopsied human heart with normal coronary arteries. The corresponding arteriole, venule, and all capillaries were reconstructed using three-dimensional software. The capillary network extended right and left along the cardiomyocyte with major and minor axes of about 130 and 120 μm, respectively. The capillary length from an arteriole to an adjacent venule was about 350 μm. Two types of sack-like structures, the precapillary sinus and the capillary sinus, were present in the capillary network, and many capillaries diverged from these sinuses. The cardiomyocytes were covered with reticular capillaries. In contrast, the precapillary and capillary sinuses were surrounded by many cardiomyocytes. The arterial and venous capillaries were positioned alternately, forming a lattice pattern. Intramyocardial microcirculatory units forming a capillary network from an arteriole to adjacent venules on both sides were present. The sizes of myocardial micronecroses corresponded to that of the intramyocardial microcirculatory unit. These results show that the capillary network is an ordered and anatomically regulated structure and that the microcirculatory unit and the precapillary and capillary sinuses may play an important role in maintaining the intramyocardial microcirculation during contraction and relaxation.

