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    • 2. 发明申请
    • METHOD AND SYSTEM FOR VESSEL AUTHENTICATION AND LOCATION VALIDATION
    • 用于船舶认证和位置验证的方法和系统
    • US20110316743A1
    • 2011-12-29
    • US12825701
    • 2010-06-29
    • Hyman D. Chantz
    • Hyman D. Chantz
    • H04B7/26G01S3/02G06F17/30
    • G01S5/04G01S5/06G06F17/30241
    • A method of and system for vessel authentication and location validation. The method includes detecting a radio transmission from a target vessel in a vessel control area; determining a time and date of the radio transmission; generating a triangulated geographical location of the radio transmission; extracting a maritime mobile service identity from the radio transmission; extracting from the radio transmission a frequency, a power level and a waveform of the radio transmission; and authenticating or not authenticating the target vessel based on the triangulated geographical location and one or more of the frequency of the radio transmission, the power level of the radio transmission and the waveform of the radio transmission.
    • 船舶认证和位置验证的方法和系统。 该方法包括检测来自容器控制区域中的目标血管的无线电传输; 确定无线电传输的时间和日期; 生成无线电传输的三角测量地理位置; 从无线电传输中提取水上移动业务标识; 从无线电传输中提取无线电传输的频率,功率电平和波形; 基于三角测量地理位置和无线电传输的频率,无线电传输的功率电平和无线电传输的波形中的一个或多个认证或不认证目标船。
    • 3. 发明申请
    • IMPLANTABLE OR INSERTABLE NUCLEAR MAGNETIC RESONANT IMAGING SYSTEM
    • 可插入或不可插入的核磁共振成像系统
    • US20120223708A1
    • 2012-09-06
    • US13469681
    • 2012-05-11
    • Hyman D. CHANTZ
    • Hyman D. CHANTZ
    • G01R33/54
    • G01R33/3808G01R33/3804G01R33/58
    • Nuclear Magnetic Resonant Imaging (also called Magnetic Resonant Imaging or “MRI”) devices which are implantable, internal or insertable are provided. The disclosure describes ways to miniaturize, simplify, calibrate, cool, and increase the utility of MRI systems for structural investigative purposes, and for biological investigation and potential treatment. It teaches use of target objects of fixed size, shape and position for calibration and comparison to obtain accurate images. It further teaches cooling of objects under test by electrically conductive leads or electrically isolated leads; varying the magnetic field of the probe to move chemicals or ferrous metallic objects within the subject. The invention also teaches comparison of objects using review of the frequency components of a received signal rather than by a pictorial representation.
    • 提供可植入,内部或可插入的核磁共振成像(也称为磁共振成像或“MRI”)装置。 本公开描述了用于结构调查目的的MRI系统的小型化,简化,校准,冷却和增加效用以及用于生物学调查和潜在治疗的方法。 它教导使用固定大小,形状和位置的目标对象进行校准和比较,以获得准确的图像。 它进一步教导通过导电引线或电隔离引线冷却待测物体; 改变探针的磁场以移动受试者内的化学物质或黑色金属物体。 本发明还教导了使用对接收信号的频率分量的检查而不是图形表示的对象的比较。
    • 4. 发明授权
    • Method and system for comparing micro-electronic devices using magnetic resonance imaging
    • 使用磁共振成像比较微电子器件的方法和系统
    • US07671591B2
    • 2010-03-02
    • US12173974
    • 2008-07-16
    • Hyman D. Chantz
    • Hyman D. Chantz
    • G01V3/00
    • G01N24/08G01N24/085
    • A method of comparing micro-electronic devices. The method includes: placing a first micro-electronic device in a sample chamber of a magnetic resonance imaging machine, subjecting the first micro-electronic device to a magnetic field and a radio frequency pulse, turning off or adjusting the magnetic field and detecting a first returned RF pulse from the first micro-electronic device and storing first data relating to the first returned RF pulse; placing a second micro-electronic device in the sample chamber, subjecting the second micro-electronic device to the magnetic field and the radio frequency pulse, turning off or adjusting the magnetic field and detecting a second returned RF pulse from the second micro-electronic device and storing second data relating to the second returned RF pulse; and comparing the first data to the second data and determining if the second micro-electronic device is essentially identical to the first micro-electronic device based on the comparing.
    • 一种比较微电子器件的方法。 该方法包括:将第一微电子器件放置在磁共振成像机的样品室中,对第一微电子器件进行磁场和射频脉冲,关闭或调整磁场并检测第一微电子器件的第一 从第一微电子设备返回RF脉冲并存储与第一返回的RF脉冲有关的第一数据; 将第二微电子器件放置在样品室中,使第二微电子器件受到磁场和射频脉冲的影响,关闭或调节磁场并检测来自第二微电子器件的第二返回的RF脉冲 并存储与第二返回的RF脉冲有关的第二数据; 以及将所述第一数据与所述第二数据进行比较,并基于所述比较确定所述第二微电子设备是否与所述第一微电子设备基本相同。
    • 5. 发明申请
    • SUPPORT DEVICE AND PALPATION DEVICE AND METHODS OF USE
    • 支持装置和制动装置及其使用方法
    • US20090182247A1
    • 2009-07-16
    • US12014842
    • 2008-01-16
    • Hyman D. Chantz
    • Hyman D. Chantz
    • A61B5/103
    • A61B5/1116A61B5/0053A61B5/1126A61B5/117A61B5/442A61B5/6801A61B5/6814A61B5/6828A61B5/6887A61B5/704A61B5/72
    • Methods and a palpation device. A subject pose determining method includes placing a subject onto a surface of a platform having a first radio-frequency transceiver and a second radio-frequency transceiver. The subject is a human being. A first radio-frequency transponder is placed onto an upper extremity of the subject. A second radio-frequency transponder is placed onto a lower extremity of the subject. A first signal is transmitted from the first transceiver to the first transponder, resulting in the first transponder sending a second signal. A third signal is transmitted from the second transceiver to the second transponder, resulting in the second transponder sending a fourth signal. The second signal is received by the first transceiver. The fourth signal is received by the second transceiver. A pose of the subject is determined based on receiving the second signal and the fourth signal. A palpation device and method are also included.
    • 方法和触诊装置。 被摄体姿势确定方法包括将被摄体放置在具有第一射频收发器和第二射频收发器的平台的表面上。 这个问题是一个人类。 将第一个射频应答器放置在受试者的上肢上。 将第二个射频应答器放置在受试者的下肢上。 第一信号从第一收发器发送到第一应答器,导致第一应答器发送第二信号。 第三信号从第二收发器发送到第二应答器,导致第二应答器发送第四信号。 第二信号由第一收发器接收。 第四信号由第二收发器接收。 基于接收第二信号和第四信号来确定被摄体的姿态。 还包括触诊装置和方法。
    • 6. 发明授权
    • Implantable or insertable nuclear magnetic resonant imaging system
    • 可植入或插入的核磁共振成像系统
    • US09268002B2
    • 2016-02-23
    • US13469671
    • 2012-05-11
    • Hyman D. Chantz
    • Hyman D. Chantz
    • G01V3/00G01R33/38G01R33/58
    • G01R33/3808G01R33/3804G01R33/58
    • Nuclear Magnetic Resonant Imaging (also called Magnetic Resonant Imaging or “MRI”) devices which are implantable, internal or insertable are provided. The disclosure describes ways to miniaturize, simplify, calibrate, cool, and increase the utility of MRI systems for structural investigative purposes, and for biological investigation and potential treatment. It teaches use of target objects of fixed size, shape and position for calibration and comparison to obtain accurate images. It further teaches cooling of objects under test by electrically conductive leads or electrically isolated leads; varying the magnetic field of the probe to move chemicals or ferrous metallic objects within the subject. The invention also teaches comparison of objects using review of the frequency components of a received signal rather than by a pictorial representation.
    • 提供可植入,内部或可插入的核磁共振成像(也称为磁共振成像或“MRI”)装置。 本公开描述了用于结构调查目的的MRI系统的小型化,简化,校准,冷却和增加效用以及用于生物学调查和潜在治疗的方法。 它教导使用固定大小,形状和位置的目标对象进行校准和比较,以获得准确的图像。 它进一步教导通过导电引线或电隔离引线冷却待测物体; 改变探针的磁场以移动受试者内的化学物质或黑色金属物体。 本发明还教导了使用对接收信号的频率分量的检查而不是图形表示的对象的比较。
    • 7. 发明授权
    • Method and system for vessel authentication and location validation
    • 船舶认证和位置验证的方法和系统
    • US08576123B2
    • 2013-11-05
    • US12825701
    • 2010-06-29
    • Hyman D. Chantz
    • Hyman D. Chantz
    • G01S5/04
    • G01S5/04G01S5/06G06F17/30241
    • A method of and system for vessel authentication and location validation. The method includes detecting a radio transmission from a target vessel in a vessel control area; determining a time and date of the radio transmission; generating a triangulated geographical location of the radio transmission; extracting a maritime mobile service identity from the radio transmission; extracting from the radio transmission a frequency, a power level and a waveform of the radio transmission; and authenticating or not authenticating the target vessel based on the triangulated geographical location and one or more of the frequency of the radio transmission, the power level of the radio transmission and the waveform of the radio transmission.
    • 船舶认证和位置验证的方法和系统。 该方法包括检测来自容器控制区域中的目标血管的无线电传输; 确定无线电传输的时间和日期; 生成无线电传输的三角测量地理位置; 从无线电传输中提取水上移动业务标识; 从无线电传输中提取无线电传输的频率,功率电平和波形; 基于三角测量地理位置和无线电传输的频率,无线电传输的功率电平和无线电传输的波形中的一个或多个认证或不认证目标船。
    • 8. 发明授权
    • Balanced and shortened antennas
    • 平衡和缩短的天线
    • US07538743B1
    • 2009-05-26
    • US11940391
    • 2007-11-15
    • Hyman D. Chantz
    • Hyman D. Chantz
    • H01Q1/36
    • H01Q1/36H01Q9/16H01Q9/27
    • An antenna for radiating and/or receiving signals. The antenna includes (i) a first hollow and helical pipe, (ii) a second hollow and helical pipe, (iii) a first transmission wire, (iv) a second transmission wire, and (v) a dielectric connector. The dielectric connector physically couples to the first hollow and helical pipe and the second hollow and helical pipe. The first hollow and helical pipe and the second hollow and helical pipe comprise an electrically conductive material. The first transmission wire comprises a first portion and a second portion. The second transmission wire comprises a third portion and a fourth portion. The first portion of the first transmission wire and the third portion of the second transmission wire are inside the first hollow and helical pipe.
    • 用于辐射和/或接收信号的天线。 天线包括(i)第一中空螺旋管,(ii)第二中空螺旋管,(iii)第一传输线,(iv)第二传输线,和(v)电介质连接器。 电介质连接器物理耦合到第一中空螺旋管和第二中空螺旋管。 第一中空螺旋管和第二中空螺旋管和第二中空螺旋管包括导电材料。 第一传输线包括第一部分和第二部分。 第二传输线包括第三部分和第四部分。 第一传输线的第一部分和第二传输线的第三部分在第一中空螺旋管内。
    • 10. 发明授权
    • Implantable or insertable nuclear magnetic resonant imaging system
    • 可植入或插入的核磁共振成像系统
    • US08405396B2
    • 2013-03-26
    • US12570611
    • 2009-09-30
    • Hyman D. Chantz
    • Hyman D. Chantz
    • G01V3/00
    • G01R33/3808G01R33/3804G01R33/58
    • Nuclear Magnetic Resonant Imaging (also called Magnetic Resonant Imaging or “MRI”) devices which are implantable, internal or insertable are provided. The disclosure describes ways to miniaturize, simplify, calibrate, cool, and increase the utility of MRI systems for structural investigative purposes, and for biological investigation and potential treatment. It teaches use of target objects of fixed size, shape and position for calibration and comparison to obtain accurate images. It further teaches cooling of objects under test by electrically conductive leads or electrically isolated leads; varying the magnetic field of the probe to move chemicals or ferrous metallic objects within the subject. The invention also teaches comparison of objects using review of the frequency components of a received signal rather than by a pictorial representation.
    • 提供可植入,内部或可插入的核磁共振成像(也称为磁共振成像或MRI)装置。 本公开描述了用于结构调查目的的MRI系统的小型化,简化,校准,冷却和增加效用以及用于生物学调查和潜在治疗的方法。 它教导使用固定大小,形状和位置的目标对象进行校准和比较,以获得准确的图像。 它进一步教导通过导电引线或电隔离引线冷却待测物体; 改变探针的磁场以移动受试者内的化学物质或黑色金属物体。 本发明还教导了使用对接收信号的频率分量的检查而不是图形表示的对象的比较。