首页> 外文OA文献 >Variation Principles and Applications in the Study of Cell Structure and Aging
【2h】

Variation Principles and Applications in the Study of Cell Structure and Aging

机译:变异原理及其在细胞结构和衰老研究中的应用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

In this report we have attempted to show that "some reality lies concealed in biological variation". This "reality" has its principles, laws, mechanisms, and rules, only a few of which we have sketched. A related idea we pursued was that important information may be lost in the process of ignoring frequency distributions of physiological variables (as is customary in experimental physiology and gerontology). We suggested that it may be advantageous to expand one's "statistical field of vision" beyond simple averages +/- standard deviations. Indeed, frequency distribution analysis may make visible some hidden information not evident from a simple qualitative analysis, particularly when the effect of some external factor or condition (e.g., aging, dietary chemicals) is being investigated. This was clearly illustrated by the application of distribution analysis in the study of variation in mouse liver cellular and fine structure, and may be true of fine structural studies in general. In living systems, structure and function interact in a dynamic way; they are "inseparable," unlike in technological systems or machines. Changes in fine structure therefore reflect changes in function. If such changes do not exceed a certain physiologic range, a quantitative analysis of structure will provide valuable information on quantitative changes in function that may not be possible or easy to measure directly. Because there is a large inherent variation in fine structure of cells in a given organ of an individual and among individuals, changes in fine structure can be analyzed only by studying frequency distribution curves of various structural characteristics (dimensions). Simple averages +/- S.D. do not in general reveal all information on the effect of a certain factor, because often this effect is not uniform; on the contrary, this will be apparent from distribution analysis because the form of the curves will be affected. We have also attempted to show in this chapter that similar general statistical principles and mechanisms may be operative in biological and technological systems. Despite the common belief that most biological and technological characteristics of interest have a symmetric bell-shaped (normal or Gaussian) distribution, we have shown that more often than not, distributions tend to be asymmetric and often resemble a so-called log-normal distribution. We saw that at least three general mechanisms may be operative, i.e., nonadditivity of influencing factors, competition among individuals for a common resource, and existence of an "optimum" value for a studied characteristic; more such mechanisms could exist.
机译:在本报告中,我们试图证明“某些现实隐藏在生物学变异中”。这种“现实”具有其原理,法律,机制和规则,我们仅概述了其中的一些。我们追求的一个相关想法是,在忽略生理变量的频率分布的过程中可能会丢失重要的信息(这是实验生理学和老年病学中的惯例)。我们建议,将人的“统计视野”扩展到简单的平均值+/-标准差之外可能是有利的。确实,频率分布分析可以使一些隐藏的信息可见,而这些隐藏的信息是从简单的定性分析中看不出来的,尤其是在研究某些外部因素或条件(例如老化,饮食化学物质)的影响时。分布分析在小鼠肝细胞和精细结构变异研究中的应用清楚地说明了这一点,并且通常在精细结构研究中也是如此。在生命系统中,结构和功能以动态方式相互作用。与技术系统或机器不同,它们是“不可分割的”。因此,精细结构的变化反映了功能的变化。如果此类变化不超过某个生理范围,则对结构进行定量分析将提供有关功能的定量变化的有价值的信息,这些信息可能无法或难以直接测量。因为在个体的给定器官中以及个体之间的细胞的精细结构存在很大的固有变化,所以仅通过研究各种结构特征(尺寸)的频率分布曲线就可以分析精细结构的变化。简单平均值+/- S.D.一般而言,不要公开有关某个因素影响的所有信息,因为这种影响通常并不统一;相反,这将从分布分析中显而易见,因为曲线的形式将受到影响。我们还试图在本章中说明类似的一般统计原理和机制在生物和技术系统中可能有效。尽管人们普遍认为,大多数感兴趣的生物学和技术特征具有对称的钟形(正态或高斯)分布,但我们已经表明,分布往往不对称,并且通常类似于所谓的对数正态分布。我们看到至少三种通用机制可以起作用,即,影响因素的非可加性,个体之间对共同资源的竞争以及所研究特征的“最佳”价值的存在;可能存在更多这样的机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号