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Real-time control system for biological experiments

Real-time control system for biological experiments
生物实验实时控制系统
批准号:
6916552
负责人:
DAVID J. CHRISTINI
金额:
$41.42万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-07 至 2008-06-30

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中文摘要
翻译
描述(由申请人提供):传统上,实验人员干扰系统的能力仅限于严格的预编程模式或受人类反射约束的灵活的操作员控制协议。相比之下,“实时控制”允许研究人员根据瞬时系统测量的自动分析来利用动态操纵,从而在从分子生物物理学到神经科学的领域中实现全新的生物实验范例。不幸的是,实时控制是不可能与标准的计算机操作系统,和商业实时系统是昂贵的,往往是针对工业非生物应用。这里提出的工作旨在通过开发一个免费提供的,功能强大的,灵活的开源系统来绕过这些问题,用于实时控制生物实验。该项目的具体目标是:1。统一三个互补的实时控制系统。研究者和合作研究者一直在独立开发实时控制系统。每一种制度都有其独特的长处,可以补充其他制度的弱点。我们将合并这些系统,形成一个功能强大的统一系统,并大大扩展功能。2.将功能扩展到非Linux平台。因为我们的目标是实现实时生物实验,而不是将用户转换到Linux,我们将开发Windows和Apple用户可以运行我们系统的方法,而不必放弃他们首选的平台。3.开发业绩监测指标和工具。为了帮助实验人员设计实验应用程序,将开发用于监测系统性能的工具,并建立性能指标。4.创建一个广泛的实时实验应用程序库。我们将开发一个通用和特定应用程序的实验控制“插件”库。用户将能够从这些选项中进行选择和/或自定义,以满足其特定的实验需求。5.开发一个用于插件开发的可视化设计工具。我们将开发一个可视化设计工具,用户将能够开发插件,而无需手动编辑源代码。通过消除编程的需要,该工具将大大增加能够开发实验控制应用程序的用户数量。6.优化易用性。为了最大限度地降低初学者的入门门槛并最大限度地提高有经验用户的生产力,我们将强调用户友好性并开发全面的文档。
英文摘要
DESCRIPTION (provided by applicant): Traditionally, the ability of experimentalists to perturb a system has been limited to rigid pre-programmed patterns or flexible operator-controlled protocols constrained by human reflexes. In contrast, "real-time control" allows the researcher to utilize dynamic manipulations according to automated analysis of instantaneous system measurements, thereby enabling entirely new biological experimentation paradigms in fields ranging from molecular biophysics to neuroscience. Unfortunately, real-time control is not possible with standard computer operating systems, and commercial real-time systems are costly and often tailored for industrial non-biological applications. The work proposed here is aimed at bypassing these problems by developing a freely available, powerful, and flexible open-source system for real-time control of biological experiments. The specific aims of this project are: 1. To unify three complementary real-time control systems. The investigator and co-investigators have been independently developing real-time control systems. Each system has particular strengths that complement the weaknesses of the others. We will merge these systems to form a powerful unified system with greatly expanded functionality. 2. To extend functionality to non- Linux platforms. Because our goal is to enable real-time biological experimentation, rather than to convert users to Linux, we will develop methods by which Windows and Apple users can run our system without having to abandon their preferred platforms. 3. To develop performance-monitoring metrics and tools. To aid experimentalists in designing an experiment application, tools for monitoring system performance will be developed and performance metrics will be established. 4. To create an extensive real-time experiment application library. We will develop a library of both general-purpose and application-specific experiment-control "plugins". Users will be able to choose from these options and/or customize them to meet their particular experiment demands. 5. To develop a visual-design tool for plugin development. We will develop a visual-design tool with which users will be able to develop plugins without manually editing source code. By eliminating the need for programming, this tool will greatly increase the number of users who will be able to develop experiment-control applications. 6. To optimize ease of use. To minimize the barrier of entry for beginners and maximize the productivity of experienced users, we will emphasize user-friendliness and develop comprehensive documentation.
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Real-Time eXperiment Interface - Enabling closed-loop biological experiment control
  • 批准号:
    10391430
  • 项目类别:
  • 资助金额:
    $36.34万
  • 财政年份:
    2021
  • 负责人:
    DAVID J. CHRISTINI
  • 依托单位:
Real-Time eXperiment Interface - Enabling closed-loop biological experiment control
  • 批准号:
    10598017
  • 项目类别:
  • 资助金额:
    $36.34万
  • 财政年份:
    2021
  • 负责人:
    DAVID J. CHRISTINI
  • 依托单位:
Real-Time eXperiment Interface - Enabling closed-loop biological experiment control
  • 批准号:
    10088107
  • 项目类别:
  • 资助金额:
    $36.34万
  • 财政年份:
    2021
  • 负责人:
    DAVID J. CHRISTINI
  • 依托单位:
Multiscale modeling to map cardiac electrophysiology between species
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