【24h】

Can we computerize an elephant?

机译:我们可以电脑化大象吗?

获取原文

摘要

The talk shows the way techniques from computer science and software engineering can be applied beneficially to research in the life sciences. We will discuss the idea of comprehensive and realistic modeling of biological systems, where we try to understand and analyze an entire system in detail, utilizing in the modeling effort all that is known about it. I will address the motivation for such modeling and the philosophy underlying the techniques for carrying it out, as well as the crucial question of when such models are to be deemed valid, or complete. The examples I will present will be from among the biological modeling efforts my group has been involved in: T cell development in the thymus, lymph node behavior, organogenesis of the pancreas, fate determination in the reproductive system of C. elegans, and a generic cell model. The ultimate long-term “grand challenge” is to produce an interactive, dynamic, computerized model of an entire multi-cellular organism, such as the C. elegans nematode worm, which is complex, but well-defined in terms of anatomy and genetics. The challenge is to construct a full, true-to-all-known-facts, 4-dimensional, interactively animated model of the development and behavior of this worm (or of a comparable multi-cellular animal), which is easily extendable as new biological facts are discovered.
机译:谈话表明计算机科学和软件工程技术可以有利地应用于生命科学的研究。我们将讨论生物系统的全面和现实建模的思想,我们试图详细了解和分析整个系统,利用所有已知的建模努力。我将解决这种建模的动机和哲学的潜在技术,以便将这些模型视为有效或完整时的关键问题。我将出现的例子将是我的团体参与的生物学建模努力中:T细胞发育在胸腺中,淋巴结行为,胰腺的有机组织,C.秀丽隐杆线虫的生殖系统中的命运测定,以及一般的细胞模型。最终的长期“大挑战”是生产整个多细胞生物的互动,动态,计算机化模型,例如C.秀丽隐线虫蠕虫,这是复杂的,但在解剖学和遗传学方面都很明确。挑战是构建这种蠕虫(或可比多细胞动物)的开发和行为的全面,真正的事实,4维,交互动画模型,这很容易像新的发现生物学事实。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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