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    • 4. 发明授权
    • Peritoneal dialysis system having heater pan and weight sensor
    • 腹膜透析系统具有加热锅和重量传感器
    • US08597231B2
    • 2013-12-03
    • US13550243
    • 2012-07-16
    • Robert ChildersScott KeelingLi Pan
    • Robert ChildersScott KeelingLi Pan
    • A61M1/00
    • A61M1/281A61M1/0023A61M1/1643A61M1/28A61M1/282A61M1/288A61M2205/12
    • A peritoneal dialysis machine includes: (i) a housing; (ii) an actuator carried by the housing so as to be able to interact with a peritoneal dialysis fluid carrying disposable; (iii) at least one heating element carried by the housing; (iv) a heater pan providing an upper surface of the housing, the heater pan cooperating with the at least one heater element to provide heat to a container of peritoneal dialysis fluid placed onto the heater pan, the container being part of or in communication with the peritoneal dialysis fluid carrying disposable; and (iv) a weight sensor cooperating with the heater pan to sense the weight of the peritoneal dialysis fluid located within the container.
    • 腹膜透析机包括:(i)外壳; (ii)由壳体承载的致动器,以能够与携带一次性的腹膜透析液相互作用; (iii)由壳体承载的至少一个加热元件; (iv)提供所述壳体的上表面的加热器盘,所述加热器盘与所述至少一个加热器元件配合以向放置在所述加热器盘上的腹膜透析液体的容器提供热量,所述容器是与所述加热器的一部分或与其连通的 腹膜透析液携带一次性; 和(iv)与加热器盘配合的重量传感器,以感测位于容器内的腹膜透析液的重量。
    • 5. 发明授权
    • Power saving control system for negative pressure wound therapy pumps
    • 负压伤口治疗泵节能控制系统
    • US08858517B2
    • 2014-10-14
    • US13584429
    • 2012-08-13
    • Li PanJiang LiHuiyong Lin
    • Li PanJiang LiHuiyong Lin
    • A61M1/00
    • A61M1/0088A61M1/0037A61M2205/18A61M2205/215A61M2205/3382A61M2205/50A61M2205/8206A61M2205/8212
    • An operating system for a medical device pump has a microprocessor controlling the operation of the pump features in a manner to minimize power consumption and maximize the life of the batteries powering the pump. The microprocessor associated with the medical device pump includes a modulation circuit that operates the pump on an intermittent basis and only when a pressure sensor indicates that the pressure asserted by the pump is at a threshold level. The operation of other sensors are powered only in situations when information from the sensor is needed, while other more essential sensors are operated on an intermittent basis by the modulation circuit. A fill sensor is operated intermittently, while a tilt sensor is only activated when a signal is received from the fill sensor. An optical sensor is only activated when the canister is removed from the pump housing, during which the pump is de-powered.
    • 用于医疗装置泵的操作系统具有微处理器,其以使功率消耗最小化并且为泵供电的电池的寿命最大化的方式来控制泵特征的操作。 与医疗器械泵相关联的微处理器包括调节电路,其在间歇的基础上操作泵,并且仅当压力传感器指示由泵确定的压力处于阈值水平时。 其他传感器的操作仅在需要来自传感器的信息的情况下供电,而其他更重要的传感器由调制电路以间歇的方式操作。 填充传感器间歇地操作,而仅当从填充传感器接收到信号时才激活倾斜传感器。 只有当泵从泵壳体中取出时,光学传感器才被激活,在此期间泵被取消供电。
    • 7. 发明授权
    • Automated peritoneal dialysis cycler and methods of use
    • 自动腹膜透析循环仪及其使用方法
    • US08597229B2
    • 2013-12-03
    • US12973673
    • 2010-12-20
    • Li Pan
    • Li Pan
    • A61M1/00
    • A61M1/28A61M1/1643A61M1/166A61M1/281A61M1/282A61M2205/3393G01B13/00
    • Automated peritoneal dialysis (APD) cycler systems and methods are disclosed. The APD cycler can include a heater tray with load cells configured to measure the weight of fluid contained within a heater bag and/or a drain bag. The load cells can be toggleable between enabled and disabled configurations. The APD cycler can include a pressure-based volume measurement system, which can be used to confirm measurements made by the load cells. In some embodiments, the APD cycler can have algorithms for tracking an estimated patient volume to prevent overfilling the patient.
    • 自动腹膜透析(APD)循环仪系统和方法被公开。 APD循环仪可以包括加热器托盘,负载单元被配置成测量加热器袋和/或排放袋中包含的流体的重量。 称重传感器可以在启用和禁用的配置之间切换。 APD循环仪可以包括基于压力的体积测量系统,其可以用于确认由称重传感器进行的测量。 在一些实施例中,APD循环仪可以具有用于跟踪估计的患者体积以防止患者过度填充的算法。
    • 8. 发明申请
    • Power Saving Control System for Negative Pressure Wound Therapy Pumps
    • 负压伤口治疗泵节能控制系统
    • US20130267917A1
    • 2013-10-10
    • US13584429
    • 2012-08-13
    • Li PanJiang LiHuiyong Lin
    • Li PanJiang LiHuiyong Lin
    • A61M1/00
    • A61M1/0088A61M1/0037A61M2205/18A61M2205/215A61M2205/3382A61M2205/50A61M2205/8206A61M2205/8212
    • An operating system for a medical device pump has a microprocessor controlling the operation of the pump features in a manner to minimize power consumption and maximize the life of the batteries powering the pump. The microprocessor associated with the medical device pump includes a modulation circuit that operates the pump on an intermittent basis and only when a pressure sensor indicates that the pressure asserted by the pump is at a threshold level. The operation of other sensors are powered only in situations when information from the sensor is needed, while other more essential sensors are operated on an intermittent basis by the modulation circuit. A fill sensor is operated intermittently, while a tilt sensor is only activated when a signal is received from the fill sensor. An optical sensor is only activated when the canister is removed from the pump housing, during which the pump is de-powered.
    • 用于医疗装置泵的操作系统具有微处理器,其以使功率消耗最小化并且为泵供电的电池的寿命最大化的方式来控制泵特征的操作。 与医疗器械泵相关联的微处理器包括调节电路,其在间歇的基础上操作泵,并且仅当压力传感器指示由泵确定的压力处于阈值水平时。 其他传感器的操作仅在需要来自传感器的信息的情况下供电,而其他更重要的传感器由调制电路以间歇的方式操作。 填充传感器间歇地操作,而仅当从填充传感器接收到信号时才激活倾斜传感器。 只有当泵从泵壳体中取出时,光学传感器才被激活,在此期间泵被取消供电。
    • 9. 发明申请
    • MCP Scheduling For Parallelization Of LAD/FBD Control Program In Multi-Core PLC
    • 用于多核PLC中LAD / FBD控制程序并行化的MCP调度
    • US20130218299A1
    • 2013-08-22
    • US13820702
    • 2010-09-09
    • Ming JieFei LongLi PanMichael Wieczorek
    • Ming JieFei LongLi PanMichael Wieczorek
    • G05B19/042
    • G05B19/0421G06F8/451
    • A compiler and method for parallelizing automatic control programs, wherein the method is applied to a Multi-Core Programmable Logic Controller (M-PLC) that includes multiple cores. The method includes the steps of dividing a serial automatic control program to be executed by the M-PLC into multiple program blocks, mapping the automatic control program to a parallelization model using the multiple program blocks, performing parallelization scheduling for the multiple program blocks according to the parallelization model to allocate respective multiple program blocks to the multiple cores of the M-PLC, converting each respective program block allocated to each core into respective machine codes, and downloading the machine codes to the multiple cores for their respective execution.
    • 一种用于并行化自动控制程序的编译器和方法,其中该方法应用于包括多个核的多核可编程逻辑控制器(M-PLC)。 该方法包括以下步骤:将要由M-PLC执行的串行自动控制程序划分为多个程序块,将自动控制程序映射到使用多个程序块的并行化模型,根据所述多个程序块执行并行化调度 将相应的多个程序块分配给M-PLC的多个核心的并行化模型,将分配给每个核心的各个程序块转换成相应的机器代码,并将机器代码下载到多个核心以进行各自的执行。