A National Short Course in Systems Biology: Tackling Spatial Dynamics in Cells an
系统生物学国家短期课程:解决细胞中的空间动力学和
基本信息
- 批准号:8474792
- 负责人:
- 金额:$ 16.35万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2011
- 资助国家:美国
- 起止时间:2011-08-01 至 2016-05-31
- 项目状态:已结题
- 来源:
- 关键词:AddressAreaBehaviorBioinformaticsBiologicalBiologyBiometryCaliforniaCell Differentiation processCell physiologyCellsComplexComputer SimulationComputer softwareComputing MethodologiesData SetDatabasesDevelopmentDisciplineDiseaseEducational workshopEnvironmentFacultyFluorescenceFosteringFundingGenomicsGoalsGrantHealthHumanHuman DevelopmentIndividualIndustryInstitutesInstructionLaboratoriesLearningMalignant NeoplasmsMorphogenesisNIH Program AnnouncementsOnline SystemsParticipantPatternProcessPropertyRecruitment ActivityResearchResearch PersonnelResearch TrainingResourcesScienceScientistSenior ScientistSignal TransductionSiteSoftware ToolsSpectrum AnalysisSystemSystems BiologyTissuesTrainingUnited States National Institutes of HealthUniversitiesVideo Recordingage relatedbiological systemsbiomedical scientistcomplex biological systemscomputerized toolsdesigndisease transmissionexperiencefield studygraduate studentinfectious disease modelinterestlecturesmeetingsmemberoutreachpreventprogramsskillstooltumor progressionworking group
项目摘要
DESCRIPTION (provided by applicant): This proposal aims to establish a National Short Course in Systems Biology that integrates mathematical, statistical and computational approaches to describe biological systems and understand their complex behaviors. The Center for Complex Biological Systems (CCBS) at UC Irvine is ideally suited to host this annual course being one of ten NIH National Centers for Systems Biology. The CCBS is able to leverage substantial faculty educational and research expertise - from a pool of more than 100 active faculty from 18 participating science departments, as well as contributions from preeminent resource facilities such as the Laboratory of Fluorescence Dynamics (LFD) and the Institute for Genomics and Bioinformatics - to create a top-rated training course designed for senior graduate students, postdoctoral researchers, faculty and industry scientists from diverse scientific disciplines who have nascent interests in engaging in Systems Biology research. The course theme will focus on the systems biology of spatial dynamics that impacts key cellular processes including signal transduction networks, cell differentiation, and developmental mechanisms of morphogenesis and patterning. Moreover, experience gained in these systems will enable trainees to apply these skills more generally to other complex systems with spatially dynamic properties. Recruitment and training of research scientists in this thematic area is currently underserved but demand is expected to be significant given the central importance of these processes to many human health related issues, including developmental abnormalities, age-related disease processes, initiation and progression of cancer and infectious disease models that are amenable to systems-oriented analysis and dependent on spatio-temporal factors. The course format will combine didactic lectures with hands-on practical laboratories featuring both biological experimentation and mathematical/computational modeling tutorials. The course design is organized into two principal sections: an optional 1-week Introductory Preparatory Workshop (either in Biology or Mathematical/ Computational Methods) will address individual trainee educational weaknesses by providing essential cross-disciplinary foundational instruction. The second part consists of a 2-week Systems Biology Core Course offering a high-level introduction to spatially dynamic research topics and advanced analytical biometric tools (e.g. advanced correlation spectroscopy and pipeline queries to bioinformatic databases) through project oriented instruction and small group interactions. This unique approach of addressing specific trainee educational deficiencies first, then building strong interdisciplinary collaborative work groups, will enhance course recruitment and entry into this field to research scientists who frequently feel interested but intimidated due to a perceived lack of prior formal training. Beyond providing an intensive on-site training course, all lecture materials (video recorded), training datasets, and software tools will be made freely available through on-line distribution to maximize our outreach efforts.
描述(由申请人提供):该提案旨在建立一个国家短期课程系统生物学,整合数学,统计和计算方法来描述生物系统,并了解其复杂的行为。加州大学欧文分校复杂生物系统中心(CCBS)是美国国立卫生研究院(NIH)十个国家系统生物学中心之一,非常适合举办这项年度课程。CCBS能够利用大量的教师教育和研究专业知识-来自18个参与科学部门的100多名活跃教师,以及来自荧光动力学实验室(LFD)和基因组学和生物信息学研究所等卓越资源设施的贡献-为高年级研究生,博士后研究人员,来自不同科学学科的教师和行业科学家,他们对从事系统生物学研究有着浓厚的兴趣。该课程的主题将侧重于影响关键细胞过程的空间动力学系统生物学,包括信号转导网络,细胞分化以及形态发生和模式的发育机制。此外,在这些系统中获得的经验将使受训者能够将这些技能更普遍地应用于具有空间动态特性的其他复杂系统。这一专题领域的研究科学家的征聘和培训目前得不到充分的满足,但鉴于这些过程对许多人类健康相关问题至关重要,包括发育异常、与年龄有关的疾病过程、癌症的发生和发展以及可进行系统分析并取决于时空因素的传染病模型,预计需求将很大。课程形式将结合联合收割机教学讲座与动手实践实验室,具有生物实验和数学/计算建模教程。课程设计分为两个主要部分:一个可选的为期1周的介绍性预备研讨会(生物学或数学/计算方法)将通过提供必要的跨学科基础教学来解决个别受训者的教育弱点。第二部分包括一个为期2周的系统生物学核心课程,通过项目导向的教学和小组互动,提供对空间动态研究主题和先进的分析生物识别工具(例如先进的相关光谱学和管道查询生物信息学数据库)的高水平介绍。这种独特的方法首先解决特定的受训者教育缺陷,然后建立强大的跨学科协作工作组,将提高课程招聘和进入这一领域的研究科学家谁经常感到有兴趣,但由于缺乏事先的正式培训感到害怕。除了提供密集的现场培训课程外,所有讲座材料(录像),培训数据集和软件工具将通过在线分发免费提供,以最大限度地发挥我们的推广工作。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Arthur D Lander其他文献
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{{ truncateString('Arthur D Lander', 18)}}的其他基金
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