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    • 3. 发明申请
    • ARRANGEMENT TO TRANSMIT MAGNETIC RESONANCE SIGNALS
    • 发射磁共振信号的安排
    • US20090286478A1
    • 2009-11-19
    • US12465147
    • 2009-05-13
    • Stephan BiberJan BollenbeckRalph OppeltMarkus Vester
    • Stephan BiberJan BollenbeckRalph OppeltMarkus Vester
    • H04B7/00
    • G01R33/3664G01R33/3415G01R33/3607G01R33/3621G01R33/3635
    • An arrangement for transmitting magnetic resonance signals, with a transmission link that connects a local coil with a receiver, has a first channel of the local coil with a first single antenna to acquire a first magnetic resonance signal, as well as a first mixer connected with the first single antenna. The first mixer forms an intermediate-frequency first signal from the supplied first magnetic resonance signal. A second channel of the local coil has a second single antenna to acquire a second magnetic resonance signal, as well as a second mixer connected with the second single antenna. The second mixer forms an intermediate-frequency second signal from the supplied second magnetic resonance signal. The local coil has a device for signal combination that, by frequency multiplexing, that combines the intermediate-frequency first signal of the first channel and the intermediate-frequency second signal of the second channel so that it arrives at the receiver via the transmission path. The receiver has an A/D converter at which one of the transmitted intermediate-frequency signals of an associated channel arrives in order to be sampled with a sampling frequency for digitization. For frequency conversion, a first local oscillator frequency is connected at the first mixer and a second local oscillator frequency is connected at the second mixer. the first and second local oscillator frequencies are selected such that intermediate-frequencies formed by the frequency conversion are mirror-symmetrical relative to the sampling frequency of the A/D converter.
    • 用于传输磁共振信号的装置,具有将本地线圈与接收器连接的传输链路,具有本地线圈的第一通道和第一单个天线以获取第一磁共振信号,以及与第 第一单天线。 第一混频器从所提供的第一磁共振信号形成中频第一信号。 本地线圈的第二通道具有用于获取第二磁共振信号的第二单个天线,以及与第二单个天线连接的第二混频器。 第二混频器从所提供的第二磁共振信号形成中频第二信号。 本地线圈具有用于信号组合的装置,通过频率复用,组合第一通道的中频第一信号和第二通道的中频第二信号,使得其经由传输路径到达接收器。 接收机具有A / D转换器,在该A / D转换器中,相关信道的所发送的中频信号中的一个到达,以便以用于数字化的采样频率进行采样。 对于频率转换,在第一混频器处连接第一本地振荡器频率,在第二混频器处连接第二本地振荡器频率。 选择第一和第二本地振荡器频率,使得由频率变换形成的中频相对于A / D转换器的采样频率是镜像对称的。
    • 7. 发明申请
    • Magnetic Resonance Imaging
    • 磁共振成像
    • US20150362578A1
    • 2015-12-17
    • US14738884
    • 2015-06-13
    • Stephan BiberDaniel NiederlöhnerAndreas SchmidtMarkus Vester
    • Stephan BiberDaniel NiederlöhnerAndreas SchmidtMarkus Vester
    • G01R33/565G01R33/3875G01R33/48
    • G01R33/3875G01R33/243G01R33/4828G01R33/56536
    • In order to enable efficient calculation of shim settings for a magnetic resonance imaging system, a method for magnetic resonance imaging of an object under investigation using a magnetic resonance device is provided. The method includes acquiring first magnetic resonance image data of the object under investigation using the magnetic resonance device. The method also includes segmenting the first magnetic resonance image data into at least two material classes, calculating a B0 map based on the segmented first magnetic resonance image data and based on susceptibility values of the at least two material classes, and calculating shim settings based on the calculated B0 map. The method also includes acquiring second magnetic resonance image data of the object under investigation using the magnetic resonance device. The acquisition of the second magnetic resonance image data is undertaken using the calculated shim settings.
    • 为了能够有效地计算磁共振成像系统的垫片设置,提供了一种使用磁共振装置对被研究对象进行磁共振成像的方法。 该方法包括使用磁共振装置获取被研究对象的第一磁共振图像数据。 该方法还包括将第一磁共振图像数据分成至少两种材料类别,基于分割的第一磁共振图像数据计算B0图,并且基于至少两种材料类别的磁化率值,以及基于 计算出B0图。 该方法还包括使用磁共振装置获取被研究对象的第二磁共振图像数据。 使用计算的垫片设置进行第二磁共振图像数据的采集。
    • 9. 发明授权
    • MR signal transmission in a local coil arrangement
    • 局部线圈布置中的MR信号传输
    • US08487622B2
    • 2013-07-16
    • US12893286
    • 2010-09-29
    • Stephan BiberJan BollenbeckMarkus Vester
    • Stephan BiberJan BollenbeckMarkus Vester
    • G01V3/00
    • G01R33/3692G01R33/341G01R33/3415G01R33/3621G01R33/422
    • In a magnetic resonance tomography local coil arrangement and a method for processing signals received thereby, at least one local coil is fashioned to receive at least one reception signal and at least one amplifier is provided that amplifies the at least one reception signal. A frequency converter generates at least one intermediate frequency signal from the at least one reception signal the intermediate frequency of the intermediate frequency signal differing from the reception signal frequency of each reception signal. An analog-digital converter converts the analog intermediate frequency signal into a digitized signal. A shielding device shields against at least radio-frequency signals, the shielding device surrounding at least the analog-digital converter. At least one frequency filter is arranged between the at least one local coil and the analog-digital converter, the frequency filter exhibiting a transmission range for signals with the intermediate frequency of an intermediate frequency signal. The digitized signal is transmitted from the local coil arrangement.
    • 在磁共振断层摄影局部线圈装置和用于处理由此接收的信号的方法中,形成至少一个局部线圈以接收至少一个接收信号,并且提供放大至少一个接收信号的至少一个放大器。 变频器从至少一个接收信号产生至少一个中频信号,该中频信号与每个接收信号的接收信号频率不同。 模拟数字转换器将模拟中频信号转换为数字化信号。 屏蔽装置至少屏蔽射频信号,屏蔽装置至少围绕模拟数字转换器。 在至少一个本地线圈和模数转换器之间布置至少一个频率滤波器,该频率滤波器对于具有中频信号的中频的信号呈现传输范围。 数字化信号从本地线圈装置发送。