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迈向用于自主科学发现的机器人科学家。

Towards Robot Scientists for autonomous scientific discovery.

作者信息

Sparkes Andrew, Aubrey Wayne, Byrne Emma, Clare Amanda, Khan Muhammed N, Liakata Maria, Markham Magdalena, Rowland Jem, Soldatova Larisa N, Whelan Kenneth E, Young Michael, King Ross D

机构信息

Computational Biology Group, Department of Computer Science, Penglais Campus, Aberystwyth University, Aberystwyth, SY23 3DB, UK.

出版信息

Autom Exp. 2010 Jan 4;2:1. doi: 10.1186/1759-4499-2-1.

Abstract

We review the main components of autonomous scientific discovery, and how they lead to the concept of a Robot Scientist. This is a system which uses techniques from artificial intelligence to automate all aspects of the scientific discovery process: it generates hypotheses from a computer model of the domain, designs experiments to test these hypotheses, runs the physical experiments using robotic systems, analyses and interprets the resulting data, and repeats the cycle. We describe our two prototype Robot Scientists: Adam and Eve. Adam has recently proven the potential of such systems by identifying twelve genes responsible for catalysing specific reactions in the metabolic pathways of the yeast Saccharomyces cerevisiae. This work has been formally recorded in great detail using logic. We argue that the reporting of science needs to become fully formalised and that Robot Scientists can help achieve this. This will make scientific information more reproducible and reusable, and promote the integration of computers in scientific reasoning. We believe the greater automation of both the physical and intellectual aspects of scientific investigations to be essential to the future of science. Greater automation improves the accuracy and reliability of experiments, increases the pace of discovery and, in common with conventional laboratory automation, removes tedious and repetitive tasks from the human scientist.

摘要

我们回顾了自主科学发现的主要组成部分,以及它们如何引出机器人科学家的概念。这是一个利用人工智能技术使科学发现过程的各个方面自动化的系统:它从该领域的计算机模型生成假设,设计实验来检验这些假设,使用机器人系统进行物理实验,分析和解释所得数据,并重复这个循环。我们描述了我们的两个机器人科学家原型:亚当和夏娃。亚当最近通过识别出负责在酿酒酵母代谢途径中催化特定反应的12个基因,证明了此类系统的潜力。这项工作已使用逻辑进行了非常详细的正式记录。我们认为科学报告需要完全形式化,而机器人科学家有助于实现这一点。这将使科学信息更具可重复性和可重用性,并促进计算机在科学推理中的整合。我们认为科学研究在物理和智力方面实现更大程度的自动化对科学的未来至关重要。更大程度的自动化提高了实验的准确性和可靠性,加快了发现的速度,并且与传统实验室自动化一样,将枯燥重复的任务从人类科学家那里移除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1eaa/2813846/f516e25f1159/1759-4499-2-1-1.jpg

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