|
|
| |
DOE Low Dose Radiation Research
Investigators' Workshop V
Abstracts
Principal Investigator |
Abstract Title |
| Ackerman, Eric |
Effects of Low Doses of Radiation on DNA Repair
(PNNL Project # 42699)
|
| Anderson, Carl W. |
Whole Genome Analysis of Functional Protein Binding Sites and DNA Methylation: Potential Application to p53 and Low Dose Ionizing Radiation
|
| Azzam, Edouard |
Ionizing Radiation Induced Adaptive Responses in Normal Human Cells Maintained in Three-Dimensional Architecture: the Role of Oxidative Metabolism
|
| Azzam, Edouard |
Radiation-Induced Modulation of Mitochondrial Protein Import Capacity in Normal Human Fibroblasts
|
| Bailey, Susan |
Dysfunctional Mammalian Telomeres in DNA-PKcs Deficient Backgrounds
|
| Balmain, Allan |
Fbxw7/Cdc4 is a p53-dependent haploinsufficient tumour suppressor gene
|
| Barcellos-Hoff, Mary Helen |
A quantitative assessment of bystander mutagenesis in the mouse mammary gland
|
| Barcellos-Hoff, Mary Helen |
Quantitative Assessment of Centrosome Abnormality
|
| Bedford, Joel S. |
Low dose and low dose-rate irradiation for identification
of individuals of high, low and intermediate radiosensitivities
using the gamma-H2AX assay
|
| Bedford, Joel S. |
Role of Homologous Recombination in the Alpha Particle Bystander Effect for Sister Chromatid Exchanges and Chromosomal Aberrations
|
| Blakley, Eleanor |
X-ray Microbeam Bystander Studies With Human Mammary Epithelial Cells and Fibroblasts
|
| Boothman, David |
Regulatory mechanisms of secretory clusterin (sCLU) expression: a low doseinducible 'bystander' cytoprotective protein
|
| Brenner, David |
Individual Genetic Susceptibility
|
| Brenner, David |
Is Increased Low-Dose Somatic Radiosensitivity Associated with Increased Trans-Generational Germline Mutation Radiosensitivity?
|
| Brenner, David |
Virtual Colonoscopy: The Potential Benefits of Low-Dose Radiation Exposure Far Outweigh any Risks
|
| Brooks, Antone |
Optimizing the Scientific, Regulatory and Societal Impact of the DOE Low Dose Research Program
|
| Chen, David |
Mechanisms of the Adaptive Response to Radiation
|
| Crawford-Brown, Douglas |
Testing and Expansion of a Generalized StateVector Model for Radiation-Induced Cellular Transformation: in vitro Irradiation of Cells by Acute Doses of Xrays
|
| Campisi, Judith |
Radio-adaptive response accelerates resolution of IR-induced DNA damage foci and attenuates the senescence response in primary human fibroblasts
|
| Chuang, Eric Y. |
Abnormal Gene Expression Profiles in Unaffected Parents of Patients with Hereditary Retinoblastoma
|
| Coleman, Matthew A |
Molecular mechanisms and cellular consequences of low-dose exposure to ionizing radiation.
|
| Coleman, Matthew A. |
Using Co-Regulation to Understand Low-Dose Ionizing Radiation Responsive Genes and Pathways.
|
| Conolly, Rory |
Computational Modeling of Biochemical Pathways Linking Ionizing Radiation to Cell Cycle Arrest, Apoptosis, and Tumor Incidence
|
| Cooper, Priscilla |
Mechanisms of Low-Dose Inducible DNA Repair and the Adaptive Response
|
| Cooper, Priscilla |
Using LC-FTICR to Identify Protein Relocalization Patterns in Response to IR
|
| Cornforth, Michael |
mFISH Reveals an LET-Independent Excess of Radiation-Induced Dicentrics Involving Homologous Chromosomes
|
| Du, Yu-Chun |
The H2AX Complex Dynamics during DNA Repair Detected by a Dual-Tagging Proteomic Strategy Reveals the Critical Roles of Ca 2+/Calmodulin in the Ionizing-Radiation Induced Cell Cycle Arrest
|
| Dupuis, Michael |
Molecular Energetics of Clustered Damage Sites
|
| Dynan, William |
DNA Damage Response and Ku80 Function in the Vertebrate Embryo
|
| Engleward, Bevin B. |
‘Recombomice’ – A new tool for studying homologous recombination in vivo
|
| Folkard, Melvyn |
A Variable-Energy Soft X-Ray Microprobe to Investigate Mechanisms of the Radiation-Induced Bystander Effect.
|
| Folkard, Melvyn |
Targeted radiation studies in tissue explants
|
| Fornace, A.J. |
A functional genomics approach using radiation-induced chanes in gene expression to study low dose radiation effects in vitro and in vivo.
|
| Geard, Charles R. |
The Radiation-induced Bystander Response: Different Protocols, Similar Effects.
|
| Goble, Robert |
Tales from the Crypt: Hierarchical Modeling of Genomic Defense Mechanisms Related to Radiation-Induced Cancers
|
| Goodwin, Edwin |
Mechanisms of the Adaptive Response to Radiation
|
| Grdina, David |
Inhibition of NFκB DNA binding by helenalin abolishes the induced radioprotective effect by amifostine’s active metabolite WR1065 in human microvascular endothelial cells.
|
| Green, Lora M. |
Gene Expression in Thyroid Tissue Analogs Following Acute Low Dose and Low Dose Rate Gamma Irradiation
|
| Green, Lora M. , Gridley, Daila |
Mechanisms of Low Dose Radiation-induced T Helper Cell Function
|
| Gridley, Daila |
Long-Term Effects of Whole-Body, High-LET Radiation on Blood Chemistry
|
| Griffith, William |
Systems Biology Models as a Tool to Integrate Diverse Studies of the Developing Neocortex after Exposure to Low Dose Radiation
|
| Griffith, William |
Value of Information Approach for Constructing Models of Bystander Effects
|
| Hall, Eric J. |
Individual Genetic Susceptibility
|
| Hazleton, William |
Modeling Low-Dose Ionizing Radiation Effects: Influence of Cell Cycle Regulation on Tissue Homeostasis, Promotion, and Malignant Transformation.
|
| Jirtle, Randy J. |
Environmental Epigenomics and Adult Disease Susceptibility
|
| Joiner, Michael C. |
Lack of DNA-damage mediated ATM activation determines low-dose hyper-radiosensitivity.
|
| Kadhim, Munira |
Genomic instability induced by a bystander signal
|
| Kohwi-Shigematsu, T. |
The Effects of Ionizing Radiation on Chromatin Dynamics
|
| Kronenberg, Amy |
A quantitative assessment of bystander mutagenesis in the mouse mammary gland
|
| Li, Chuan-Yuan |
Molecular Characterization of the Roles of SOD Genes in Mammalian Cellular Response to Low Dose Radiation
|
| Li, Jian Jian |
Adaptive Response of Mouse Skin Epithelial Cells to Low Dose Ionizing Radiation: Induction of NF-κB, MnSOD, 14-3-3ζ and Cyclin B1
|
| Marples, Brian |
Lack of DNA-damage mediated ATM activation determines low-dose hyper-radiosensitivity.
|
| Michael, Barry D. |
A Variable-Energy Soft X-Ray Microprobe to Investigate Mechanisms of the Radiation-Induced Bystander Effect.
|
| Michael, Barry D. |
Targeted radiation studies in tissue explants
|
| Miller, John H. |
Radiation-induced protein release: A source of bystander signaling?
|
| Miller, John H. |
Comparison of Soft X Rays and Ions Irradiation in a Model of V79 Mammalian Cell
|
| Moolgavkar, Suresh H. |
Modeling Low-Dose Ionizing Radiation Effects: Influence of Cell Cycle Regulation on Tissue Homeostasis, Promotion, and Malignant Transformation.
|
| Morgan, William F. |
Genetic Factors Affecting Susceptibility to Low-Doses of Ionizing Radiation.
|
| Morgan, William F. |
Using a Low LET Electron Microbeam to Investigate Non-Targeted Effects of Low Dose Radiation
|
| Nagasawa, H. |
Role of Homologous Recombination in the Alpha Particle Bystander Effect for Sister Chromatid Exchanges and Chromosomal Aberrations
|
| Nagasawa, H. |
Hypersensitivity of cultured fibroblasts from retinoblastoma family members and apparently normal controls: colony formation during continuous low-dose rate irradiation and G2 chromosomal radiosensitivity
|
| Naterajan, Mohan |
Real-time Study of Signal Transduction Pathways Involving in Bystander Effects Using Single Nanoparticle Optics and Single Living Cell Imaging
|
| Naterajan, Mohan |
Role of TNF-α as a potential Signaling Mediator of Radiation-induced Bystander Effect in Human Vascular Cells.
|
| Nelson, David |
Molecular mechanisms and cellular consequences of low-dose exposure to ionizing radiation.
|
| Neta, Ruth |
Russian Human Radiobiology Tissue Repository for the exposed Mayak PA workers
|
| Opresko, Lee K. |
Mechanism(s) of three-dimensional intercellular signaling in mammary epithelial cells in response to low dose, low-LET radiation: Implications for the radiation-induced bystander effect.
|
| Pluth, Janice |
Mechanisms of Low-Dose Inducible DNA Repair and the Adaptive Response
|
| Prise, Kevin M. |
Targeted radiation studies in tissue explants
|
| Prise, Kevin M. |
A Variable-Energy Soft X-Ray Microprobe to Investigate Mechanisms of the Radiation-Induced Bystander Effect.
|
| Redpath, J. Leslie |
Low dose studies of neoplastic transformation in vitro by low LET radiations
|
| Rithidech, Kanokporn Noy |
Induction of Genomic Instability in vivo by Low Doses of 137Cs γ rays.
|
| Rodgers, Brenda |
An Absolute Quantification Approach Using Real-Time PCR to Assess Transcript Number of Specific Proteins Involved in DNA Repair and Oxygen Radical Scavenging Mechanisms of Mus Musculus (BALB/c) Exposed to Low Dose Ionizing Radiation at Chernobyl.
|
| Sachs, Rainer K. |
Modeling Intercellular Interactions During Radiation Carcinogenesis
|
| Sacksteder, Colette |
Molecular Mechanism Underlying Cellular Adaptive Response to Low Dose Radiation
|
| Schild, David |
Depletion of the vertebrate-specific Rad51-interacting protein Rad51AP1/Pir51 sensitizes human cells to MMC and X-rays
|
| Schwartz, Jeffrey L. |
Characteristics of Radiation-Induced Skin Cancers in Hematopoietic Stem Cell Transplantation Patients.
|
| Scott, Bobby |
NEOTRANS3 Model for Low-Dose-Induced Stochastic Radiobiological Effects
|
| Sowa, Marianne B. |
Mechanism(s) of three-dimensional intercellular signaling in mammary epithelial cells in response to low dose, low-LET radiation: Implications for the radiation-induced bystander effect.
|
| Sowa, Marianne B. |
Using a Low LET Electron Microbeam to Investigate Non-Targeted Effects of Low Dose Radiation.
|
| Spitz, Douglas R. |
Chinese hamster fibroblasts containing mutations in succinate dehydrogenase subunit C (SDHC) demonstrate increased sensitivity to low dose ionizing radiation
|
| Springer, David L. |
Protein changes in media taken from irradiated CHO cells
|
| Stewart, Robert D. |
Implications of intercellular signaling for the shapes of dose-response relationships
|
| Sutherland, Betsy M. |
Endogenous and Radiation-induced DNA Damage Clusters: Insights on Induction and Repair in Human Skin, 3D Model Skin Systems and Hematopoietic Stem and Progenitor Cells*
|
| Sykes, Pamela, J. |
The pKZ1 inversion assay is a sensitive assay for lowdose Xradiation studies.
|
| Thompson, Larry H. |
Cooperation Between Homologous Recombination and the Fanconi Anemia Cancer Suppressor Proteins in Minimizing Spontaneous and Radiation-induced Chromosomal Instability
|
| Toburen, Larry H. |
Modeling Energy Deposition by Ionizing Radiation in a Cellular Environment
|
| Vallis, Katherine A. |
The Characterization of Genetic Responses to Low Dose Radiation using a Genome-Wide Insertional Mutagenesis Approach
|
| Vo-Dinh, Tuan |
Nanoprobes for Imaging Single Cells under Low-Dose Radiation
|
| Voy, Brynn |
Genetic Background Significantly Alters the Response to Low Dose Ionizing Radiation In Vivo
|
| Wang, Daojing |
Proteomic and Biochemical Studies of Human Mesenchymal Stem Cells in Response to Low Dose Ionizing Radiation
|
| Warters, Raymond Leon |
Ionizing radiation-induced DNA damage stress response in cultured human skin cells.
|
| Weber, Thomas J. |
A Paracrine Signal Mediates The Cell Transformation Response To Low Dose Gamma Radiation in JB6 Cells.
|
| Wilson, Walter E. |
Comparison of Soft X Rays and Ions Irradiation in a Model of V79 Mammalian Cell
|
| Worgul, Basil |
Individual Genetic Susceptibility
|
| Worgul, Basil |
Low LET Radiation Studies on the Protective Bystander Effect and Cataractogenesis
|
| Wyrobek, Andrew J. |
Molecular mechanisms and cellular consequences of low-dose exposure to ionizing radiation.
|
| Yang, Feng |
Phosphoproteome profiling of human skin fibroplast cells in response to low- and high-dose irradiation
|
| Yannone, Steven, M. |
Using LC-FTICR to Identify Protein Relocalization Patterns in Response to IR
|
| Zimbrick, John D. |
Transgenerational Effects of Chronic Low-Dose Irradiation in a Medaka Fish Model System.
|
|
|
|
| |
|
|
|
|
|
|
|
|
|
| |
|
|
|
|
|
|
|
|
|
| |
|
|
|
|
|
|
|
|
|
 |
 |
 |
 |
 |
 |
 |
 |
 |
 |
|