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Spinal cord biological safety of image-guided radiation therapy versus conventional radiation therapy 被引量:23
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作者 wanlong xu Xilinbaoleri +2 位作者 Hao Liu Ruozheng Wang Jingping Bai 《Neural Regeneration Research》 SCIE CAS CSCD 2012年第35期2755-2760,共6页
Tumor models were simulated in purebred Beagles at the T9-10 levels of the spinal cord and treated with spinal image-guided radiation therapy or conventional radiation therapy with 50 or 70 Gy total radiation. Three m... Tumor models were simulated in purebred Beagles at the T9-10 levels of the spinal cord and treated with spinal image-guided radiation therapy or conventional radiation therapy with 50 or 70 Gy total radiation. Three months after radiation, neuronal injury at the T9-10 levels was observed, including reversible injury induced by spinal image-guided radiation therapy and apoptosis induced by conventional radiation therapy. The number of apoptotic cells and expression of the proapoptotic protein Fas were significantly reduced, but expression of the anti-apoptotic protein heat shock protein 70 was significantly increased after image-guided radiation therapy compared with the conventional method of the same radiation dose. Moreover, the spinal cord cell apoptotic index positively correlated with the ratio of Fas/heat shock protein 70. These findings indicate that 3 months of radiation therapy can induce a late response in the spinal cord to radiation therapy; image-guided radiation therapy is safer and results in less neuronal injury compared with conventional radiation therapy. 展开更多
关键词 Image-guided radiation therapy conventional radiation therapy spinal cord NEURONS apoptosis FAS heat shock protein 70 biological safety vertebral body TUMOR
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Three-dimensional conformal intensity-modulated radiation therapy of left femur foci does not damage the sciatic nerve 被引量:6
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作者 wanlong xu Xibin Zhao +6 位作者 Qing Wang Jungang Sun Jiangbo xu Wenzheng Zhou Hao Wang Shigui Yan Hong Yuan 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第20期1824-1829,共6页
During radiotherapy to kill femoral hydatid tapeworms, the sciatic nerve surrounding the focus can be easily damaged by the treatment. Thus, it is very important to evaluate the effects of ra- diotherapy on the surrou... During radiotherapy to kill femoral hydatid tapeworms, the sciatic nerve surrounding the focus can be easily damaged by the treatment. Thus, it is very important to evaluate the effects of ra- diotherapy on the surrounding nervous tissue. In the present study, we used three-dimensional, conformal, intensity-modulated radiation therapy to treat bilateral femoral hydatid disease in Meriones meridiani. The focus of the hydatid disease on the left femur was subiected to radio- therapy (40 Gy) for 14 days, and the right femur received sham irradiation. Hematoxylin-eosin staining, electron microscopy, and terminal deoxynucleotidyl transferase-dUTP nick end labeling assays on the left femurs showed that the left sciatic nerve cell structure was normal, with no ob- vious apoptosis after radiation. Trypan blue staining demonstrated that the overall protoscolex structure in bone parasitized with Echinococcus granulosus disappeared in the left femur of the animals after treatment. The mortality of the protoscolex was higher in the left side than in the right side. The succinate dehydrogenase activity in the protoscolex in bone parasitized with Echi- nococcus granulosus was lower in the left femur than in the right femur. These results suggest that three-dimensional conformal intensity-modulated radiation therapy achieves good therapeutic effects on the secondary bone in hydatid disease in Meriones meridiani without damaging the morphology or function of the sciatic nerve. 展开更多
关键词 nerve regeneration three-dimensional conformal intensity-modulated radiation thera-py hydatid disease sciatic nerve neurons radiation damage succinate dehydrogenase NSFC grants neural regeneration
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