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    • 41. 发明申请
    • ELECTRO-OPTICAL MAGNETIC RESONANCE TRANSDUCER
    • 电光磁共振传感器
    • WO2005103747A1
    • 2005-11-03
    • PCT/IB2005/051069
    • 2005-03-30
    • KONINKLIJKE PHILIPS ELECTRONICS, N.V.U.S. PHILIPS CORPORATIONWEISS, SteffenNIELSEN, Tim
    • WEISS, SteffenNIELSEN, Tim
    • G01R33/28
    • G01R33/287G01R33/34084G01R33/36G01R33/3621G01R33/3692
    • A receive coil (46, 46', 46") receiving a magnetic resonance signal includes an optical resonant cavity (82, 82', 82") having an electro-optically active medium (90, 90', 90"). A radio frequency antenna (80, 80', 80") is coupled with the electro-optically active medium such that reception of the magnetic resonance signal by the radio frequency antenna modulates an optical characteristic of the optical resonant cavity. An interventional instrument (48) is adapted for partial insertion into an associated imaging subject (16). The radio frequency antenna and the optical resonant cavity are disposed on a portion of the interventional instrument that is inserted into the associated imaging subject. At least one optical fiber (52, 54) is optically coupled with the optical resonant cavity. An end of the at least one optical fiber extends outside of the associated imaging subject when the interventional instrument is partially inserted.
    • 接收磁共振信号的接收线圈(46,46',46“)包括具有电光活性介质(90,90',90”)的光学谐振腔(82,82',82“)。 高频天线(80,80',80“)与电光活性介质耦合,使得由射频天线接收磁共振信号调制光谐振腔的光学特性。 介入器械(48)适于部分地插入到相关联的成像对象(16)中。 无线电频率天线和光学谐振腔被布置在插入到相关联的成像对象中的介入仪器的一部分上。 至少一个光纤(52,54)与光学谐振腔光学耦合。 当介入器械被部分地插入时,至少一个光纤的一端延伸到相关的成像对象的外部。
    • 43. 发明申请
    • MRI WITH MOTION CORRECTION USING NAVIGATORS ACQUIRED USING A DIXON TECHNIQUE
    • 使用采用DIXON技术获得的导航仪进行运动校正的MRI
    • WO2013118040A1
    • 2013-08-15
    • PCT/IB2013/050929
    • 2013-02-04
    • KONINKLIJKE PHILIPS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBH
    • BECK, Gabriele MarianneNIELSEN, TimSIMONETTI, Arjan WillemHERIGAULT, Gwenael HenriVISSER, Mathijs
    • G01R33/567G01R33/565G01R33/48
    • G01R33/56509A61B5/055G01R33/34G01R33/385G01R33/4828G01R33/5673G01R33/5676
    • The invention relates to a method of MR imaging of at least a portion of a body (10) placed in a main magnetic field Bo within the examination volume of a MR device. It is an object of the invention to enable MR imaging with reliable motion detection and high image quality. The method of the invention comprises the following steps: - subjecting the portion of the body (10) to an imaging sequence comprising one or more RF pulses and switched magnetic field gradients for acquiring imaging signals; - subjecting the portion of the body (10) to a navigator sequence applied at least once before, during, or after the imaging sequence, the navigator sequence comprising one or more RF pulses and switched magnetic field gradients controlled in such a manner that navigator signals are acquired by means of a single-point or multi-point Dixon technique; - deriving translation and/or rotation and/or shear data from the navigator signals, which translation and/or rotation and/or shear data reflect motion occurring within the body (10) during the acquisition of the imaging signals; - reconstructing a MR image from the imaging signals, wherein the translation and/or rotation and/or shear data are used for adapting the imaging sequence and/or for motion correction during reconstruction of the MR image. Moreover, the invention relates to a MR device (1) and to a computer program to be run on a MR device (1).
    • 本发明涉及放射在MR装置的检查体积内的主磁场Bo中的身体(10)的至少一部分的MR成像方法。 本发明的一个目的是能够以可靠的运动检测和高图像质量实现MR成像。 本发明的方法包括以下步骤: - 对身体(10)的部分进行包括一个或多个RF脉冲和切换磁场梯度的成像序列,以获取成像信号; - 将所述身体(10)的所述部分经受在所述成像序列之前,期间或之后至少应用一次的导航序列,所述导航序列包括一个或多个RF脉冲和切换的磁场梯度,以这样的方式进行导航信号 通过单点或多点Dixon技术获得; - 在所述成像信号获取期间,所述平移和/或旋转和/或剪切数据反映在体(10)内发生的运动的平移和/或旋转和/或剪切数据; - 从成像信号重建MR图像,其中所述平移和/或旋转和/或剪切数据用于在MR图像的重建期间适配成像序列和/或运动校正。 此外,本发明涉及MR装置(1)以及要在MR装置(1)上运行的计算机程序。
    • 45. 发明申请
    • A THERMAL PRINTER
    • 热打印机
    • WO2003035403A1
    • 2003-05-01
    • PCT/DK2002/000591
    • 2002-09-11
    • EASYPRINT A/SJØRGENSEN, ChristianSVENSSON, TorbenJØRGENSEN, Kristian, VangOLESEN, Ernst, Thorsager, R.NIELSEN, Tim
    • JØRGENSEN, ChristianSVENSSON, TorbenJØRGENSEN, Kristian, VangOLESEN, Ernst, Thorsager, R.NIELSEN, Tim
    • B41J2/325
    • B41J2/355B41J2/325
    • A thermal printer for producing a printing on the surface of a foil in an ink transfer operation, comprising: means for supplying the foil to the thermal printer, a thermal transfer ribbon including an ink which is transferable in the ink transfer operation at specific locations of the thermal transfer ribbon by heating the specific locations to an elevated temperature causing the ink to be fluid, means for arranging the thermal transfer ribbon i facial contact with the surface of the foil, energizable printing means for heating the specific locations of the thermal transfer ribbon to the elevated temperature in the ink transfer operation, means for energizing the energizable printing means, means for moving the energizable printing means towards the foil so as to sandwich the thermal transfer ribbon therebetween in a constrained state and for moving the energizable printing means away from the foil, means for moving the foil and the energizable printing means relative to one another at a specific speed while pressing the energizable printing means and the foil together and while energizing the energizable printing means, and means for moving the thermal transfer ribbon relative to the energizable printing means along a specific direction of motion for causing the ink of the thermal transfer ribbon to be transferred at the specific locations to the foil at specific areas thereof consituting the printing so as to smear the ink of the thermal transfer ribbon at the specific locations onto the foil through the motion of the thermal trasnfer ribbon relative to the foil. The means for moving the energizable printing means towards and away from the foil including a supporting structure, the energizable printing means being pivotably mounted in the supporting structure for allowing the energizable printing means to pivote transversally relative to the specific direction of motion of the thermal transfer ribbon, the supporting structure including a biasing element for biasing the energising printing means in the pivotable mounting towards a specific initial position for self-aligning the energizable printing means in the specific initial position.
    • 一种用于在油墨传送操作中在箔的表面上产生印刷的热敏打印机,包括:用于将所述箔供应到热敏打印机的装置,包括可在油墨转印操作中转印的油墨的热转印带, 热转印带通过将特定位置加热至升高的温度,导致油墨为流体,用于将热转印带与纸箔表面接触的装置,用于加热热转印带的特定位置的可激活打印装置 在油墨转印操作中升高的温度,用于激励可激励打印装置的装置,用于将可激励打印装置朝向箔移动以将热转印带夹在其间处于受限状态的装置,以及用于使可激励打印装置远离 箔,用于相对于彼此移动箔和可激励打印装置的装置 同时将可激励打印装置和箔片压在一起并且同时激励可激励打印装置,以及用于沿特定运动方向相对于可激励打印装置移动热转印带的装置,用于使热转印带的墨水 在特定位置被转移到箔片的特定区域处于印刷状态,以便通过热转移带相对于箔片的运动将特定位置处的热转印带的油墨污染到箔片上。 用于使可激励打印装置朝向和远离包括支撑结构的箔移动的装置,可激励打印装置可枢转地安装在支撑结构中,以允许可激励打印装置相对于热转印的特定运动方向横向地转动 所述支撑结构包括用于将所述可枢转安装件中的通电打印装置朝向特定初始位置偏置的偏置元件,用于在所述特定初始位置自动对准所述可激励打印装置。