Literature DB >> 20599817

Differential effects of radiation and age on diffusion tensor imaging in rats.

Ann M Peiffer1, Lei Shi2, John Olson3, Judy K Brunso-Bechtold2.   

Abstract

Greater than 50% of adults and approximately 100% of children who survive >6 months after fractionated partial or whole-brain radiotherapy develop cognitive impairments. Noninvasive methods are needed for detecting and tracking the radiation-induced brain injury associated with these impairments. Using magnetic resonance imaging, we sought to detect structural changes associated with brain injury in our rodent model of fractionated whole-brain irradiation (fWBI) induced cognitive impairment and to compare those changes with alterations that occur during the aging process. Middle aged rats were given a clinically relevant dose of fWBI (40 Gy: two 5 Gy fractions/week for 4 weeks) and scanned approximately 1 year post-irradiation to obtain whole-brain T2 and diffusion tensor images (DTI); control groups of sham-irradiated age-matched and young rats were also scanned. No gross structural changes were evident in the T2 structural images, and no detectable fWBI-induced DTI changes in fractional anisotropy (FA) were found in heavily myelinated white matter (corpus callosum, cingulum, and deep cortical white matter). However, significant fWBI-induced variability in FA distribution was present in the superficial parietal cortex due to an fWBI-induced decline in FA in the more anterior slices through parietal cortex. Young rats had significantly lower FA values relative to both groups of older rats, but only within the corpus callosum. These findings suggest that targets of the fWBI-induced change in this model may be the less myelinated or unmyelinated axons, extracellular matrix, or synaptic fields rather than heavily myelinated tracts. 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20599817      PMCID: PMC2934908          DOI: 10.1016/j.brainres.2010.06.049

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  51 in total

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5.  Dysmyelination revealed through MRI as increased radial (but unchanged axial) diffusion of water.

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8.  Modifying normal tissue damage postirradiation. Report of a workshop sponsored by the Radiation Research Program, National Cancer Institute, Bethesda, Maryland, September 6-8, 2000.

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9.  Longitudinal diffusion tensor magnetic resonance imaging study of radiation-induced white matter damage in a rat model.

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Review 10.  Radiation induced CNS toxicity--molecular and cellular mechanisms.

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  11 in total

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2.  Whole-brain changes in white matter microstructure after radiotherapy for nasopharyngeal carcinoma: a diffusion tensor imaging study.

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Review 3.  Imaging radiation-induced normal tissue injury.

Authors:  Mike E Robbins; Judy K Brunso-Bechtold; Ann M Peiffer; Christina I Tsien; Janet E Bailey; Lawrence B Marks
Journal:  Radiat Res       Date:  2012-02-21       Impact factor: 2.841

4.  Radiation-induced cognitive impairment and altered diffusion tensor imaging in a juvenile rat model of cranial radiotherapy.

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6.  Quantitative Evaluation of Rabbit Brain Injury after Cerebral Hemisphere Radiation Exposure Using Generalized q-Sampling Imaging.

Authors:  Chao-Yu Shen; Yeu-Sheng Tyan; Li-Wei Kuo; Changwei W Wu; Jun-Cheng Weng
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7.  Changes in Imaging and Cognition in Juvenile Rats After Whole-Brain Irradiation.

Authors:  Robert J Brown; Brandon J Jun; Jesse D Cushman; Christine Nguyen; Adam H Beighley; Johnny Blanchard; Kei Iwamoto; Dorthe Schaue; Neil G Harris; James D Jentsch; Stefan Bluml; William H McBride
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8.  Ionizing radiation modulates vascular endothelial growth factor expression through STAT3 signaling pathway in rat neonatal primary astrocyte cultures.

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9.  Early postnatal irradiation-induced age-dependent changes in adult mouse brain: MRI based characterization.

Authors:  Bo Xu Ren; Isaac Huen; Zi Jun Wu; Hong Wang; Meng Yun Duan; Ilonka Guenther; K N Bhanu Prakash; Feng Ru Tang
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10.  Regionally distinct responses of microglia and glial progenitor cells to whole brain irradiation in adult and aging rats.

Authors:  Kun Hua; Matthew K Schindler; Joseph A McQuail; M Elizabeth Forbes; David R Riddle
Journal:  PLoS One       Date:  2012-12-26       Impact factor: 3.240

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