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    • 23. 发明授权
    • System and method for automated medical diagnostic interpretation and report generation
    • 用于自动医学诊断解释和报告生成的系统和方法
    • US08295576B2
    • 2012-10-23
    • US11990190
    • 2006-08-09
    • Gopal GadodiaShashin DesaiAnil Patel
    • Gopal GadodiaShashin DesaiAnil Patel
    • G06K9/00
    • G16H15/00G06F19/00
    • Automated medical diagnostic interpretation and report generation for a non-invasive medical diagnostic test, such as an echo cardiogram, is provided. Various dimension measurements and physiological measurements from an echo cardiogram machine are transferred automatically to a computer over an echo cardiogram machine interface. The dimensions and physiological measurements are automatically interpreted by an intelligent interpretation engine running on a computer, generating various machine evaluations. The physician can approve the machine evaluations, overrule them, or make appropriate adjustments. Upon completion of the physician's review, the physician approved interpretations become diagnostic conclusions, and the report containing the results of the physician's review is generated by the report generation engine.
    • 提供自动医疗诊断解释和报告生成用于非侵入性医疗诊断测试,如回波心电图。 来自回波心电图仪的各种尺寸测量和生理测量通过回波心电图机接口自动传输到计算机。 尺寸和生理测量由在计算机上运行的智能解释引擎自动解释,产生各种机器评估。 医生可以批准机器评估,推翻机器或进行适当的调整。 在医生审查完成后,医师批准的解释成为诊断结论,包含医师审查结果的报告由报告生成引擎生成。
    • 26. 发明申请
    • LARYNGOSCOPE
    • 喉镜
    • US20120190929A1
    • 2012-07-26
    • US13392627
    • 2010-08-12
    • Anil PatelPeter YoungMarko Plevnik
    • Anil PatelPeter YoungMarko Plevnik
    • A61B1/045A61B1/267A61B1/05
    • A61B1/05A61B1/00096A61B1/00183A61B1/045A61B1/267
    • A laryngoscope comprising a handle, a blade holding element, a detachable blade, means for viewing the laryngeal inlet of a patient and means for adjusting the viewing field. The means for adjusting the viewing field may comprise a light refracting means. Alternatively, in embodiments in which the viewing means comprises at least two fixed cameras elements directed to at least two different viewing fields, the means for adjusting the viewing field may comprise means for switching from one camera to the other or, in embodiments in which the viewing means comprises a movable camera element, the means for adjusting the viewing field may comprise mechanical or electronic means for controlling the movement of the camera. A method for viewing the laryngeal inlet of a patient using a laryngoscope comprising the step of adjusting the viewing field is also covered.
    • 一种喉镜,包括手柄,刀片保持元件,可拆卸刀片,用于观察患者的喉入口的装置和用于调整视野的装置。 用于调整视野的装置可以包括光折射装置。 或者,在其中观看装置包括指向至少两个不同视野的至少两个固定照相机元件的实施例中,用于调整视野的装置可以包括用于从一个照相机切换到另一个的装置,或者在其中 观察装置包括可移动相机元件,用于调节视野的装置可以包括用于控制相机运动的机械或电子装置。 还包括用于使用喉镜观察患者的喉入口的方法,其包括调整视野的步骤。
    • 27. 发明申请
    • System and Method for Automated Medical Diagnostic Interpretation and Report Generation
    • 自动医学诊断解释和报告生成的系统和方法
    • US20090171225A1
    • 2009-07-02
    • US11990190
    • 2006-08-09
    • Gopal GadodiaShashin DesaiAnil Patel
    • Gopal GadodiaShashin DesaiAnil Patel
    • A61B5/02
    • G16H15/00G06F19/00
    • Automated medical diagnostic interpretation and report generation for a non-invasive medical diagnostic test, such as an echo cardiogram, is provided. Various dimension measurements and physiological measurements from an echo cardiogram machine are transferred automatically to a computer over an echo cardiogram machine interface. The dimensions and physiological measurements are automatically interpreted by an intelligent interpretation engine running on a computer, generating various machine evaluations. The physician can approve the machine evaluations, overrule them, or make appropriate adjustments. Upon completion of the physician's review, the physician approved interpretations become diagnostic conclusions, and the report containing the results of the physician's review is generated by the report generation engine.
    • 提供自动医疗诊断解释和报告生成用于非侵入性医疗诊断测试,如回波心电图。 来自回波心电图仪的各种尺寸测量和生理测量通过回波心电图机接口自动传输到计算机。 尺寸和生理测量由在计算机上运行的智能解释引擎自动解释,产生各种机器评估。 医生可以批准机器评估,推翻机器或进行适当的调整。 在医生审查完成后,医师批准的解释成为诊断结论,包含医师审查结果的报告由报告生成引擎生成。
    • 28. 发明授权
    • Method of manufacturing perovskite lead scandium tantalate
    • 制备PEROVSKITE LEAD SCANDIUM TANTALATE的方法
    • US5076901A
    • 1991-12-31
    • US438454
    • 1990-01-18
    • Roger W. WhatmoreMartin T. GooseyLaurence ConsidineAnil Patel
    • Roger W. WhatmoreMartin T. GooseyLaurence ConsidineAnil Patel
    • C01G35/00C04B35/497C23C16/40
    • C23C16/409C01G35/006C04B35/497C01P2002/34C01P2002/72C01P2004/80
    • A method is described of manufacturing perovskite lead scandium tantalate comprising the pre-reaction of scandium and tantalum oxides at temperatures between 1000.degree. C. and 1400.degree. C. to form scandium tantalate. The scandium tantalate is then reacted with lead oxide to form the desired perovskite phase lead scandium tantalate. In one embodiment there is described a method for the deposition of perovskite lead scandium tantalate films from metal organic precusors. The availability of metal organic precursors allows the deposition of thin films directly from solution or by MOCVD techniques. One particular material, lead scandium tantalate Pb(Sc.sub.0.5 Ta.sub.0.5)O.sub.3, is described. The principal features of the invention are the deposition of scandium and tantalum components from solution or by MOCVD onto the required substrate. These are then prereacted to yield scandium tantalate. A lead containing film or vapor is then reacted with the scandium tantalate to form the perovskite phase lead scandium tantalate.
    • PCT No.PCT / GB89 / 00395 Sec。 371 1990年1月18日第 102(e)1990年1月18日PCT PCT 1989年4月17日提交PCT公布。 出版物WO89 / 10335 日期为1989年11月2日。描述了一种制造钙钛矿铅钪钽酸盐的方法,其包括在1000℃至1400℃之间的钪和钽氧化物的预反应以形成钽酸钪。 然后将钽酸钪与氧化铅反应形成所需的钙钛矿相铅钪钽酸盐。 在一个实施方案中,描述了一种用于从金属有机前体物质沉积钙钛矿铅钪钽酸盐膜的方法。 金属有机前体的可用性允许直接从溶液或通过MOCVD技术沉积薄膜。 描述了一种特殊的材料,铅钪钽酸盐(Sc0.5Ta0.5)O3。 本发明的主要特征是将钪和钽组分从溶液或通过MOCVD沉积到所需的基底上。 然后将它们预先反应以产生钽酸钪。 然后使含铅的膜或蒸气与钽酸钪反应形成钙钛矿相铅钪钽酸盐。
    • 29. 发明申请
    • Method of operating a WLAN mobile station
    • 操作WLAN移动台的方法
    • US20060146769A1
    • 2006-07-06
    • US11027425
    • 2004-12-31
    • Anil PatelSuhas MitraCarlos Rivera-CintronBrian Smith
    • Anil PatelSuhas MitraCarlos Rivera-CintronBrian Smith
    • H04Q7/24
    • H04W52/0229H04W84/12H04W88/02Y02D70/142Y02D70/23
    • A wireless local area network (WLAN) mobile station (110, 112, 114) has an application processor core (204) and a WLAN processor (202). So as to conserve energy, when the two processors are not needed, they are both placed in a minimal power consumption mode. The WLAN processor operates a WLAN radio and receives beacon transmissions from an access point (120). Upon extracting the beacon data from a received beacon signal, the WLAN processor passes the beacon data to the application processor. To ensure receipt of the beacon data, the WLAN processor remains active until the application processor acknowledges receipt of the beacon data before transitioning back to a sleep mode. To prevent keeping the WLAN processor waiting longer than necessary, the application processor wakes up ahead of the beacon receipt time, in time to allow transition to an awake mode so that it is active by the time the WLAN processor passes the beacon data.
    • 无线局域网(WLAN)移动站(110,112,114)具有应用处理器核心(204)和WLAN处理器(202)。 为了节省能源,当不需要两个处理器时,它们都被放置在最小的功耗模式中。 WLAN处理器操作WLAN无线电并从接入点(120)接收信标传输。 在从接收的信标信号中提取信标数据之后,WLAN处理器将信标数据传送到应用处理器。 为了确保信标数据的接收,WLAN处理器保持有效,直到应用处理器在转换回睡眠模式之前确认信标数据的接收。 为了防止WLAN处理器等待更长时间,应用处理器在时间之前唤醒信标接收时间,以允许转换到唤醒模式,使其在WLAN处理器通过信标数据时处于活动状态。
    • 30. 发明授权
    • System and method for frequency management in a communication device having a positioning device
    • 具有定位装置的通信装置中的频率管理系统和方法
    • US06741842B2
    • 2004-05-25
    • US10259651
    • 2002-09-30
    • Mark A. GoldbergJose KornelukAtif MerajAnil PatelKristi Annette Haverkamp
    • Mark A. GoldbergJose KornelukAtif MerajAnil PatelKristi Annette Haverkamp
    • H04B118
    • G01S19/235H04B1/3805
    • A frequency management scheme for a hybrid cellular/GPS or other device generates a local clock signal for the communications portion of the device, using a crystal oscillator or other part. The oscillator output may be corrected by way of an automatic frequency control (AFC) circuit or software, to drive the frequency of that clock signal to a higher accuracy. Besides being delivered to the cellular or other communications portion of the hybrid device, the compensated clock signal may also be delivered to a comparator to measure the offset between the cellular oscillator and the GPS oscillator. The error in the cellular oscillator may be measured from the AFC operation in the cellular portion of the device. An undershoot or overshoot in the delta between the two oscillators may thus be deduced to be due to bias in the GPS oscillator, whose value may then be determined. That value may then be used to adjust Doppler search, bandwidth or other GPS receiver characteristics to achieve better time to first fix or other performance characteristics.
    • 用于混合蜂窝/ GPS或其他设备的频率管理方案使用晶体振荡器或其他部分为设备的通信部分生成本地时钟信号。 可以通过自动频率控制(AFC)电路或软件校正振荡器输出,以便将该时钟信号的频率驱动到更高的精度。 除了传送到混合设备的蜂窝或其他通信部分之外,补偿的时钟信号还可以被传送到比较器以测量蜂窝振荡器和GPS振荡器之间的偏移。 可以从设备的蜂窝部分中的AFC操作来测量蜂窝振荡器中的误差。 因此,两个振荡器之间的三角形中的下冲或过冲可能被推断为由于GPS振荡器中的偏置,其可以确定其值。 然后该值可用于调整多普勒搜索,带宽或其他GPS接收机特性,以获得更好的时间来首次固定或其他性能特征。