Weiss H R, Conway R S
Cardiovasc Res. 1985 Jun;19(6):343-54. doi: 10.1093/cvr/19.6.343.
A method has been developed to simultaneously and regionally determine several morphometric indices of both the total and perfused arteriolar and capillary beds of the rabbit heart on a quantitative basis. A high molecular weight fluorescein isothiocyanate (FITC) dextran, was injected into the femoral vein of an anaesthetised open chest rabbit. The hearts were removed and frozen in liquid N2 within 14 s after this injection. Sections, 2 micrometers thick, were obtained from the left ventricular wall and the fluorescence photographed to detect perfused arterioles and capillaries. The sections were then stained to visualise the total arteriolar and capillary network. Standard morphometric techniques were employed to study the total and perfused microvasculature. The method was validated to show that it did not alter the microvasculature of the heart, that both the total and perfused microvasculature could be visualised, and that there was little tissue shrinkage. The study found no significant subepicardial vs subendocardial differences in either the total or perfused capillary of arteriolar networks. The total capillary bed had very much larger morphometric indices than the total arteriolar bed. The percentage of the microvasculature perfused ranged from 55 to 64% of the capillary and 51 to 56% of the arteriolar beds for the various indices. Thus at least a part of the control of capillary perfusions is at the level of the arteriole. There was an almost twofold functional reserve in the microvasculature of the heart which could be mobilised by asphyxia.
已开发出一种方法,可在定量基础上同时并按区域确定兔心脏总动脉和毛细血管床以及灌注动脉和毛细血管床的几个形态测量指标。将一种高分子量异硫氰酸荧光素(FITC)葡聚糖注入麻醉开胸兔的股静脉。注射后14秒内取出心脏并在液氮中冷冻。从左心室壁获取2微米厚的切片,拍摄荧光照片以检测灌注的小动脉和毛细血管。然后对切片进行染色以显示总动脉和毛细血管网络。采用标准形态测量技术研究总微血管和灌注微血管。该方法经验证表明,它不会改变心脏的微血管结构,总微血管和灌注微血管均可可视化,且组织收缩很小。研究发现,无论是总动脉网络还是灌注动脉网络的毛细血管,心外膜下与心内膜下均无显著差异。总毛细血管床的形态测量指标比总动脉床大得多。对于各种指标,微血管灌注百分比在毛细血管的55%至64%和小动脉床的51%至56%之间。因此,毛细血管灌注的至少一部分控制在小动脉水平。心脏微血管存在近两倍的功能储备,可通过窒息调动。