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首页> 外文期刊>Physics in medicine and biology. >The inclusion of capillary distribution in the adiabatic tissue homogeneity model of blood flow.
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The inclusion of capillary distribution in the adiabatic tissue homogeneity model of blood flow.

机译:在绝热组织均质性血流模型中包括毛细管分布。

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We have developed a non-invasive imaging tracer kinetic model for blood flow which takes into account the distribution of capillaries in tissue. Each individual capillary is assumed to follow the adiabatic tissue homogeneity model. The main strength of our new model is in its ability to quantify the functional distribution of capillaries by the standard deviation in the time taken by blood to pass through the tissue. We have applied our model to the human prostate and have tested two different types of distribution functions. Both distribution functions yielded very similar predictions for the various model parameters, and in particular for the standard deviation in transit time. Our motivation for developing this model is the fact that the capillary distribution in cancerous tissue is drastically different from in normal tissue. We believe that there is great potential for our model to be used as a prognostic tool in cancer treatment. For example, an accurate knowledge of the distribution in transit times might result in an accurate estimate of the degree of tumour hypoxia, which is crucial to the success of radiation therapy.
机译:我们已经开发了一种考虑到毛细血管在组织中的分布的血流非侵入性成像示踪动力学模型。假定每个毛细管都遵循绝热组织均匀性模型。我们的新模型的主要优势在于它能够通过血液通过组织所花费的时间的标准偏差来量化毛细管的功能分布。我们已将我们的模型应用于人类前列腺,并测试了两种不同类型的分布函数。对于各种模型参数,特别是对于运输时间的标准偏差,两个分布函数都得出了非常相似的预测。我们开发此模型的动机是,癌组织中的毛细管分布与正常组织中的毛细管分布有很大不同。我们认为,将我们的模型用作癌症治疗的预后工具具有很大的潜力。例如,对运输时间分布的准确了解可能会导致对肿瘤缺氧程度的准确估计,这对放射治疗的成功至关重要。

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