课题基金 / 基金详情

GORDON CONFERENCE ON BIOENGINEERING/ORTHOPAEDIC SCIENCES

GORDON CONFERENCE ON BIOENGINEERING/ORTHOPAEDIC SCIENCES
戈登生物工程/骨科科学会议
批准号:
3433755
负责人:
ALAN J. GRODZINSKY
金额:
$0.9万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-06-29 至 1991-06-28

项目摘要

项目成果

ALAN J. GRODZINSKY的其他基金

相关文献

中文摘要
翻译
该提案是为了支持第六届戈登研究会议, 生物工程和矫形科学,将于1990年8月6日至10日在 新罕布什尔州安多弗的普罗克特学院。 本届大会的主题是 “结缔组织的结构重塑和修复:细胞控制 分子力学“会议将包括9个半天 专门讨论骨、肌腱、韧带、软骨、基质的会议 大分子、组织形态、植入物界面和分子标记物 病理学和修复学。 每届会议将有两三位主要发言人, 最新的进展,在广阔的前景。 选择短 投稿沿着广泛的自由讨论期, 最大限度地交流思想。 新数据的海报展示, 与会者将提供一个额外的交流形式, 讨论 会议的目的是促进 生物工程、整形外科、生物化学和细胞研究人员, 肌肉骨骼系统的分子生物学 我们希望这一 会议将提供深入了解这方面的最新发展, 多学科领域,并帮助划定富有成效的研究途径 对于年轻的调查人员来说。
英文摘要
This proposal is for support of the Sixth Gordon Research Conference on Bioengineering and Orthopaedic Sciences, to be held August 6-10, 1990 at Proctor Academy, Andover, New Hampshire. The theme of this conference is "Structure Remodeling and Repair of Connective tissues: Cellular Control and Molecular Mechanics." The conference will consist of 9 half-day sessions devoted to bone, tendon, ligament, cartilage, matrix macromolecules, tissue morphology, implant interface, and molecular markers of pathology and repair. Two or three main speakers per session will cover the most recent advances in broad perspective. Selected short contributions along with extensive free discussion periods will allow maximum interchange of ideas. Poster presentations of new data by conference participants will provide an additional format for exchange and discussion. The objectives of the conference are to foster communications between researchers in bioengineering, orthopaedics, biochemistry and cell and molecular biology of the musculoskeletal system. We hope that this conference will provide insights into the latest developments in this multidisciplinary field, and help to delineate fruitful avenues of research for young investigators.
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会议论文
Cartilage-Bone-Synovium MPS: Musculoskeletal Disease Biology in Space
Cartilage Repair Using Self Assembling Peptide Scaffolds
Cartilage Repair Using Self Assembling Peptide Scaffolds
Cartilage Repair Using Self Assembling Peptide Scaffolds