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The organization of the salivary gland microcirculation

机译:唾液腺微循环的组织

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摘要

1. The microvasculature of the rabbit submandibular salivary gland has been investigated employing in vivo microscopy, blood flow measurements, latex casts, microsphere injections and examination of fixed sections of the gland.2. Two principal microcirculations were distinguished in the living gland, one supplying the acini and the other the intralobular ducts. Parasympathetic nerve stimulation (2, 5 or 10 sec-1) elicited different responses in each of the two microcirculations. Flow in the capillaries around the acini slowed initially before increasing. In contrast, flow in the intralobular duct capillaries increased soon after beginning stimulation.3. In some experiments both whole gland flow and microvascular flow were monitored simultaneously. Whole gland flow increased at the same time as flow in the acinar capillaries was decreasing and as flow in the intralobular duct capillaries increased. Flow in acinar capillaries increased about 5 sec after glandular flow started to increase.4. These observations could be explained if either the vascular beds of the acini and the intralobular ducts were arranged in parallel or if arteriovenous anastomoses were to shunt the acinar circulation. No such anastomoses were found in latex casts made of the gland vasculature, and microspheres injected into the artery supplying the gland were not found in the venous effluent.5. The intraglandular distribution of microspheres was measured in histological sections of the injected glands to give an estimate of the distribution of blood flow between the duct and acinar microcirculations. At rest and during maintained stimulation about 55% of the blood flow passed through the intralobular duct microcirculations, whilst during this initial 15 sec of stimulation this proportion was increased to over 70%. This finding is consistent with a parallel arrangement of the two microcirculations.6. The conclusions drawn from these observations are that the duct and acinar microcirculations are arranged in parallel, that there are differences in the way the vasodilatation is mediated in these circulations, and that arterio-venous anastomoses play no significant role in this gland.
机译:1.已通过体内显微镜,血流测量,乳胶铸模,微球注射和检查腺体固定部分研究了兔颌下唾液腺的微血管。2。在活体腺体中有两种主要的微循环,一种是提供腺泡,另一种是小叶内导管。副交感神经刺激(2、5或10 sec -1 )在两个微循环中均引起不同的反应。腺泡周围毛细血管的流量在开始增加之前开始变慢。相反,刺激开始后小叶内毛细血管的流量增加。3。在某些实验中,同时监测整个腺体流量和微血管流量。随着腺泡毛细血管流量的减少和小叶内导管毛细血管流量的增加,整个腺体流量增加。腺体流量开始增加后约5秒钟,腺泡毛细血管的流量增加了。4。如果痤疮的血管床和小叶内导管平行放置,或者动静脉吻合口可以分流腺泡循环,则可以解释这些观察结果。在由腺体脉管制成的乳胶铸模中未发现这样的吻合,并且在静脉流出物中未发现注入到供给腺体的动脉中的微球。5。在注射的腺体的组织学切片中测量微球的腺内分布,以估计导管和腺泡微循环之间的血流分布。在静止和持续刺激过程中,约55%的血流通过小叶内管微循环,而在最初的15秒刺激过程中,这一比例增加到70%以上。这一发现与两个微循环的平行排列相一致。6。从这些观察得出的结论是,导管和腺泡微循环是平行排列的,在这些循环中介导血管舒张的方式存在差异,并且动静脉吻合在该腺体中不发挥重要作用。

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