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Nanodevices Based on Quantum Mechanics and Classsical Electrodynamics as Vascular Endothelial Growth Blockers to Detain Angiogenesis

机译:基于量子力学和经典电动力学的纳米器件作为血管内皮生长阻滞剂,可抑制血管生成

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The processes of angiogenesis have among their initial phases the processes such as the vascular endothelial growth (VEG) in order to guarantee the consistent sprouting and splitting of new blood vessels whose main purpose is the fueling of tumor. In this paper we develop a technique entirely based on Quantum Mechanics and Classical Electrodynamics to tackle down scenarios of anomalous growth of vessels. In conjunction to Classical Electrodynamics, we use Quantum Mechanics calculations to a more accurate prediction of the location and the subsequent detaining of anomalous growth of vessels that give rises to angiogenesis. For nanodevices whose size is of order of 10nm, the probability to identify a tube from VEG might be of order of 16%.
机译:血管生成的过程在其初始阶段具有诸如血管内皮生长(VEG)的过程,以确保主要目的是促进肿瘤的新血管持续发芽和分裂。在本文中,我们开发了一种完全基于量子力学和经典电动力学的技术来解决血管异常生长的情况。结合经典电动力学,我们使用量子力学计算来更准确地预测位置,并随后阻止引起血管生成的血管异常生长。对于尺寸约为10nm的纳米器件,从VEG识别管的可能性可能约为16%。

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