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    • 2. 发明授权
    • Dialysis equipment
    • 透析设备
    • US4735727A
    • 1988-04-05
    • US844238
    • 1986-03-25
    • Rolf HeitmeierDieter Rath
    • Rolf HeitmeierDieter Rath
    • A61M1/14A61M1/16B01D61/22B01D61/28B01D61/30B01D61/32B01D61/34B01D13/00
    • B01D61/22A61M1/16Y10S210/929
    • The dialysis equipment has a dialysate path connectable to a dialysate source 1, and contains a feed pump 6, a dialyzer 10, and a controlled suction pump 13. During the operative phase, this dialysate path is traversed by the dialysate with a constant negative pressure being maintained in the dialysate chamber 101 of the dialyzer 10 relative to the blood chamber 102. In a subsequent measuring phase, the dialysate path is cut off from the dialysate source 1 and from a drain 15 via a valve device 2, 14. The same negative pressure is maintained in the dialysate chamber 101 as in the operative phase. The ultrafiltrate passing from the blood chamber 102 into the dialysate chamber 101 during the measuring phase causes the filling of a volume measuring device 5.
    • 透析设备具有可连接到透析液源1的透析液路径,并且包含进料泵6,透析器10和受控抽吸泵13.在操作阶段期间,该透析液路径由透析液以恒定的负压 保持在透析器10相对于血液室102的透析液室101.在随后的测量阶段,透析液路径被从透析液源1和排出口15经由阀装置2,14被切断。相同 如在操作阶段那样在透析液室101中保持负压。 在测量阶段,从血液室102进入透析液室101的超滤液使体积测量装置5的填充。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR ENABLING WIRELESS FUNCTIONALITY IN ELECTRONIC DEVICES
    • 在电子设备中实现无线功能的系统和方法
    • US20130189933A1
    • 2013-07-25
    • US13357091
    • 2012-01-24
    • Rolf HeitmeierNorbert Viehmann
    • Rolf HeitmeierNorbert Viehmann
    • H04B1/40H04B1/04
    • A61M5/142A61M2205/35A61M2205/52A61M2205/8206G06F19/00G06F19/3418H04B1/3805H04B1/3816H04W84/18
    • Modules, systems, and methods for enabling wireless functionality in electronic devices are disclosed. A module comprises a housing, a plurality of module terminals, a wireless transmitter, a first electronic component, and a power source. The housing is sized to be removably inserted in a power source receptacle of the electronic device. The plurality of module terminals contact a corresponding plurality of device terminals of the electronic device. The first electronic component is operable to receive outbound device data from the electronic device via the module terminal and transmit the outbound device data using the wireless transmitter. The power source is operable to provide power to the electronic device. The method comprises inserting a module in the power source receptacle of the electronic device, receiving outbound device data from the electronic device, and transmitting the outbound device data using the wireless transmitter.
    • 公开了用于实现电子设备中的无线功能的模块,系统和方法。 模块包括壳体,多个模块终端,无线发射器,第一电子部件和电源。 壳体的尺寸设计成可移除地插入电子设备的电源插座中。 多个模块终端接触电子设备的对应的多个设备终端。 第一电子部件可操作以经由模块终端从电子设备接收出站设备数据,并使用无线发射器发送出站设备数据。 电源可操作以向电子设备提供电力。 该方法包括将模块插入电子设备的电源插座中,从电子设备接收出站设备数据,以及使用无线发射器发送出站设备数据。
    • 7. 发明授权
    • Systems and methods for enabling wireless functionality in electronic devices
    • 在电子设备中启用无线功能的系统和方法
    • US08571491B2
    • 2013-10-29
    • US13357091
    • 2012-01-24
    • Rolf HeitmeierNorbert Viehmann
    • Rolf HeitmeierNorbert Viehmann
    • H04B1/38
    • A61M5/142A61M2205/35A61M2205/52A61M2205/8206G06F19/00G06F19/3418H04B1/3805H04B1/3816H04W84/18
    • Modules, systems, and methods for enabling wireless functionality in electronic devices are disclosed. A module comprises a housing, a plurality of module terminals, a wireless transmitter, a first electronic component, and a power source. The housing is sized to be removably inserted in a power source receptacle of the electronic device. The plurality of module terminals contact a corresponding plurality of device terminals of the electronic device. The first electronic component is operable to receive outbound device data from the electronic device via the module terminal and transmit the outbound device data using the wireless transmitter. The power source is operable to provide power to the electronic device. The method comprises inserting a module in the power source receptacle of the electronic device, receiving outbound device data from the electronic device, and transmitting the outbound device data using the wireless transmitter.
    • 公开了用于实现电子设备中的无线功能的模块,系统和方法。 模块包括壳体,多个模块终端,无线发射器,第一电子部件和电源。 壳体的尺寸设计成可移除地插入电子设备的电源插座中。 多个模块终端接触电子设备的对应的多个设备终端。 第一电子部件可操作以经由模块终端从电子设备接收出站设备数据,并使用无线发射器发送出站设备数据。 电源可操作以向电子设备提供电力。 该方法包括将模块插入电子设备的电源插座中,从电子设备接收出站设备数据,以及使用无线发射器发送出站设备数据。
    • 9. 发明授权
    • Anaesthetic controller
    • 麻醉控制器
    • US06830047B2
    • 2004-12-14
    • US09808984
    • 2001-03-16
    • Rolf HeitmeierGerhard Niessner
    • Rolf HeitmeierGerhard Niessner
    • A61M1600
    • A61M16/01A61M2205/52
    • For automatic supply of an active substance to a patient's body (14) the supply rate (R) of an infusion pump (13) is evaluated. The supply rate is processed in a patient model (11) which receives the corresponding active substance data from a drug data bank (12). The patient model (11) calculates the concentration (CNactual) in the patient's body from the former values of the active substance supply. Said actual concentration value is fed to a concentration controller (17) which also receives a desired concentration value (CNdesired). The infusion pump (13) is controlled as a function of the difference obtained. The desired concentration value can be manually set on an input device (19) or is supplied by another control portion which generates e. g. a BIS level or an adequate signal from the patient's EEG, the BIS level being a measure of the depth of anaesthesia.
    • 为了将活性物质自动供应到患者体内(14),评估输液泵(13)的供给速率(R)。 在从药物数据库(12)接收相应的活性物质数据的患者模型(11)中处理供给速率。 患者模型(11)从活性物质供应的前值计算患者体内的浓度(CNactual)。 所述实际浓度值被馈送到浓度控制器(17),其也接收期望的浓度值(CN desired)。 作为所获得的差异的函数控制输液泵(13)。 期望的浓度值可以手动设置在输入设备(19)上,或者由另一个控制部分提供, G。 来自患者脑电图的BIS水平或足够的信号,BIS水平是麻醉深度的量度。
    • 10. 发明授权
    • Infusion device comprising a plurality of infusion pumps
    • 输液装置包括多个输液泵
    • US06544228B1
    • 2003-04-08
    • US09722296
    • 2000-11-28
    • Rolf Heitmeier
    • Rolf Heitmeier
    • A61M3700
    • A61M5/16827A61M5/1408A61M5/1409A61M5/1413A61M5/1456A61M2205/60G06F19/00
    • The infusion device comprises a central controller (10) and a plurality of infusion apparatus (12) each connected via a data channel (15) with the controller (10). Each infusion apparatus (12) is provided with a unique identification number. When an infusion apparatus (12) is connected to the controller (10) the identification number is requested and the controller (10) checks whether this identification number has already been allocated. If this is not the case, the controller (10) sends the inverted identification number back to the infusion apparatus (12). The infusion apparatus (12) accepts commands from the controller (10) only if the returned signal corresponds to the identification number.
    • 输注装置包括中央控制器(10)和多个输注装置(12),每个输注装置(12)经由数据通道(15)与控制器(10)连接。 每个输注装置(12)具有唯一的识别号码。 当输注装置(12)连接到控制器(10)时,请求识别号码,并且控制器(10)检查该识别号码是否已被分配。 如果不是这种情况,则控制器(10)将反转的识别号码发送回输注装置(12)。 仅当返回的信号对应于识别号时,输注装置(12)才接受来自控制器(10)的命令。