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    • 6. 发明授权
    • Support device for administration of CPR
    • 支持CPR管理的设备
    • US08926538B2
    • 2015-01-06
    • US12171755
    • 2008-07-11
    • Corey CentenSarah Smith
    • Corey CentenSarah Smith
    • A61F5/00
    • A61F5/0118
    • A support device for assisting a wearer in the administration of cardiopulmonary resuscitation (CPR), the device comprising: a wearable support for strengthening at least one of the wearer's wrist, hand or forearm, the wearable support being adapted to circumscribe a majority of the circumference of the at least one of the wearer's wrist, hand or forearm; wherein the wearable support is adapted to be in close contact with the at least one of the wearer's wrist, hand or forearm, to provide support to the wearer through compression of the at least one of the wearer's wrist, hand or forearm.
    • 一种用于辅助佩戴者进行心肺复苏(CPR)的支撑装置,所述装置包括:用于加强佩戴者的手腕,手或前臂中的至少一个的可穿戴支撑件,所述可穿戴支撑件适于围绕所述圆周的大部分 所述佩戴者的手腕,手或前臂中的至少一个; 其中所述可穿戴支撑件适于与所述佩戴者的手腕,手或前臂中的至少一个紧密接触,以通过压迫所述佩戴者的手腕,手或前臂中的至少一个来为佩戴者提供支撑。
    • 7. 发明授权
    • External defibrillator with charge advisory algorithm
    • 外部除颤器带充电咨询算法
    • US08831719B2
    • 2014-09-09
    • US13032400
    • 2011-02-22
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • A61N1/39
    • A61N1/39A61N1/3931A61N1/3987A61N1/3993
    • An external defibrillator includes a therapy delivery circuit, a sensor, and a processor. The therapy delivery circuit is configured to be electrically charged and to deliver electrical therapy to a patient. The sensor is configured to sense a physiological condition of the patient and generate data indicative of a probability that therapy will be delivered to the patient. The processor is configured to analyze data generated by the sensor to determine whether there is a threshold level of the probability that the therapy delivery will be delivered to the patient, if the probability is at least at the threshold level, charge the therapy delivery circuit, and determine whether therapy delivery is advisable based on the physiological condition of the patient after determining whether the probability is at least at the threshold level.
    • 外部除颤器包括治疗输送电路,传感器和处理器。 治疗递送电路被配置为带电并且向患者递送电疗法。 该传感器被配置为感测患者的生理状态,并产生指示治疗将被递送给患者的概率的数据。 所述处理器被配置为分析由所述传感器产生的数据,以确定是否存在将所述治疗递送递送给所述患者的概率的阈值水平,如果所述概率至少为阈值水平,对所述治疗递送电路充电, 并且在确定概率是否至少在阈值水平之后,基于患者的生理状况确定治疗递送是否可取。
    • 8. 发明授权
    • Method for implementing limited policy and charging control and system thereof
    • 实施有限政策和收费控制的方法及其制度
    • US08817612B2
    • 2014-08-26
    • US13259957
    • 2009-09-09
    • Xiaoyun ZhouZaifeng Zong
    • Xiaoyun ZhouZaifeng Zong
    • H04L12/26H04W40/00H04W36/12H04W36/24
    • H04L12/14H04L12/1403H04L12/1407H04W4/24
    • The present invention provides a method and system for implementing limited policy and charging control. The method comprises a PCRF determining whether a visited network where a UE roams supports PCC, and sending a message containing an identifier indicating the limited policy and charging control deployment to an AF. After receiving the message containing the identifier, the AF performs no subscription of the event trigger and/or cancels the subscription of the event trigger based on the identifier. Using the method and system in accordance with the present invention, the AF can be notified more conveniently and accurately of the current policy and charging control deployment situation when the limited policy and charging control is implemented (i.e., when the visited network does not support the PCC). Moreover, the AF may perform the corresponding operations according to the current policy and charging control deployment situation, thereby saving system resources.
    • 本发明提供了一种用于实施有限策略和计费控制的方法和系统。 该方法包括:确定UE漫游的访问网络是否支持PCC的PCRF,以及向AF发送包含指示有限策略和计费控制部署的标识符的消息。 在接收到包含标识符的消息之后,AF不执行事件触发的订阅和/或基于标识符取消事件触发的订阅。 使用根据本发明的方法和系统,当实施有限的策略和计费控制时(即,当被访网络不支持时,可以更方便和准确地通知当前策略和计费控制部署情况) PCC)。 此外,AF可以根据当前的策略和计费控制部署情况进行相应的操作,从而节省系统资源。
    • 9. 发明授权
    • Vapor vortex heat sink
    • 蒸气涡流散热器
    • US08739540B2
    • 2014-06-03
    • US13155157
    • 2011-06-07
    • Wilmot H. McCutchenDavid J. McCutchen
    • Wilmot H. McCutchenDavid J. McCutchen
    • F01K25/00F01K7/00
    • F28D15/0266F01K25/08F28D15/0233F28D15/025F28D2015/0291F28F2250/08H01L23/427H01L2924/0002H01L2924/00
    • A hermetic Rankine cycle in a sealed casing powers an internal centrifugal condensate pump with an internal vapor turbine during forced convective heat transfer between a heat source and a heat sink. No work is imported into the cycle during operation. A centrifugal pumping disk shears the working fluid against a heating surface, sweeping evolving vapor into radial vortices which provide sink flow conduits to a vapor space at the center of the cylindrical turbine. Convective mass flow through the vapor space to the condensing end of the casing spins the turbine and the centrifugal pumping disk which is connected to it. Vapor is continuously swept from the heating surface, so bubbles do not form and superheat while blocking heat flux into liquid working fluid. Vapor is sucked through the radial vortices into the central vapor space and into the condensing end of the casing along the low pressure gradients in vortex cores established by cooling power. A high heat flux surface is thereby thermally connected to a conventional heat sink having high cooling power, for maximal heat extraction at data centers or other heat sources. Vapor vortices organize counterflow of vapor and condensate in a continuous mass flow cycle, and extract work from heat. Organic working fluids can be used in the casing to make even low temperature waste heat a power source.
    • 在热源和散热器之间的强制对流传热过程中,密封套管中的密封兰金循环为具有内部蒸汽涡轮机的内部离心冷凝泵供电。 在运行期间没有工作进入循环。 离心泵盘将工作流体剪切在加热表面上,将放出的蒸气扫入径向涡流,该涡流向圆柱形涡轮机中心的蒸汽空间提供汇流管道。 通过蒸汽空间的对流质量流动到壳体的冷凝端,使涡轮和与其连接的离心泵送盘旋转。 蒸气从加热表面连续地扫过,因此气泡不会形成和过热,同时阻止热通量进入液体工作流体。 蒸汽通过径向涡流被吸入中心蒸汽空间并沿着由冷却功率建立的涡流核心中的低压梯度进入壳体的冷凝端。 因此,高热通量表面热连接到具有高冷却功率的常规散热器,用于在数据中心或其他热源处的最大热提取。 蒸汽涡流在连续质量流动循环中组织蒸汽和冷凝物的逆流,并从热量中提取工作。 有机工作液可以用于外壳,使得低温余热加热电源。