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Discrimination between Neoplastic and Nonneoplastic Brain Lesions by Use of Proton MR Spectroscopy: The Limits of Accuracy with a Logistic Regression Model

机译:质子磁共振波谱法鉴别肿瘤性和非肿瘤性脑病变:Logistic回归模型的准确性极限

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摘要

BACKGROUND AND PURPOSE: The most accurate method of clinical MR spectroscopy (MRS) interpretation remains an open question. We sought to construct a logistic regression (LR) pattern recognition model for the discrimination of neoplastic from nonneoplastic brain lesions with MR imaging–guided single-voxel proton MRS data. We compared the LR sensitivity, specificity, and receiver operator characteristic (ROC) curve area (Az) with the sensitivity and specificity of blinded and unblinded qualitative MRS interpretations and a choline (Cho)/N-acetylaspartate (NAA) amplitude ratio criterion. METHODS: Consecutive patients with suspected brain neoplasms or recurrent neoplasia referred for MRS were enrolled once final diagnoses were established by histopathologic examination or serial neurologic examinations, laboratory data, and imaging studies. Control spectra from healthy adult volunteers were included. An LR model was constructed with 10 input variables, including seven metabolite resonance amplitudes, unsuppressed brain water content, water line width, and the final diagnosis (neoplasm versus nonneoplasm). The LR model output was the probability of tumor, for which a cutoff value was chosen to obtain comparable sensitivity and specificity. The LR sensitivity and specificity were compared with those of qualitative blinded interpretations from two readers (designated A and B), qualitative unblinded interpretations (in aggregate) from a group of five staff neuroradiologists and a spectroscopist, and a quantitative Cho/NAA amplitude ratio 1 criterion. McNemar's analysis yielded significant differences in sensitivity (n86 neoplasms) between the LR and reader A, and between the LR and the Cho/NAA > 1 criterion. The differences in specificity between the LR and all other methods were not significant (n13 nonneoplasms). Metz's analysis revealed a significant difference in Az between the LR and the Cho/NAA ratio criterion. CONCLUSION: The upper limits of sensitivity, specificity, and ROC area achieved in the construction of the LR model with MRS data demonstrate the potential for improved discrimination of neoplasm from nonneoplasm relative to either qualitative MRS interpretation by blinded readers or by quantitative interpretation with a Cho/NAA amplitude ratio threshold. The sensitivity, specificity, and ROC curve area of the LR were comparable to unblinded MRS readers who had the benefit of prior imaging studies and clinical data.
机译:背景与目的:最准确的临床 MR光谱法(MRS)解释方法仍是一个悬而未决的问题。 我们试图构建逻辑回归(LR)模式识别 模型,利用MR成像引导的单体素质子 MRS数据,可将肿瘤与非肿瘤性 大脑病变区分开。我们将LR敏感性,特异性和接收者 操作者特征(ROC)曲线面积(Az)与盲和非盲定性MRS解释的敏感性 和特异性进行了比较。 / sup>和胆碱(Cho)/ N-乙酰天门冬氨酸(NAA)振幅比 标准。 方法:连续患有脑肿瘤的患者 或一旦通过组织病理学检查或 串行神经系统检查,实验室数据和影像学 研究确定了最终的 诊断,便纳入了MRS复发性肿瘤。包括了来自健康成人志愿者的控制光谱 。使用10个输入变量构建LR模型, 包括7个代谢物共振幅度,未抑制的 脑含水量,水线宽度和最终诊断结果 (肿瘤与非肿瘤)。 LR模型的输出是肿瘤的概率 ,为此选择了一个临界值以获得可比的 敏感性和特异性。将LR敏感性和特异性 与定性盲目解释 来自两个读者(指定为A和B)定性无盲目 解释(总计),由五名神经放射科医师 和光谱学家组成,并确定了肿瘤的Cho / NAA振幅比 与McNemar的卡方分析 用于二元检验进行比较,并匹配显着性水平 5%的数据。在可能的情况下进行了ROC分析,并将Az值 与Metz方法(CORROC2)进行了比较,显着性水平为 5%。 结果:登记的99例中,有86例是肿瘤,13例是 非肿瘤诊断。相对于 对照谱的肿瘤鉴别对于LR而言微不足道,反映了对照谱中的高均质性 。肿瘤 的LR截止概率为0.8,特异性为87%,可比敏感性 为85%,ROC曲线下面积为0.96。其他 方法的敏感性, 特异性和ROC区域(如果有)分别平均为 的82%,74%和0.82。 sup>对于阅读者A和B,非盲阅读者组分别为89%(敏感性)和92%(特异性) (79%(敏感性),77% (特异性)和Cho / NAA> 1标准的0.84(Az)。 McNemar的分析在LR和阅读器A之间的敏感性 (n86肿瘤)产生了显着差异,并且在 LR和Cho / NAA> 1标准之间。 LR和所有其他方法之间的特异性 差异不明显(n13 nonneoplasms)。梅斯(Metz)的分析显示LR和Cho / NAA比率标准之间在Az上存在显着差异。 结论:敏感性,特异性和 数据构建LR模型时获得的> ROC面积表明,相对于定性MRS 而言,改进了 肿瘤与非肿瘤的区别的潜力盲目阅读器进行解释或通过具有Cho / NAA振幅比阈值的定量解释 进行解释。 LR的敏感性,特异性, 和ROC曲线面积与无盲MRS 阅读器相当,后者受益于先前的影像学研究和临床 数据。

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  • 来源
    《American Journal of Neuroradiology》 |2000年第7期|1213-1219|共7页
  • 作者单位

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

    From the Departments of Radiology, Biophysics (J.B., R.P., V.C., K.D., R.N., W.B., S-J.L., V.H., L.M., T.K., W.M., G.M., H.K., S.R.), Neurosurgery (W.M., G.M.), and Neurology (H.K.), Medical College of Wisconsin, Milwaukee, Wisconsin the Department of Family Practice (V.K.C.), University of Illinois College of Medicine at Rockford, Rockford, Illinois Department of Radiology (V.H.), University of Wisconsin Hospitals and Clinics, Madison, Wisconsin and the Department of Radiology (T.K.), University of Washington Medical Center, Seattle, Washington.;

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