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^1H-MRS在细菌性脑脓肿中的应用研究 被引量:6

The Study of ^1H-MRS in Bacterial Brain Abscess
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摘要 目的回顾性分析细菌性脑脓肿氢质子磁共振波谱(1H-MRS)特征,评价1H-MRS在细菌性脑脓肿诊断和疗效监测中的应用价值。资料与方法经病理组织学证实的细菌性脑脓肿20例,17例1H-MRS有能分辨的信噪比(SNR),点分辨波谱(PRESS)序列采集病灶中心,比较分析代谢物出现概率。结果(1)17例细菌性脑脓肿:耳源性2例,肺源性3例,心源性2例,隐源性5例,其他5例。(2)15例细菌性脑脓肿有氨基酸(AA)峰,敏感性88·23%,特异性100%。另2例仅有乳酸(Lac)或脂质(Lip)峰。9例乙酸盐(Ace)峰,敏感性52·3%;7例琥珀酸盐(Suc)峰,敏感性41·2%;6例丙氨酸(Ala)峰,敏感性35·3%;Lip峰和胆碱(Cho)、氮-乙酰天门冬氨酸(NAA)、肌酸(Cr)/磷酸肌酸(PCr)峰各3例。(3)8例平均治疗38d后1H-MRS复查,AA峰和Ace峰降低或消失,仅剩Lac峰。(4)细菌性脑脓肿有两种波谱模式:一种是除了AA峰、Lac峰,还有Ace峰、Suc峰或Ala峰(12例);另一种是仅有AA、Lac峰,而没有Ace峰、Suc峰或Ala峰(3例)。结论AA峰是细菌性脑脓肿特征性的峰;1H-MRS能反映细菌性脑脓肿的疗效;脓肿不同波谱模式可能提示不同的细菌感染。 Objective To retrospectively analyze the ^1H-MRS features of bacterial brain abscess, and to evaluate its value in the diagnosis and the monitoring of the curative effect. Materials and Methods 20 cases of bacterial brain abscess were confirmed by pathological results, in which 17 cases were acquired successful spectroscopy. Single-voxel PRESS (TE 135/270ms) sequence was pedormed, metabolite were analyzed. Results (1) 17 cases of bacterial brain abscess, 2 cases were otogenous, 3 cases were caused by lung disease, 2 cases were eardiogenic, 5 eases were unclear, the others were 5 cases. (2) 15 cases showed AA peak, sensitivity was 88.23% , specificity was 100%, 2 cases showed only Lac peak, no AA peak. 9 cases showed Ace peak, sensitivity52.3% ; 7 cases showed Suc peak, sensitivity 41.2%; 6 cases showed Ala peak, sensitivity 35.3%; Lip, Cho, NAA, Cr/PCr peak were detected in 3 cases respectively. (3) 8 cases were followed up after treatment of 38 days, AA peak and Ace peak were decreased or disappeared, only Lac peak was presented. (4) The total spectroscopy was divided into two types: 12/15 cases showed AA, Lac, and Ace or Suc or Ala peak; 3/15 cases showed only AA and Lac peaks. Conclusion AA is characteristic peak of bacterial brain abscess, ^1H-MRS can be used to monitor curative effect for bacterial brain abscess and predict the etiology according tO different spectroscopy type.
出处 《临床放射学杂志》 CSCD 北大核心 2006年第3期213-217,共5页 Journal of Clinical Radiology
关键词 脑脓肿 氢质子磁共振波谱 细菌感染 Brain abscess ^1H-MRS Bacterial infection
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参考文献11

  • 1Tsuia EYK, Chana JH, Cheunga YK,et al. Evaluation of cerebral abscesses by diffusion-weighted MR imaging and MR spectroscopy. AJNR,2001, 22:1503
  • 2Ping HL, Jih TH, Wei L, et al. Brain abscess and necrotic brain Tumor: discrimination with proton MR spectroscopy and diffusion-weighted imaging. AJNR, 2002, 23:1369
  • 3吴光耀,孙骏谟,田志雄,黄雄,张在鹏,谢长清.质子磁共振波谱在脑肿瘤中的应用研究[J].临床放射学杂志,2001,20(4):271-275. 被引量:18
  • 4Sylvie G, Ghislaine P, Anne Z,et al. Necrotic tumor versus brain absecss: importance of amino acids detected at ^1H MR spectrosecpy-intial results. Radiology, 1999, 213:785
  • 5Chang KH, Song IC, Kim,et al. In vivo single voxel proton MR spectroscopy in intracranial cystic masses. AJNR, 1998, 19:401
  • 6Franklyn AH, Kirstie SO. ^1H MR spectroscopy of brain tumors and masses. NMR in Biomedicine, 2003, 16:123
  • 7Akutsu H, Matsumura A, Isobe T,et al. Chronological change of brain abscess in ^1H magnetic resonance spectroscopy. Neuroradiology, 2002,44:574
  • 8Isabella MB, Stig Holtaos. In vivo proton MR spectroscopy of untreated and treated brain abscess. AJNR, 1999, 20:1049
  • 9Monika G, Rakesh K, Mazhar H,et al. Brain abscesses: etiologic categorization with in vivo proton MR spectroscopy. Radiology, 2004, 230:519
  • 10Garg M, Misra MK, Chawla S,et al. Broad identification of bacterial type from pus by ^1H MR spectroscopy. European Journal of Clinical Investigation, 2003, 33:518

二级参考文献14

  • 1[1]Bruhn H, Frahm J, Michael LG,et al. Noninvasive differentiation of tumors with use of localized H-1 spectroscopy in vivo: Initial experience in patients with cerebral tumors. Radiology, 1989, 172:541
  • 2[2]Robert D, Lai PH, Smith JS. Single voxel proton brain spectroscopy Exam (Probe/SV) in patients with primary brain tumors. AJR, 1996, 167:201
  • 3[3]Knock G, Mukherjisk L. Clinical application of proton MR spectroscopy. AJNR, 1996, 172:541
  • 4[4]Peptone H, Gupta RK, Roy R,et al. Characterization of intra-cranial man lesions with in vivo proton MR spectroscopy. AJNR, 1995, 16:1593
  • 5[5]Henny DJ, Ernst T. Human brain tumors assessment with in vivo proton MR spectroscopy. Radiology, 1993, 186:745
  • 6[6]Luyten PR, Marien AJH, Heindel W,et al. Metabolic imaging of patient with intra-cranial tumors: 1HMR spectroscopic imaging and PET. Radiology, 1990, 176:791
  • 7[7]Kugel H, Heindel W, Ernestus RI,et al. Human brain tumors: Spectral patterns detected with localized 1HMR spectroscopy. Radiology, 1992, 183:701
  • 8[8]Kugel AC, Donnelly SM, Halliday W,et al. Mobile lipids and metabolic heterogeneity of brain tumor as detectable by in vivo 1HMR spectroscopy. HMR Biomed, 1994, 7:172
  • 9[9]Kuesel AC, Sutherland GR, Halliday W,et al. 1HMRS of high grade astrocytomas mobile lipid accumulation in necrotic tissue. NMR Biomed, 1994, 7:149
  • 10[10]Gober JR. Noninvasive tissue characterization of brain tumor and radiation therapy using magnetic resonance spectroscopy. Neuroimag Clin North AM, 1993, 3:779

共引文献17

同被引文献56

  • 1王谨,龚向阳,沈训泽.质子磁共振波谱在细菌性脑脓肿诊断与鉴别诊断中的价值[J].中华神经科杂志,2005,38(6):389-392. 被引量:8
  • 2虞登海,杨学照.脑脓肿复发原因的回顾(附复发30例分析)[J].临床神经病学杂志,1995,8(3):182-182. 被引量:1
  • 3王锦玲.75例耳源性脑脓肿诊断问题的分析[J].第四军医大学学报,1996,17(1):71-72. 被引量:2
  • 4Sennaroglu L,Sozeri B. Otogenic brain abscess:review of 41 cases. Otolaryngol Head Neck Surg, 2000,123:751-755.
  • 5Bento R, de Brito R, Ribas GC. Surgical management of intracranial complications of otogenic infection. Ear Nose Throat J, 2006,85:36-39.
  • 6Hafidh MA, Keogh I, Walsh RM, et al. Otogenic intracranial complications. A 7-year retrospective review. Am J Otolaryngol, 2006,27 : 390-395.
  • 7Prasad KN, Mishra AM, Gupta D, et al. Analysis of microbial etiology and mortality in patients with brain abscess. J Infect, 2006,53:221-227.
  • 8Tandon S, Beasley N, Swift AC. Changing trends in intracranial abscesses secondary to ear and sinus disease. J Laryngol Otol, 2008,19:1-6.
  • 9Tzika AA, Zarifi MK, Goumnerova L, et al. Neuroimaging in pediatric brain tumors : Gd-DTPA enhanced, hemodynamic, and diffusion MR imaging compared with MR spectroscopic imaging. AJNR ,2002,23: 322.
  • 10McKnight TR. Proton magnetic resonance spectroscopic evaluation of brain tumor metabolism. Semin 0ncol,2004,31:605.

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