Dolber P C, Spach M S
Anat Rec. 1987 May;218(1):45-55. doi: 10.1002/ar.1092180109.
Light and electron microscopy were used to study the structure and distribution of thin collagenous septa (sheets) in dog and rabbit cardiac muscle to determine whether they, like thick collagenous septa, could affect electrical impulse propagation. Generally, thin septa (0.2-0.5 micron) ensheathed myocytes or groups of myocytes for short distances and thicker septa partially or completely ensheathed groups of myocytes for long distances (up to several mm); together, thin, and thick septa divided the myocardial mass into myocyte cords (funicles) of 10-30 micron diameter. Septal architecture varied not only between regions and within regions at different ages but also within single bundles, precluding the assumption that the architecture found in one bundle can be applied to another. Electron microscopy demonstrated that thick septa consisted of many tightly packed collagen fibrils, often with distinct layers running at different angles; thin septa consisting largely of circumferential collagen fibrils. Thin septa in dog ventricular papillary muscle generally contained few and widely spaced collagen fibrils, whereas thin septa in dog atrial Bachmann's bundle contained tightly packed collagen fibrils. In either site, thin septa were rarely breached by nexuses and thus marked sites where lateral intercellular electrical coupling was unlikely. Serial 7 micron cross sections of dog Bachmann's bundle stained by a modification of the picrosirius red technique showed that thin septa sometimes persisted uninterrupted over several myocyte lengths. The results provide evidence that thin septa comprised of tightly packed collagen fibrils may significantly modify impulse propagation transverse to the longitudinal axis of the myocytes.
利用光学显微镜和电子显微镜研究犬和兔心肌中薄胶原间隔(薄片)的结构和分布,以确定它们是否像厚胶原间隔一样会影响电冲动的传播。一般来说,薄间隔(0.2 - 0.5微米)在短距离内包裹单个心肌细胞或成组的心肌细胞,而较厚的间隔在长距离(长达数毫米)内部分或完全包裹成组的心肌细胞;薄间隔和厚间隔共同将心肌团块分割成直径为10 - 30微米的心肌索(索条)。间隔结构不仅在不同区域和不同年龄的同一区域内有所不同,而且在单个肌束内也存在差异,这使得不能假定在一个肌束中发现的结构可以应用于另一个肌束。电子显微镜显示,厚间隔由许多紧密排列的胶原纤维组成,这些纤维通常有不同角度的明显分层;薄间隔主要由周向胶原纤维组成。犬心室乳头肌中的薄间隔通常含有很少且间隔很宽的胶原纤维,而犬心房巴赫曼束中的薄间隔含有紧密排列的胶原纤维。在这两个部位,薄间隔很少被连接复合体穿透,因此标志着不太可能发生侧向细胞间电偶联的部位。用改良的天狼星红染色技术对犬巴赫曼束进行连续7微米的横断面染色显示薄间隔有时在几个心肌细胞长度上持续不间断。结果表明,由紧密排列的胶原纤维组成的薄间隔可能会显著改变电冲动在与心肌细胞纵轴垂直方向上的传播。