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Development of a robust method for generating 7.0 T multichannel phase images of the brain with application to normal volunteers and patients with neurological diseases.

机译:开发了一种健壮的方法来生成7.0 T的大脑多通道相位图像,并将其应用于正常志愿者和神经系统疾病患者。

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The increased susceptibility effects and high signal-to-noise ratio at 7.0 T enable imaging of the brain using the phase of the magnetic resonance signal. This study describes and evaluates a robust method for calculating phase images from gradient-recalled echo (GRE) scans. The GRE scans were acquired at 7.0 T using an eight-channel receive coil at spatial resolutions up to 0.195 x 0.260 x 2.00 mm. The entire 7.0 T protocol took less than 10 min. Data were acquired from forty-seven subjects including clinical patients with multiple sclerosis (MS) or brain tumors. The phase images were post-processed using a fully automated phase unwrapping algorithm that combined the data from the different channels. The technique was used to create the first phase images of MS patients at any field strength and the first phase images of brain tumor patients above 1.5 T. The clinical images showed novel contrast in MS plaques and depicted microhemorrhages and abnormal vasculature in brain tumors with unsurpassed resolution and contrast.
机译:在7.0 T下增加的磁化效应和高信噪比使得能够使用磁共振信号的相位对大脑进行成像。这项研究描述并评估了一种可靠的方法,该方法可从梯度回波(GRE)扫描计算相位图像。 GRE扫描是使用八通道接收线圈以7.0 T进行的,空间分辨率高达0.195 x 0.260 x 2.00 mm。整个7.0 T协议耗时不到10分钟。数据来自47位受试者,包括多发性硬化症(MS)或脑瘤的临床患者。使用全自动相位展开算法对相位图像进行后处理,该算法将来自不同通道的数据组合在一起。该技术用于在任何场强下创建MS患者的第一阶段图像,以及1.5 T以上的脑肿瘤患者的第一阶段图像。临床图像显示MS斑块出现了新的对比,并描绘了无与伦比的脑肿瘤中的微出血和脉管异常分辨率和对比度。

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