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氢质子二维化学位移成像波谱法评价脑胶质瘤的价值
引用本文:周高峰,王小宜,龚才桂,刘凡,王润文. 氢质子二维化学位移成像波谱法评价脑胶质瘤的价值[J]. 南方医科大学学报, 2008, 28(8): 1342-1344
作者姓名:周高峰  王小宜  龚才桂  刘凡  王润文
作者单位:中南大学湘雅医院放射科,湖南,长沙,410008;中南大学湘雅医院放射科,湖南,长沙,410008;中南大学湘雅医院放射科,湖南,长沙,410008;中南大学湘雅医院放射科,湖南,长沙,410008;中南大学湘雅医院放射科,湖南,长沙,410008
摘    要:
目的 探讨氢质子二维化学位移成像波谱技术在评价脑胶质瘤中的应用价值.方法 脑胶质瘤36例,用二维化学位移成像氢质子波谱技术,SE序列行1H-MRS检查,波谱VOI包括肿瘤区、肿瘤周围水肿区或肿瘤周围无水肿区、对侧正常脑组织区,获得不同区域代谢物变化.结果 低、高级别脑胶质瘤的肿瘤组织分别和对侧正常脑组织的NAA/Cr、Cho/Cr、NAA/Cho比值存在显著性差异(P<0.01);低级别脑胶质瘤和高级别脑胶质瘤的肿瘤组织的NAA/Cr、Cho/Cr、NAA/Cho比值存在显著性差异(P<0.05).脑胶质瘤肿瘤组织和肿瘤周围水肿组织的NAA/Cr、Cho/Cr、NAA/Cho比值存在显著性差异(P<0.05);肿瘤周围水肿组织和对侧正常脑组织的NAA/Cr、Cho/Cr、NAA/Cho比值存在显著性差异(P<0.05).脑胶质瘤肿瘤组织和肿瘤周围无水肿组织的NAA/Cr、Cho/Cr、NAA/Cho比值存在显著性差异(P<0.05);肿瘤周围无水肿组织和对侧正常脑组织的NAA/Cr、NAA/Cho比值存在显著性差异(P<0.05).但Cho/C/比值无显著性差异(P>0.05).结论 二维化学位移成像波谱技术能为脑胶质瘤分级、瘤周侵犯情况及治疗提供准确有效的证据,且时间分辨率高.

关 键 词:脑胶质瘤  氢质子磁共振波谱  磁共振成像

Value of proton magnetic resonance spectroscopy with two-dimensional chemical-shift imaging in evaluating brain gliomas
ZHOU Gao-feng,WANG Xiao-yi,GONG Cai-gui,LIU Fan,WANG Run-wen. Value of proton magnetic resonance spectroscopy with two-dimensional chemical-shift imaging in evaluating brain gliomas[J]. Journal of Southern Medical University, 2008, 28(8): 1342-1344
Authors:ZHOU Gao-feng  WANG Xiao-yi  GONG Cai-gui  LIU Fan  WANG Run-wen
Affiliation:Department of Radiology, Xiangya Hospital of Central South University, Changsha 410008, China.
Abstract:
OBJECTIVE: To study the value of proton magnetic resonance spectroscopy ((1)H-MRS) with two-dimensional (2D) chemical-shift imaging (CSI) in evaluating brain gliomas. METHODS: Thirty-six patients with gliomas received examinations with 2D-CSI. The VOI of MRS included the tumor, peritumoral edematous and nonedematous areas, and the contralateral normal tissue. The changes of the metabolites in different areas were determined using 2D-CSI (1)H-MRS with SE sequence and the metabolite ratios were calculated. RESULTS: Significant differences were found in the ratios of NAA/Cr, Cho/Cr and NAA/Cho between low-grade gliomas and contralateral normal brain tissue, and between high-grade gliomas and the contralateral normal tissue (P<0.01). The low-grade gliomas and high-grade gliomas differed significantly in the ratios of NAA/Cr, Cho/Cr and NAA/Cho (P<0.05). These ratios also showed significant differences between peritumoral edematous area and the glioma tissue, between the peritumoral edematous area and contralateral normal brain tissue (P<0.05), and between the peritumoral nonedematous area and the glioma tissue (P<0.05). Between the peritumoral nonedematous area and contralateral normal brain tissue, NAA/Cr and NAA/Cho ratios were significantly different (P<0.05) but the Cho/Cr ratio was similar (P>0.05). CONCLUSIONS: MRS with 2D-CSI can provide precise and effective evidences with high time resolution for glioma grading, assessment of peritumoral involvement and glioma therapies.
Keywords:brain gliomas  proton magnetic resonance spectroscopy  magnetic resonance imaging  
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