首页> 外文期刊>American Journal of Neuroradiology >Usefulness of Contrast-Enhanced T1-Weighted Sampling Perfection with Application-Optimized Contrasts by Using Different Flip Angle Evolutions in Detection of Small Brain Metastasis at 3T MR Imaging: Comparison with Magnetization-Prepared Rapid Acquisition of Gradient Echo Imaging
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Usefulness of Contrast-Enhanced T1-Weighted Sampling Perfection with Application-Optimized Contrasts by Using Different Flip Angle Evolutions in Detection of Small Brain Metastasis at 3T MR Imaging: Comparison with Magnetization-Prepared Rapid Acquisition of Gradient Echo Imaging

机译:在3T MR成像中使用不同的翻转角演变来增强对比度的T1加权采样完善与应用优化的对比度在检测小脑转移中的有用性:与磁化制备的梯度回波成像的快速采集的比较

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BACKGROUND AND PURPOSE: Early accurate diagnosis of brain metastases is crucial for a patient's prognosis. This study aimed to compare the conspicuity and detectability of small brain metastases between contrast-enhanced 3D fast spin-echo (sampling perfection with application-optimized contrasts by using different flip angle evolutions [SPACE]) and 3D gradient-echo (GE) T1-weighted (magnetization-prepared rapid acquisition of GE [MPRAGE]) images at 3T. MATERIALS AND METHODS: Sixty-nine consecutive patients with suspected brain metastases were evaluated prospectively by using SPACE and MPRAGE on a 3T MR imaging system. After careful evaluation by 2 experienced neuroradiologists, 92 lesions from 16 patients were selected as brain metastases. We compared the shorter diameter, contrast rate (CR), and contrast-to-noise ratio (CNR) of each lesion. Diagnostic ability was compared by using receiver operating characteristic (ROC) analysis. Ten radiologists (5 neuroradiologists and 5 residents) participated in the reading. RESULTS: The mean diameter was significantly larger by using SPACE than MPRAGE (mean, 4.5 ± 3.7 versus 4.3 ± 3.7 mm, P = .0014). The CR and CNR of SPACE (mean, 57.3 ± 47.4%, 3.0 ± 1.9, respectively) were significantly higher than those of MPRAGE (mean, 37.9 ± 41.2%, 2.6 ± 2.2; P < .0001, P = .04). The mean area under the ROC curve was significantly larger with SPACE than with MPRAGE (neuroradiologists, 0.99 versus 0.88, P = .013; residents, 0.99 versus 0.78, P = .0001). CONCLUSIONS: Lesion detectability was significantly higher on SPACE than on MPRAGE, irrespective of the experience of the reader in neuroradiology. SPACE should be a promising diagnostic technique for assessing brain metastases.
机译:背景与目的:脑转移的早期准确诊断 对于患者的预后至关重要。本研究旨在比较对比增强型3D快速自旋回波(采样完美度 与应用优化的)之间的 小脑转移瘤的显着性和可检测性通过使用不同的flip 角度演化[SPACE])和3D梯度回波(GE)T1加权的 (磁化准备的GE [MPRAGE]的快速采集)图像进行对比材料和方法:使用 SPACE和前瞻性评估了连续69例 可疑的脑转移患者。 3T MR成像系统上的MPRAGE。经过2位经验丰富的神经放射科医生的仔细评估后,从16例患者中选择了92个病变作为脑转移瘤。我们比较了每个 病变的较短直径, 对比度(CR)和对比噪声比(CNR)。通过使用接收器操作 特征(ROC)分析来比较诊断能力。 10名放射线医师(5名神经放射线医师 和5名住院医师)参与了阅读。 结果:使用SPACE SPACE的平均直径明显大于MPRAGE(平均值) ,分别为4.5±3.7和4.3± 3.7毫米,P = .0014)。 SPACE的CR和CNR(分别为57.3± 47.4%,3.0±1.9)显着高于MPRAGE(平均值,37.9±41.2%,2.6) ± 2.2; P <.0001,P = .04)。 SPACE的ROC曲线下的平均面积 明显大于MPRAGE(神经放射学家, 0.99对0.88,P = 0.013;居民对0.99对0.78,P = < sup> .0001)。 结论: SPACE上的病变可检测性显着高于MPRAGE,与 的经历无关神经放射学的读者。 SPACE应该是用于评估脑转移的有前途的诊断技术

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  • 来源
    《American Journal of Neuroradiology》 |2009年第5期|923-929|共7页
  • 作者单位

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Noninvasive Diagnostic Imaging, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

    Departments of Diagnostic Radiology, Tohoku University Graduate School of Medicine, Sendai, Japan;

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  • 入库时间 2022-08-17 23:23:04

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