课题基金 / 基金详情

Training Grant in Genomic Analysis and Interpretation

Training Grant in Genomic Analysis and Interpretation
基因组分析和解释培训补助金
批准号:
9102191
负责人:
Kenneth L Lange
金额:
$31.46万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2017-06-30
关键词:

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):将DNA测序技术最近的量子飞跃收集的数据转化为有用的生物医学知识是21世纪世纪最大的科学挑战之一。现在收集的大量DNA数据没有计算机就无法访问、操作或分析。然而,最大的瓶颈涉及软件而不是硬件。尽管目前的复杂程度,我们仍然缺乏足够的理论和算法来执行许多基本任务,在分子遗传学和遗传流行病学的速度和精度。这将需要新一代的科学家在生物和数学科学方面的培训,以推动我们国家的基因组议程。很少有大学有基础设施和人力资源来安装一个基因组分析培训计划的范围可能在加州大学洛杉矶分校。我们的培训计划的核心课程包括分子生物学,人类遗传学,概率和统计学,生物信息学和生物医学伦理学的工作。学生还必须准备和参加相关的每周科学研讨会。学员每月集体与项目教师和主任会面,了解常规课程中未涉及的职业问题。每年我们将培养12名博士预科生,优先从博士课程的前半部分学生中选拔。每名受训人员将获得两年的资助,但须视其取得令人满意的进展而定。在特殊情况下,将考虑第三年的供资。这项培训补助金汇集了来自四所学校和大学内14个博士学位授予部门的教师,以解决目前科学培训方面的差距。在2002年至2010年期间,该培训补助金成功地完成了22名博士生在基因组分析和解释艺术方面的培训。这些博士学位已经在工业,政府和学术界的基因组科学领域取得了丰硕的成果。
英文摘要
DESCRIPTION (provided by applicant): Turning the data collected by the recent quantum leap in DNA sequencing technology into useful biomedical knowledge is one of the greatest scientific challenges of the 21st Century. The enormous volume of DNA data now collected cannot be accessed, manipulated, or analyzed without computers. However, the greatest bottlenecks involve software rather than hardware. In spite of current levels of sophistication, we still lack adequate theory and algorithms to perform many fundamental tasks in molecular genetics and genetic epidemiology with speed and precision. It will take a new generation of scientists trained in both the biological and mathematical sciences to push forward our nation's genomic agenda. Few universities have the infrastructure and human resources to mount a genomic analysis training program of the scope possible at UCLA. Our training program's core curriculum includes work in molecular biology, human genetics, probability and statistics, bioinformatics, and biomedical ethics. Students must also prepare for and attend pertinent weekly scientific seminars. The trainees collectively meet on a monthly basis with the program faculty and directors to learn about career matters not covered in regular coursework. Each year we will train 12 predoctoral students drawn preferentially from students in the first half of their doctoral programs. Each trainee will be funded for two years contingent on satisfactory progress. In exceptional cases a third year of funding will be considered. This training grant has brought together faculty from four schools and 14 PhD-granting departments within the university to address the current gap in scientific training. During the years 2002 to 2010, this training grant has successfully completed training of 22 predoctoral students in the art of genomic analysis and interpretation. These doctorates have gone on to productive careers in genomic sciences in industry, government, and academia.
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