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    • 62. 发明授权
    • Automatic alignment of magnetic resonance imaging (MRI) brain scan by anatomic landmarks
    • 通过解剖学标记自动对准磁共振成像(MRI)脑扫描
    • US08190232B2
    • 2012-05-29
    • US12165830
    • 2008-07-01
    • Li ZhangCarol L. NovakQing XuChong Chen
    • Li ZhangCarol L. NovakQing XuChong Chen
    • A61B5/05
    • A61B5/055A61B5/417A61B5/4504
    • A method to automatically align magnetic resonance (MR) brain scans for diagnostic scan planning, including: acquiring a three-dimensional (3D) localizer image of a patient; selecting a two-dimensional (2D) coronal view and a 2D transverse view from the localizer image; identifying a mid-sagittal plane (MSP) line in each of the coronal and transverse views and calculating a 3D MSP based on the MSP lines; reconstructing the localizer image based on an equation for the 3D MSP to obtain an image of the MSP of the patient's brain; identifying crista galli (CG) and tip of the occipital bone (TOB) in the image of the MSP of the patient's brain; calculating a transformation matrix based on the MSP, CG and TOB in the image and using the transformation matrix to obtain a scan plan for the patient; and outputting the scan plan for the patient.
    • 一种用于自动对准用于诊断扫描计划的磁共振(MR)脑扫描的方法,包括:获取患者的三维(3D)定位器图像; 从定位器图像中选择二维(2D)冠状视图和2D横向视图; 识别每个冠状和横向视图中的中矢状面(MSP)线,并基于MSP线计算3D MSP; 基于3D MSP的等式重建定位器图像以获得患者脑的MSP的图像; 在患者大脑的MSP图像中识别嵴(CG)和枕骨顶端(TOB); 基于图像中的MSP,CG和TOB计算变换矩阵,并使用变换矩阵获得患者的扫描方案; 并输出病人的扫描方案。
    • 67. 发明申请
    • IGNITION CONTROL APPARATUS USED IN ELECTRONIC BALLAST AND METHOD THEREOF
    • 用于电子镇流器的点火控制装置及其方法
    • US20120001565A1
    • 2012-01-05
    • US13088251
    • 2011-04-15
    • Jin HuQing XuQuansong Wu
    • Jin HuQing XuQuansong Wu
    • H05B41/16
    • H05B41/2887H05B41/2882H05B41/388
    • The present invention is generally related to an electronic ballast, an ignition control apparatus used therein and associated method of operation. In one embodiment, an electronic ballast comprising an inverter and an ignition control apparatus which comprises a stability monitoring circuit and a controlled ignition circuit. The inverter converts a DC input voltage into an AC voltage to drive a gas discharge lamp. The stability monitoring circuit monitors whether the DC input voltage is stable. The controlled ignition circuit is electrically coupled to the stability monitoring circuit and the lamp, ignites the lamp based on the monitoring result. The controlled ignition circuit does not ignite the gas discharge lamp until the DC input voltage becomes stable.
    • 本发明通常涉及电子镇流器,其中使用的点火控制装置和相关的操作方法。 在一个实施例中,一种电子镇流器包括逆变器和点火控制装置,其包括稳定性监视电路和受控点火电路。 逆变器将直流输入电压转换为交流电压以驱动气体放电灯。 稳定监视电路监视直流输入电压是否稳定。 受控点火电路电耦合到稳定性监测电路和灯,基于监测结果点燃灯。 直流输入电压稳定后,控制点火电​​路不会点燃气体放电灯。
    • 69. 发明申请
    • System and Method for Magnetic Resonance Brain Scan Planning
    • 磁共振脑扫描规划系统与方法
    • US20080071163A1
    • 2008-03-20
    • US11856104
    • 2007-09-17
    • Li ZhangCarol NovaxHong ChenQing Xu
    • Li ZhangCarol NovaxHong ChenQing Xu
    • A61B5/055
    • A61B5/055A61B5/0037A61B5/6814G01R33/4833
    • A method and system for automatic MR brain scan planning is disclosed. The method utilizes a set of 2D orthogonal localizer images to determine scanning planes for 3D diagnostic MR scans. A location of the mid-sagittal plane (MSP) is detected in each of a transversal localizer image and a coronal localizer image. A sagittal scanning plane is determined based on the location of the MSP in the transversal and coronal localizer images. A diagnostic sagittal MR scan is then acquired based on the sagittal scanning plane. The corpus callosum CC is segmented in a sagittal MR image slice resulting from the diagnostic sagittal MR scan. A transversal scanning plane can be determined based on a location of the CC in the sagittal MR image slice and the location of the MSP in the coronal localizer image, and a coronal scanning plane can be determined based on the location of the CC in the sagittal MR image slice and the location of the MSP in the transversal localizer image.
    • 公开了用于自动MR脑扫描计划的方法和系统。 该方法利用一组2D正交定位图像来确定3D诊断MR扫描的扫描平面。 在横向定位器图像和冠状定位器图像中的每一个中检测到中间矢状面(MSP)的位置。 基于MSP在横向和冠状定位器图像中的位置来确定矢状扫描平面。 然后基于矢状扫描平面获取诊断矢状MR扫描。 胼um体CC被分割成由诊断矢状MR扫描得到的矢状MR图像切片。 可以基于矢状位MR图像切片中的CC的位置和冠状位置定位器图像中的MSP的位置来确定横向扫描平面,并且可以基于CC在矢状位置中的位置来确定冠状扫描平面 MR图像切片和MSP在横向定位器图像中的位置。