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    • 3. 发明授权
    • Medical image management system
    • 医学影像管理系统
    • US08166381B2
    • 2012-04-24
    • US11238406
    • 2005-09-29
    • Robert M. JuddEnn-Ling ChenRaymond J. Kim
    • Robert M. JuddEnn-Ling ChenRaymond J. Kim
    • G06F17/00
    • G06F17/30569G06F17/30244
    • A method of managing medical information is disclosed. Medical image data is received, at a real-time transfer engine, at the same time that the patient is being scanned by a medical imaging device. The medical image data is then converted to a browser-compatible image format at a converter engine connected to receive the medical image data from the real-time transfer engine. The converter engine comprises a decoder engine for extracting image pixel data from the medical image data and an encoding engine for converting the image pixel data to a browser-compatible format connected to receive the image pixel data. The image pixel data may be converted to a browser compatible format without loss of diagnostic data.
    • 公开了一种管理医疗信息的方法。 医疗图像数据在实时传输引擎的同时被病人被医学成像设备扫描的同时被接收。 然后,医疗图像数据在连接的转换器引擎上被转换为浏览器兼容的图像格式,以从实时传送引擎接收医学图像数据。 转换器引擎包括用于从医学图像数据提取图像像素数据的解码器引擎和用于将图像像素数据转换成连接以接收图像像素数据的浏览器兼容格式的编码引擎。 图像像素数据可以被转换成浏览器兼容格式而不丢失诊断数据。
    • 4. 发明授权
    • Dynamic magnetic resonance angiography
    • 动态磁共振血管造影
    • US07254436B2
    • 2007-08-07
    • US10449252
    • 2003-05-30
    • Robert M. JuddRaymond J. KimEnn-Ling Chen
    • Robert M. JuddRaymond J. KimEnn-Ling Chen
    • A61B5/055
    • G01R33/5635
    • A method for creating a magnetic resonance angiography (MRA) image including the steps of acquiring a magnetic resonance image in which a predetermined slice is excited using a train of radiofrequency (RF) pulses; and acquiring image data between the RF pulses such that the excited slice is viewable from a side view rather than from a face view. An MRA image generated by the steps of acquiring a magnetic resonance image in which a predetermined slice is excited using a train of radiofrequency (RF) pulses; acquiring image data between the RF pulses; viewing a side view of the slice, including dynamic spins within and exiting the slice.
    • 一种用于产生磁共振血管造影(MRA)图像的方法,包括以下步骤:获取其中使用射频(RF)脉冲串来激励预定切片的磁共振图像; 并且获取RF脉冲之间的图像数据,使得激发的切片从侧视而不是从侧视图可以观看。 通过获取其中使用射频(RF)脉冲串来激励预定切片的磁共振图像的步骤产生的MRA图像; 获取RF脉冲之间的图像数据; 查看切片的侧视图,包括切片内和离开切片的动态旋转。
    • 6. 发明申请
    • MEDICAL IMAGE MANAGEMENT SYSTEM
    • 医学影像管理系统
    • US20120185786A1
    • 2012-07-19
    • US13428504
    • 2012-03-23
    • Robert M. JuddEnn-Ling ChenRaymond J. Kim
    • Robert M. JuddEnn-Ling ChenRaymond J. Kim
    • G06F3/01
    • G06F16/50G06F16/258
    • A method of managing medical information is disclosed. Medical image data is received, at a real-time transfer engine, at the same time that the patient is being scanned by a medical imaging device. The medical image data is then converted to a browser-compatible image format at a converter engine connected to receive the medical image data from the real-time transfer engine. The converter engine comprises a decoder engine for extracting image pixel data from the medical image data and an encoding engine for converting the image pixel data to a browser-compatible format connected to receive the image pixel data. The image pixel data may be converted to a browser compatible format without loss of diagnostic data.
    • 公开了一种管理医疗信息的方法。 医疗图像数据在实时传输引擎的同时被病人被医学成像设备扫描的同时被接收。 然后,医疗图像数据在连接的转换器引擎上被转换为浏览器兼容的图像格式,以从实时传送引擎接收医学图像数据。 转换器引擎包括用于从医学图像数据提取图像像素数据的解码器引擎和用于将图像像素数据转换成连接以接收图像像素数据的浏览器兼容格式的编码引擎。 图像像素数据可以被转换成浏览器兼容格式而不丢失诊断数据。
    • 9. 发明申请
    • MR Imaging System for Discriminating Between Imaged Tissue Types
    • 用于鉴别成像组织类型的MR成像系统
    • US20120194186A1
    • 2012-08-02
    • US13298380
    • 2011-11-17
    • Wolfgang G. RehwaldEnn-Ling ChenRaymond J. Kim
    • Wolfgang G. RehwaldEnn-Ling ChenRaymond J. Kim
    • G01R33/34G01R33/50
    • G01R33/50G01R33/5602
    • A system provides B1- and B0-insensitive, blood flow and motion-robust T2-preparation and T2-preparation combined with inversion recovery. An MR imaging system discriminates between imaged tissue types based on transverse relaxation time (T2) or transverse relaxation time combined with longitudinal recovery time (T1). A signal generator generates a pulse sequence for T2 preparation or combined T2-preparation with inversion recovery comprising one or more B1 independent refocusing (BIREF-1) pulses for refocusing of magnetization of an anatomical region of interest being imaged, and different combinations of adiabatic or non-adiabatic tip-down and flip-back pulses. Multiple RF coils transmit RF pulses in response to the pulse sequence and acquire RF data in response to transmission of the RF pulses. A processing system processes the RF data to provide a display image indicating different tissue types with enhanced discrimination based on T2 relaxation time difference or combined T2 and T1 time difference.
    • 系统提供B1-和B0不敏感,血流和运动鲁棒T2准备和T2准备结合反演恢复。 MR成像系统基于横向弛豫时间(T2)或横向弛豫时间(纵向恢复时间(T1))来区分成像组织类型。 信号发生器产生用于T2准备的脉冲序列或具有包括一个或多个B1独立重聚焦(BIREF-1))脉冲以用于重新聚焦所成像的解剖学区域的磁化的反演恢复的组合T2制备,以及绝热或 非绝热的向下翻转和反向脉冲。 响应于脉冲序列,多个RF线圈传送RF脉冲并且响应于RF脉冲的传输而获取RF数据。 处理系统处理RF数据以提供基于T2弛豫时间差或组合的T2和T1时间差来指示具有增强鉴别的不同组织类型的显示图像。