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    • 1. 发明授权
    • System and method for detecting irregular bone defects during dental implant osseointegration process
    • 在牙种植体骨整合过程中检测不规则骨缺损的系统和方法
    • US08974389B2
    • 2015-03-10
    • US13354093
    • 2012-01-19
    • Min-Chun PanJian-Zhi Chen
    • Min-Chun PanJian-Zhi Chen
    • A61B8/08A61C19/04A61B5/00A61C8/00
    • A61B8/0875A61B5/4542A61C8/005A61C19/04
    • A system and a method for detecting irregular bone defects during dental implant osseointegration process. The system comprises a detecting abutment, an ultrasonic driver, a signal receiving and analyzing device. When dental detection is performed, the detecting abutment is disposed on a substrate holder of a dental implant. The ultrasonic driver configures the piezoelectric transducers disposed on the detecting abutment to produce ultrasonic wave and transmits the ultrasonic wave to the contact surface between the dental implant and the alveolus bone. The piezoelectric transducers can receive the reflected wave caused by the each portion of the contact surface reflecting the ultrasonic wave and transform the reflected wave into time domain voltage signal. The signal receiving and analyzing device receives the time domain voltage signal to determine the depth, the severity and the location of the irregular bone defects of the contact surface.
    • 一种用于在牙种植体骨整合过程中检测不规则骨缺损的系统和方法。 该系统包括检测基座,超声波驱动器,信号接收和分析装置。 当执行牙科检测时,检测基台设置在牙科植入物的基板保持器上。 超声波驱动器构造设置在检测基台上的压电换能器以产生超声波,并将超声波传送到牙种植体和牙槽骨之间的接触表面。 压电换能器可以接收由反射超声波的接触表面的每个部分引起的反射波,并将反射波转换成时域电压信号。 信号接收和分析装置接收时域电压信号,以确定接触表面的不规则骨缺陷的深度,严重性和位置。
    • 5. 发明申请
    • BIDIRECTIONAL OPTICAL SCANNER ASSISTING IN MAMMOGRAPHY
    • 双向光学扫描仪辅助摄影
    • US20120220862A1
    • 2012-08-30
    • US13351384
    • 2012-01-17
    • MIN-CHUN PANJHAO-MING YUHUNG-CHIH CHIANGMIN-CHENG PANCHUN-YU CHENLIANG-YU CHEN
    • MIN-CHUN PANJHAO-MING YUHUNG-CHIH CHIANGMIN-CHENG PANCHUN-YU CHENLIANG-YU CHEN
    • A61B6/00G01J1/04G01J5/00G01J1/00
    • A61B5/0091A61B5/0064
    • A bidirectional optical scanner assisting in mammography is revealed. The optical scanner that calculates functional images obtained by diffuse optical tomography, used in combination with a mammography machine can reduce the number of mammograms taken and the dose exposure. The bidirectional optical scanner includes a first compression plate, a first optical detection module, a second optical detection module and a second compression plate. The same test position of the tested breast can be detected twice in different directions by the first and the second optical detection modules. No matter where the tumor is located, the tumor can be detected. Besides structural images provided by the mammography machine, functional tomographic images of the breast are obtained by the bidirectional optical scanner. Thus diagnostic accuracy in the detection of breast cancer is improved.
    • 揭示了辅助乳房X光照相术的双向光学扫描仪。 计算通过与乳房摄影机组合使用的漫射光学层析成像获得的功能图像的光学扫描器可以减少所采取的乳房X线照片的数量和剂量暴露。 双向光学扫描器包括第一压缩板,第一光学检测模块,第二光学检测模块和第二压缩板。 通过第一和第二光学检测模块可以在不同的方向上检测被测乳房的相同测试位置两次。 无论肿瘤位于何处,都可以检测到肿瘤。 除了由乳房X线照相机提供的结构图像之外,通过双向光学扫描器获得乳房的功能断层图像。 因此,乳腺癌检测的诊断准确性得到改善。
    • 9. 发明申请
    • Adaptive Real-Time Analysis Method for Dynamic Signals Generated by Rotary Machines
    • 旋转机器产生的动态信号的自适应实时分析方法
    • US20090312979A1
    • 2009-12-17
    • US11969043
    • 2008-01-03
    • Min-Chun PANCheng-Xue WuCian-De Ye
    • Min-Chun PANCheng-Xue WuCian-De Ye
    • H02H7/08G06F19/00
    • G01R31/343
    • An adaptive real-time analysis method for dynamic signals generated by rotary machines improves Vold-Kalman filtering order tracing technology to renew the algorithm logic so that on-line computation ability is achieved. Through signal simulation and practical engineering application to verify the availability, it shows that the output results are extremely accurate. As such, this method is advantaged to estimate the time-domain waveform of specific order signals for the operation of the rotary machines and to interpret the related physical phenomena. Moreover, this method can be applied for a digital signal processor (DSP) to obtain real-time and on-line computation of the order signals needed to be traced and to display the tracing time-domain waveform instantly.
    • 由旋转机器生成的动态信号的自适应实时分析方法,改进了Vold-Kalman滤波顺序跟踪技术,更新了算法逻辑,从而实现了在线计算能力。 通过信号仿真和实际工程应用验证可用性,表明输出结果非常准确。 因此,该方法有利于估计用于旋转机器的操作的特定顺序信号的时域波形并解释相关的物理现象。 此外,该方法可以应用于数字信号处理器(DSP)以获得需要跟踪的顺序信号的实时和在线计算并且立即显示跟踪时域波形。
    • 10. 发明申请
    • System and Method for Detecting Irregular Bone Defects During Dental Implant Osseointegration Process
    • 在牙种植体组合过程中检测不规则骨缺损的系统和方法
    • US20130122458A1
    • 2013-05-16
    • US13354093
    • 2012-01-19
    • Min-Chun PanJian-Zhi Chen
    • Min-Chun PanJian-Zhi Chen
    • A61B8/08A61C19/04
    • A61B8/0875A61B5/4542A61C8/005A61C19/04
    • A system and a method for detecting irregular bone defects during dental implant osseointegration process. The system comprises a detecting abutment, an ultrasonic driver, a signal receiving and analyzing device. When dental detection is performed, the detecting abutment is disposed on a substrate holder of a dental implant. The ultrasonic driver configures the piezoelectric transducers disposed on the detecting abutment to produce ultrasonic wave and transmits the ultrasonic wave to the contact surface between the dental implant and the alveolus bone. The piezoelectric transducers can receive the reflected wave caused by the each portion of the contact surface reflecting the ultrasonic wave and transform the reflected wave into time domain voltage signal. The signal receiving and analyzing device receives the time domain voltage signal to determine the depth, the severity and the location of the irregular bone defects of the contact surface.
    • 一种用于在牙种植体骨整合过程中检测不规则骨缺损的系统和方法。 该系统包括检测基座,超声波驱动器,信号接收和分析装置。 当执行牙科检测时,检测基台设置在牙科植入物的基板保持器上。 超声波驱动器构造设置在检测基台上的压电换能器以产生超声波,并将超声波传送到牙种植体和牙槽骨之间的接触表面。 压电换能器可以接收由反射超声波的接触表面的每个部分引起的反射波,并将反射波转换成时域电压信号。 信号接收和分析装置接收时域电压信号,以确定接触表面的不规则骨缺陷的深度,严重性和位置。