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Long-term Brain Tissue Monitoring after Semi-brain Irradiation in Rats Using Proton Magnetic Resonance Spectroscopy: A Preliminary Study In vivo

机译:使用质子磁共振波谱对大鼠半脑照射后的长期脑组织监测:体内初步研究

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Background:In head and neck neoplasm survivors treated with brain irradiation,metabolic alterations would occur in the radiation-induced injury area.The mechanism of these metabolic alterations has not been fully understood,while the alternations could be sensitively detected by proton (1H) nuclear magnetic resonance spectroscopy (MRS).In this study,we investigated the metabolic characteristics of radiation-induced brain injury through a long-term follow-up after radiation treatment using MRS in vivo.Methods:A total of 12 adult Sprague-Dawley rats received a single dose of 30 Gy radiation treatment to semi-brain (field size:1.0 cm × 2.0 cm;anterior limit:binocular posterior inner canthus connection;posterior limit:external acoustic meatus connection;internal limit:sagittal suture).Conventional magnetic resonance imaging and single-voxel 1H-MRS were performed at different time points (in month 0 before irradiation as well as in the 1st,3rd,5th,7th,and 9th months after irradiation) to investigate the alternations in irradiation field.N-acetylaspartate/choline (NAA/Cho),NAA/creatinine (Cr),and Cho/Cr ratios were measured in the bilateral hippocampus and quantitatively analyzed with a repeated-measures mixed-effects model and multiple comparison test.Results:Significant changes in the ratios ofNAA/Cho (F=57.37,Pg < 0.001),NAA/Cr (F =54.49,Pg < 0.001),and Cho/Cr (F =9.78,Pg=0.005) between the hippocampus region of the irradiated semi-brain and the contralateral semi-brain were observed.There were significant differences in NAA/Cho (F =9.17,Pt < 0.001) and NAA/Cr (F =13.04,Pt < 0.001) ratios over time.The tendency of NAA/Cr to change with time showed no significant difference between the irradiated and contralateral sides.Nevertheless,there were significant differences in the Cho/Cr ratio between these two sides.Conclusions:MRS can sensitively detect metabolic alternations.Significant changes of metabolites ratio in the first few months after radiation treatment reflect the metabolic disturbance in the acute and early-delayed stages of radiation-induced brain injuries.
机译:背景:在接受脑部照射的头颈部肿瘤幸存者中,放射性损伤区域会发生代谢改变。这些代谢改变的机制尚未完全阐明,而这种改变可通过质子(1H)核灵敏地检测到。磁共振波谱(MRS)。在这项研究中,我们通过在体内进行MRS放射治疗后的长期随访,研究了放射诱发的脑损伤的代谢特征。方法:总共收到12只成年Sprague-Dawley大鼠。对半脑进行单次30 Gy放射治疗(视野大小:1.0 cm×2.0 cm;前限:双眼后can内连接;后限:外耳道连接;内限:矢状缝线)。常规磁共振成像在不同时间点(照射前0个月以及照射后1、3、5、7和9个月)和单体素1H-MRS进行检查研究双侧海马的N-乙酰天门冬氨酸/胆碱(NAA / Cho),NAA /肌酐(Cr)和Cho / Cr比值,并采用重复测量的混合效应模型和多个结果:NAA / Cho(F = 57.37,Pg <0.001),NAA / Cr(F = 54.49,Pg <0.001)和Cho / Cr(F = 9.78,Pg = 0.005)的比率发生了显着变化观察到辐照的半脑和对侧半脑的海马区。NAA/ Cho(F = 9.17,Pt <0.001)和NAA / Cr(F = 13.04,Pt <0.001)的比率存在显着差异。 NAA / Cr随时间变化的趋势在被照射侧和对侧均无显着差异。尽管如此,这两个侧面的Cho / Cr比也存在显着差异。结论:MRS可以灵敏地检测代谢变化。放射治疗后最初几个月中代谢物比率的变化反映出放射性诱发的脑损伤的急性和早期阶段的代谢紊乱。

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  • 来源
    《中华医学杂志(英文版)》 |2017年第8期|957-963|共7页
  • 作者单位

    Department of Radiology, Fudan University Shanghai Cancer Center;

    Department of Oncology, Shanghai Medical College, Fudan University, Shanghai 200032, China;

    Department of Radiology, Eye and ENT Hospital of Fudan University, Shanghai 200031, China;

    Department of Radiology, Fudan University Shanghai Cancer Center;

    Department of Oncology, Shanghai Medical College, Fudan University, Shanghai 200032, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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