2012 CSHL Automated Imaging & High-Throughput Phenotyping Conference
2012 CSHL Automated Imaging & High-Throughput Phenotyping Conference
批准号:
8256871
负责人:
DAVID J. STEWART
金额:
$0.5万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-04-01 至 2013-03-31
关键词:
AcuteAddressAffectAnimalsAppearanceAreaBehavioralBiologyCellsCollaborationsCommunitiesComputer softwareConsultationsDataDevelopmentDisciplineDisease susceptibilityEngineeringEnsureEnvironmentFacultyFosteringGenesGenomeGenome MappingsGenotypeImageImage AnalysisImageryImaging TechniquesIndividualIndustryInternationalLaboratoriesLearningLength of StayMapsMathematicsMeasuresMicroscopyModelingModificationNatureOralOrganOrganismParticipantPhenotypePhysicsPlantsPopulationPostdoctoral FellowPublished CommentReagentResearchResearch PersonnelScheduleScientistSenior ScientistTechnologyTranslatingWomanWorkabstractingbasecomputer sciencedata miningdata modelinggenome sequencinggraduate studenthuman diseaseimprovedinterestlaboratory facilitymeetingsplanetary Atmosphereposterspreferencestatisticssymposiumunpublished works
中文摘要
描述(由申请人提供):本提案为将于2012年4月在冷泉港实验室举行的“自动化成像和高通量”会议寻求支持。会议将聚集该领域的领导者,以及初级教师,博士后研究员和研究生,讨论利用成像进行高通量表型获取的最新进展。这一领域处于将基因型映射到表型的努力的前沿。基因型和表型之间的关系是生物学中尚未解决的主要问题之一。要准确地将基因型映射到表型,需要详细的关于两者的种群水平信息。虽然我们很快就有能力快速确定一个群体中个体的完整基因组,但我们表征其表型的能力有限。解决这一差距的努力集中在增加
英文摘要
DESCRIPTION (provided by applicant): This proposal seeks support for the meeting on "AUTOMATED IMAGING AND HIGH TRHOUGHPUT" to be held at Cold Spring Harbor Laboratory April, 2012. The meeting will assemble leaders in the field, together with junior faculty, postdoctoral fellows and graduate students, to discuss the latest advances that make use of imaging for high throughput phenotype acquisition. This area is at the forefront of efforts to map genotype to phenotype. One of the major unresolved problems in biology is the relationship between genotype and phenotype. To accurately map genotype to phenotype will require detailed population-level information about both. While we will soon have the ability to rapidly determine the complete genomes of individuals in a population, we are limited by our ability to characterize their phenotypes. Efforts to address this disparity focus on increasing the
throughput of phenotype acquisition. This usually involves the development of automated imaging capabilities. By their very nature, efforts in this field are highly interdisciplinary as tey bring together experimentalists, engineers and researchers from a range of quantitative disciplines. The meeting will include sessions on single cell phenotyping, developmental phenotyping, organ(ismal)/behavioral phenotyping, microscopy and technology, data mining, modeling, management, and visualization. Each session will be chaired by a leading scientist in the field. Oral presentations will be selected from submitted abstracts by the session chairs in consultation with the organizers. Selected speakers will include graduate students, postdoctoral fellows and junior faculty aiming for maximal inclusion of young investigators. Of special importance are the two poster sessions, where many participants can present their work in an atmosphere conducive to informal discussion. Additional senior investigators will be invited to highlight important or rapidly moving areas. The meeting will be of moderate size and we expect about 200 people to attend, the vast majority of whom will be presenting a poster or talk.
PUBLIC HEALTH RELEVANCE: It will soon be possible to determine the genome sequence of an individual rapidly and inexpensively. How the information in the genome translates into changes in the functioning and appearance of an organism (which constitutes its phenotype) is far from clear. Phenotypic changes resulting from differences in the genome can be beneficial or harmful. In the case of human disease, there is much to be learned about how changes in different genes affect disease susceptibility. To understand how information in the genome maps to modifications in the phenotype will require the development of high-throughput means of measuring phenotypes. Because many phenotypic features of interest can be visualized, new and enhanced imaging techniques combined with automated imaging capabilities are at the vanguard of this emerging field. Research in this area brings together experimentalists, engineers and researchers from a range of quantitative disciplines. A meeting is proposed to be held at Cold Spring Harbor Laboratory in April 2012 entitled, "Automated Imaging & High-Throughput Phenotyping" that will bring together an interdisciplinary group of scientists to discuss cutting edge approaches and findings in this field.
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