首页> 外文期刊>The Bulletin of Tokyo Dental College >MEASUREMENT OF PULPAL BLOOD FLOW IN DOGS WITH NONRADIOACTIVE COLORED MICROSPHERES
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MEASUREMENT OF PULPAL BLOOD FLOW IN DOGS WITH NONRADIOACTIVE COLORED MICROSPHERES

机译:非放射性彩色微球在狗中的血流量测量

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The viability of dental pulp depends largely on regional blood flow, as in other organs. Measurement of absolute pulpal blood flow (PBF) and comparisons with blood flow in other organs allow the prediction of microvascular regulation in dental pulp. In previous studies, PBF was measured in dogs mainly with radioactive microspheres. However, this established technique is inaccessible to many investigators due to concerns over radiation safety and radioactive waste. To overcome these limitations, a new method has been introduced that involves the use of nonradioactive colored microspheres for measuring regional blood flow in the myocardium and in other organs in animals. However, no previous studies have investigated the use of this method to measure PBF in dogs. We attempted to determine whether blood flow in dental pulp, which comprises a small amount of the total tissue in dogs, could be measured using this technique by comparing the measured values with those for regional myocardial blood flow. Mean blood flow values were between 0.148 and 0.182ml/min/g for dental pulp at four different sites and about 1.0ml/min/g in regional myocardium. These values are comparable to those previously reported using radioactive microspheres. As nonradioactive colored microspheres safely permitted measurement of absolute PBF in dogs, this technique appears to be useful for research into microvascular blood flow in dental pulp.
机译:与其他器官一样,牙髓的生存能力在很大程度上取决于局部血流。牙髓绝对血流量(PBF)的测量以及与其他器官血流量的比较,可以预测牙髓中微血管的调节。在先前的研究中,主要是用放射性微球对狗进行了PBF测定。然而,由于对辐射安全性和放射性废物的担忧,许多研究人员无法使用这种既定技术。为了克服这些限制,已引入一种新方法,该方法涉及使用非放射性有色微球来测量动物的心肌和其他器官中的局部血流。但是,以前没有研究调查使用这种方法测量狗的PBF。通过将测量值与局部心肌血流的测量值进行比较,我们试图确定是否可以使用该技术来测量牙髓中的血流,该牙髓占狗总组织的少量。牙髓在四个不同部位的平均血流值在0.148至0.182ml / min / g之间,在局部心肌中约为1.0ml / min / g。这些值与先前使用放射​​性微球报道的值相当。由于非放射性彩色微球安全地允许测量狗中的绝对PBF,因此该技术似乎对研究牙髓中微血管血流非常有用。

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