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    • 2. 发明申请
    • DRIVING MISS DAISY
    • 驾驶DAISY小姐
    • WO2017114960A1
    • 2017-07-06
    • PCT/EP2016/082943
    • 2016-12-30
    • KONINKLIJKE PHILIPS N.V.
    • CRONIN, JohnD' ANDREA, Michael
    • G06F19/00
    • G16H40/63G06F19/00
    • The present disclosure relates to systems and methods for controlling an MRI safe patient care/monitoring system. The system may include a an MRI safe infusion pump that contains a co-processor which acts as a central brain for all other patient care/monitoring devices in the MRI room. The co-processor is separated from the primary processor by a buffer in the infusion pump's memory, so that no actions by the co-processor can affect the primary processor. The co-processor controls the display software, alert software and alerts database. All other patient care/monitoring devices are connected to the MRI safe infusion pump in a daisy chain, so that they can share a single connection to outside the MRI room. Outside the MRI room the co-processor has access to the remote control & display, which contains the remote control GUI, and to the internet, through which it will access an external medical network, which contains an algorithm database. The algorithm database has data processing algorithms for a variety of patient care/monitoring devices. allowing simpler "dumb" devices to be connected and still have "smart" functionality.
    • 本公开涉及用于控制MRI安全的患者护理/监测系统的系统和方法。 该系统可能包括一个MRI安全输液泵,其中包含一个协处理器,该处理器可充当MRI室中所有其他患者护理/监测设备的中心脑。 协处理器通过输液泵存储器中的缓冲区与主处理器分离,因此协处理器不会影响主处理器。 协处理器控制显示软件,警报软件和警报数据库。 所有其他患者护理/监测设备都以菊链形式连接到MRI安全输液泵,以便他们可以共享一个连接到MRI室外。 在MRI室外部,协处理器可以访问遥控器& 包含远程控制GUI的显示器和互联网,通过它可以访问包含算法数据库的外部医疗网络。 算法数据库具有用于各种患者护理/监测设备的数据处理算法。 允许更简单的“哑” 要连接的设备仍然具有“智能” 功能。
    • 6. 发明申请
    • FIRST AID KIT WEARABLE
    • 急救包可以磨损
    • WO2016102439A1
    • 2016-06-30
    • PCT/EP2015/080751
    • 2015-12-21
    • KONINKLIJKE PHILIPS N.V.
    • CRONIN, JohnBODKIN, Joseph George
    • G08B21/02G08B21/04A61B5/00A61B5/024
    • A61B5/02438A61B5/01A61B5/021A61B5/0816A61B5/747G06F19/00G08B21/0211G08B21/0453
    • Various embodiments relate to a first-aid kit including at least one first aid item; and a wearable device configured to be worn by a user and including: a communications interface for communicating with a mobile device of the user;a sensor for obtaining vitals data when the wearable device is worn by the user;a processor configured to transmit vitals data to a mobile phone of the user via the communications interface wherein the first aid kit includes a means for causing instructions for processing the vitals data to be loaded onto the mobile device. In some such embodiments, the means for causing instructions to be loaded includes: a memory storing contents including at least one of: the instructions for processing the vitals, and a resource identifier that points to the instructions for processing the vitals at an application download server,wherein the contents are transmitted to the mobile device.
    • 各种实施方案涉及包括至少一种急救物品的急救药盒; 以及被配置为由用户佩戴的可穿戴设备,包括:通信接口,用于与所述用户的移动设备进行通信;传感器,用于当所述可穿戴设备被用户佩戴时获取生命体数据;处理器,被配置为传送生物数据 通过所述通信接口向用户的移动电话发送,其中所述急救箱包括用于进行用于处理将所述生物体数据加载到所述移动设备上的指令的装置。 在一些这样的实施例中,用于使指令被加载的装置包括:存储器,其存储内容,其包括以下各项中的至少一个:用于处理生物体的指令,以及指向用于在应用下载服务器处理生物体的指令的资源标识符 ,其中所述内容被发送到所述移动设备。
    • 7. 发明申请
    • MAGNETIC RESONANCE IMAGING (MRI) CONTROL
    • 磁共振成像(MRI)控制
    • WO2017115264A2
    • 2017-07-06
    • PCT/IB2016/058002
    • 2016-12-26
    • KONINKLIJKE PHILIPS N.V.
    • BODKIN, JosephCRONIN, John
    • G06F19/00
    • G06F19/3418G06F19/00G16H40/63
    • The present disclosure generally relates to systems and methods for providing intelligent control to imaging systems, associated patient machines, or both. In one embodiment, the systems and methods provide automated magnetic resonance imaging (MRI) control. An MRI infusion pump/patient monitor may have a cloud/Internet connection and may transfer a patient's data to a patient network while an MRI with the patient is in progress. The data maybe compared to a historical patient database in the patient network. A pump algorithm may be selected based on multiple factors. Such factors may include patient vitals and electronic medical records. The selected pump algorithm may be used to control the MRI infusion pump.
    • 本公开总体涉及用于向成像系统,相关患者机器或两者提供智能控制的系统和方法。 在一个实施例中,该系统和方法提供自动磁共振成像(MRI)控制。 MRI输液泵/患者监护仪可以具有云/互联网连接,并且可以在患者正在进行MRI的同时将患者数据传输到患者网络。 数据可以与患者网络中的历史患者数据库进行比较。 泵算法可以基于多个因素来选择。 这些因素可能包括患者生命和电子病历。 选定的泵算法可用于控制MRI输液泵。
    • 9. 发明申请
    • PULSE OXIMETER SUGGESTS ANOTHER TEST
    • PULSE OXMETER推荐其他测试
    • WO2017050856A1
    • 2017-03-30
    • PCT/EP2016/072478
    • 2016-09-22
    • KONINKLIJKE PHILIPS N.V.
    • CRONIN, JohnBODKIN, Joseph, George
    • A61B5/02A61B5/145G06F19/00A61B5/00
    • A61B5/02A61B5/14542A61B5/746A61B2560/0271G06F19/00G06F19/34G16H40/67G16H50/20
    • A method for suggesting additional tests based on a patient's health status and medical records comprising: inputting via a user interface the patient's medical records; acquiring health parameters of the patient; determining the patient's health status based on the acquired health parameters; transmitting to a network server the determined patient's health status and the inputted patient's medical records to determine a health template based on the transmitted patient's health status and patient's medical records; receiving from the network server the determined health template; extracting from the received health template an oxygen saturation level threshold and a pulse rate threshold range; acquiring an oxygen saturation level and a pulse rate of the patient via a pulse oximeter; and suggesting additional tests from the acquired health template when the acquired oxygen saturation level and pulse rate are not within the extracted oxygen saturation level threshold and pulse rate threshold range.
    • 一种用于根据患者的健康状况和医疗记录来建议附加测试的方法,包括:经由用户界面输入患者的病历; 获取患者的健康参数; 根据获得的健康参数确定患者的健康状况; 向所述网络服务器发送所确定的患者的健康状况和所输入的患者的医疗记录,以基于所发送的患者的健康状况和患者的医疗记录来确定健康模板; 从网络服务器接收确定的健康模板; 从接收到的健康模板中提取氧饱和度阈值和脉搏阈值范围; 通过脉搏血氧计获得患者的氧饱和度和脉搏率; 并且当获取的氧饱和度水平和脉搏率不在提取的氧饱和度阈值和脉搏阈值范围内时,从所获得的健康模板中提出额外的测试。
    • 10. 发明申请
    • SMART SENSOR POWER MANAGEMENT FOR HEALTH WEARABLE
    • SMART传感器电源管理,用于医疗卫生
    • WO2016151479A1
    • 2016-09-29
    • PCT/IB2016/051595
    • 2016-03-22
    • KONINKLIJKE PHILIPS N.V.
    • CRONIN, JohnPHILBIN, StevenCRONIN, Seth
    • G06F19/00A61B5/00
    • G06F19/3418A61B5/0002G06F19/00G16H40/63
    • A wearable device may include one or more sensors, which it may use to periodically take sensor measurements of physiological parameters ( e.g ., heart rate) of a user of the wearable device according to a base measurement rate ( e.g ., every 10 minutes). Each sensor measurement is compared to a pre-determined threshold level ( e.g ., predetermined at the wearable device or at a network). If a measurement exceeds the predetermined threshold level, the wearable device generates an alert at the wearable device and begins to periodically take sensor measurements at a faster threshold measurement rate (e.g., every 10 seconds) using the sensor whose measurement exceeded the threshold limit. If a new measurement falls below the threshold limit, the wearable device can return to using the base measurement rate. Thus, the wearable device's sensor-used battery power is conserved unless a sensor measurement indicates that they are needed due to a potential health risk.
    • 可穿戴设备可以包括一个或多个传感器,其可以用于根据基本测量速率(例如,每10分钟)周期性地对穿戴式设备的用户的生理参数(例如,心率)进行传感器测量。 将每个传感器测量值与预定阈值水平进行比较(例如,在可穿戴设备或网络处预定)。 如果测量值超过预定阈值水平,则可穿戴设备在可穿戴设备处产生警报,并且开始以更快的阈值测量速率(例如,每10秒钟)使用测量超过阈值限制的传感器周期性地进行传感器测量。 如果新的测量值低于阈值限制,则可穿戴设备可以返回到使用基本测量速率。 因此,可佩戴设备的传感器使用的电池功率是保守的,除非传感器测量表明由于潜在的健康风险需要它们。