INFORMATION SYSTEMS SHARED RESOURCE Kimberly Johnson, Director Cancer Center Information Systems is a Shared Resource providing integrated information systems in support of clinical and basic science biomedical research. The resource provides infrastructure, personnel, technical support, assistance and consultation in four areas - networks, databases, servers and web applications. The goal of the resource is to provide comprehensive computational support to enable researchers to use technology in the most efficient manner possible to accomplish their research goals. Cancer Center Information Systems is directed by Kimberly F. Johnson, under the administrative supervision of Dr. Stephen L. George, Director of Biostatistics. In addition to Ms. Johnson, CCIS has 16 full time staff. The resource provides database and applications development, web site support, server support and desktop support for 25 servers and for over 1000 users. In addition to network server support, CCIS supports largescale servers and software for the Biostatistics Shared Resource and the Bioinformatics Shared Resource. This group supports the informatics needs of a variety of research areas and programs. Support for the SPORES in Brain and Breast Cancer, the Cancer Genetics Network and the Protocol Office represent some of the larger efforts. CCIS is working closely with the Duke Health Technology Solutions group to integrate clinical data with research data. Support for the resource is provided through a combination of grant support, chargeback and institutional funding.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA014236-35
Application #
7764714
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2009-01-01
Budget End
2009-12-31
Support Year
35
Fiscal Year
2009
Total Cost
$449,573
Indirect Cost
Name
Duke University
Department
Type
DUNS #
044387793
City
Durham
State
NC
Country
United States
Zip Code
27705
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Abdi, Khadar; Lai, Chun-Hsiang; Paez-Gonzalez, Patricia et al. (2018) Uncovering inherent cellular plasticity of multiciliated ependyma leading to ventricular wall transformation and hydrocephalus. Nat Commun 9:1655
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