A Review of the Diagnostic Scope of Biomarker Techniques, Genetic Screening and Virtual Scanning.

Graham Wilfred Ewing
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引用次数: 2

Abstract

The purpose of this article is to compare and evaluate the advantages and benefits of the cognitive screening technique Virtual Scanning with contemporary diagnostic and screening techniques, in particular genetic screening and biomarkers. In the last 50 years biomarker techniques and more recently genetic screening have been developed to characterise the onset, progression and regression of pathologies. Nevertheless the scientific picture is not yet complete. It does not yet include an understanding of relationship between genotype and phenotype; the regulatory function of the autonomic nervous system; or the rate or level of the expressed protein, protein conformation, the rate at which proteins react, and the reaction conditions such as pH, levels of minerals and cofactors, and temperature. By contrast, Virtual Scanning is based upon the light absorbing and emitting properties of proteins and how this bioluminescence influences colour perception. It provides a measure of the level of expressed protein and the rate at which such expressed protein subsequently reacts with its reactive substrate. The article highlights the limitations of genetic screening and biomarkers and the perceived advantages which Virtual Scanning may have for routine mass screening e.g. of diabetes, cardiovascular disease, cancers, depression, migraine, etc.

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生物标志物技术、基因筛选和虚拟扫描诊断范围的综述。
本文的目的是比较和评估认知筛查技术虚拟扫描与当代诊断和筛查技术的优势和好处,特别是遗传筛查和生物标志物。在过去的50年里,生物标志物技术和最近的遗传筛查已经发展到表征病理的发生、进展和消退。然而,科学的图景还不完整。它还不包括对基因型和表型之间关系的理解;自主神经系统的调节功能;或表达蛋白质的速率或水平、蛋白质构象、蛋白质反应的速率以及反应条件,如pH值、矿物质和辅助因子的水平以及温度。相比之下,虚拟扫描是基于蛋白质的光吸收和发射特性以及这种生物发光如何影响颜色感知。它提供了表达蛋白水平的测量,以及这种表达蛋白随后与其活性底物反应的速率。本文强调了遗传筛查和生物标志物的局限性,以及虚拟扫描在常规大规模筛查中可能具有的优势,例如糖尿病、心血管疾病、癌症、抑郁症、偏头痛等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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