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    • 1. 发明授权
    • Detection of artifacts in bioelectric signals
    • 检测生物电信号中的伪影
    • US07684856B2
    • 2010-03-23
    • US11635397
    • 2006-12-07
    • Juha VirtanenBorje RantalaSeppo Iikka Juhani Virtanen
    • Juha VirtanenBorje RantalaSeppo Iikka Juhani Virtanen
    • A61B5/04
    • A61B5/04004A61B5/0476A61B5/0531
    • The invention relates to a method and apparatus for detecting artifacts in a bioelectric signal, especially in a frontal EEG signal. In order to accomplish an uncomplicated mechanism for detecting artifacts in clinical applications, an impedance signal is measured through a first electrode set attached to the skin surface in a measurement area of a patient's body, the impedance signal being indicative of the impedance of the signal path formed between individual electrodes of the set. Simultaneously with the impedance measurement, a bioelectric signal is acquired through a second electrode set also attached to the skin surface of the measurement area, and the time periods are determined during which the impedance signal fulfills at least one predetermined criterion indicative of the presence of artifact in the bioelectric signal. In one embodiment, the first and second electrode sets are formed by a common set of two electrodes.
    • 本发明涉及一种用于检测生物电信号中伪像的方法和装置,特别是在前脑电信号中。 为了实现用于检测临床应用中的假象的简单机制,通过在患者身体的测量区域中附着到皮肤表面的第一电极组来测量阻抗信号,阻抗信号指示信号路径的阻抗 形成在组的各个电极之间。 与阻抗测量同时,通过也附接到测量区域的皮肤表面的第二电极组获得生物电信号,并且确定时间段,在该时间段期间,阻抗信号满足表示伪像存在的至少一个预定标准 在生物电信号中。 在一个实施例中,第一和第二电极组由一组共同的两个电极形成。
    • 2. 发明申请
    • Detection of artifacts in bioelectric signals
    • 检测生物电信号中的伪影
    • US20070167858A1
    • 2007-07-19
    • US11635397
    • 2006-12-07
    • Juha VirtanenBorje RantalaSeppo Virtanen
    • Juha VirtanenBorje RantalaSeppo Virtanen
    • A61B5/04
    • A61B5/04004A61B5/0476A61B5/0531
    • The invention relates to a method and apparatus for detecting artifacts in a bioelectric signal, especially in a frontal EEG signal. In order to accomplish an uncomplicated mechanism for detecting artifacts in clinical applications, an impedance signal is measured through a first electrode set attached to the skin surface in a measurement area of a patient's body, the impedance signal being indicative of the impedance of the signal path formed between individual electrodes of the set. Simultaneously with the impedance measurement, a bioelectric signal is acquired through a second electrode set also attached to the skin surface of the measurement area, and the time periods are determined during which the impedance signal fulfills at least one predetermined criterion indicative of the presence of artifact in the bioelectric signal. In one embodiment, the first and second electrode sets are formed by a common set of two electrodes.
    • 本发明涉及一种用于检测生物电信号中伪像的方法和装置,特别是在前脑电信号中。 为了实现用于检测临床应用中的假象的简单机制,通过在患者身体的测量区域中附着到皮肤表面的第一电极组来测量阻抗信号,阻抗信号指示信号路径的阻抗 形成在组的各个电极之间。 与阻抗测量同时,通过也附接到测量区域的皮肤表面的第二电极组获得生物电信号,并且确定时间段,在该时间段期间,阻抗信号满足表示伪像存在的至少一个预定标准 在生物电信号中。 在一个实施例中,第一和第二电极组由一组共同的两个电极形成。
    • 4. 发明授权
    • Method and computer program for authenticating a physiological sensor, a sensor system, a patient monitor, and a physiological sensor
    • 用于认证生理传感器的方法和计算机程序,传感器系统,患者监护仪和生理传感器
    • US08652126B2
    • 2014-02-18
    • US12624469
    • 2009-11-24
    • Borje Rantala
    • Borje Rantala
    • A61B18/18
    • A61B5/0002A61B5/0245A61B5/04A61B2090/0803A61B2562/08G06F19/00G06F19/3418
    • A mechanism for authenticating a physiological sensor is disclosed. When a sensor is connected to a monitor, the monitor examines whether a first sensor-specific usage identifier of the connected sensor is consistent with a second sensor-specific usage identifier thereof. The first and second sensor-specific usage identifiers are indicative of the cumulative usage of the connected sensor, but may nevertheless be unequal. The first sensor-specific usage identifier is maintained in the sensor and the second sensor-specific usage identifier in a host memory external to the sensor. The use of the connected sensor is allowed when the examining indicates that the said two identifiers of the connected sensor are consistent, and rejected when the identifiers are inconsistent. The two identifiers are further updated in response to the use of the connected sensor in the patient monitor, thereby to keep the said identifiers consistent and updated for a subsequent use attempt of the sensor.
    • 公开了用于认证生理传感器的机构。 当传感器连接到监视器时,监视器检查连接的传感器的第一传感器特定使用标识符是否与其第二传感器专用使用标识符一致。 第一和第二传感器特定使用标识符表示所连接的传感器的累积使用,但是可能不相等。 传感器中的第一传感器特定使用标识符被保存在传感器外部的主机存储器中的第二传感器特定使用标识符。 当检查指示连接的传感器的所述两个标识符一致时,允许使用连接的传感器,并且当标识符不一致时被拒绝。 响应于患者监视器中连接的传感器的使用,两个标识符被进一步更新,从而使所述标识符保持一致并被更新以用于传感器的后续使用尝试。
    • 5. 发明授权
    • Sensor interface
    • 传感器接口
    • US08326391B2
    • 2012-12-04
    • US12047059
    • 2008-03-12
    • Borje Rantala
    • Borje Rantala
    • A61B5/1455
    • G01D21/00
    • A sensor interface configured to adapt analog and digital sensors is disclosed herein. The sensor interface unit includes: a port configured to be coupled to either a digital sensor or an analog sensor and a signal processing circuit for processing an analog sensor output when an analog sensor is coupled to the port. The interface further includes a switching mechanism configured to bypass the signal processing circuitry when a digital sensor is coupled to the port.
    • 本文公开了配置成适配模拟和数字传感器的传感器接口。 传感器接口单元包括:被配置为耦合到数字传感器或模拟传感器的端口以及当模拟传感器耦合到端口时用于处理模拟传感器输出的信号处理电路。 接口还包括一个切换机构,配置成当数字传感器耦合到端口时旁路信号处理电路。
    • 6. 发明申请
    • Interference Suppression in Spectral Plethysmography
    • 光谱体积描记中的干扰抑制
    • US20080167541A1
    • 2008-07-10
    • US11621203
    • 2007-01-09
    • Panu TakalaBorje Rantala
    • Panu TakalaBorje Rantala
    • A61B5/1455
    • A61B5/14551A61B5/7207
    • The invention relates to a patient monitoring device, especially to a pulse oximeter. For suppressing the effects of an interference source causing adverse modulation in one or more blood related signals input to the device, a power spectrum is derived for each blood related signal and the frequency of an interference source causing unwanted modulation in the blood related signal(s) is identified. A weight function is determined, in which the relative weight of at least one frequency is dampened, the at least one frequency depending on the identified frequency. The weight function is applied to the power spectrum(s), thereby to obtain at least one weighted power spectrum. A blood related parameter of the subject is defined based on the at least one weighted power spectrum.
    • 本发明涉及一种患者监测装置,特别涉及一种脉搏血氧计。 为了抑制在输入到装置的一个或多个血液相关信号中引起不利调制的干扰源的影响,导出针对每个血液相关信号的功率谱和在血液相关信号(s)中造成不需要的调制的干扰源的频率 )。 确定加权函数,其中至少一个频率的相对权重被抑制,所述至少一个频率取决于所识别的频率。 权重函数被应用于功率谱,从而获得至少一个加权的功率谱。 基于至少一个加权功率谱定义对象的与血液相关的参数。
    • 7. 发明授权
    • Alarm control method, physiological monitoring apparatus, and computer program product for a physiological monitoring apparatus
    • 用于生理监测装置的报警控制方法,生理监测装置和计算机程序产品
    • US08665096B2
    • 2014-03-04
    • US12974426
    • 2010-12-21
    • Borje RantalaMikko Kaski
    • Borje RantalaMikko Kaski
    • G08B23/00
    • A61B5/04018A61B5/02455A61B5/0402A61B5/7207A61B5/7282A61B5/746
    • A method for controlling alarms in a physiological monitoring apparatus, a physiological monitoring apparatus, and a computer program product for a physiological monitoring apparatus are disclosed. In order to decrease the number of nuisance alarms, the level of a physiological signal obtained from a subject is observed and signal morphology is determined for the physiological signal in response to detecting a change of the level of the physiological signal to a predetermined value range representing low signal values, thereby to obtain reference morphology for the physiological signal. Signal morphology is monitored if the physiological signal remains in the predetermined value range and alarms are suppressed as long as the signal morphology fulfills predefined criteria with respect to the reference morphology and the level of the physiological signal remains in the predetermined value range.
    • 公开了一种生理监测装置,生理监测装置和用于生理监测装置的计算机程序产品中的报警控制方法。 为了减少烦扰警报的数量,观察从对象获得的生理信号的电平,并且响应于检测到生理信号的电平的变化到表示的生理信号的水平的预定值范围,确定生理信号的信号形态 低信号值,从而获得生理信号的参考形态。 如果生理信号保持在预定值范围内并且只要信号形态满足关于参考形态的预定标准并且生理信号的水平保持在预定值范围内,就监视信号形态。
    • 9. 发明申请
    • System for detecting allergic reactions resulting from a chemical substance given to a patient
    • 用于检测由给予患者的化学物质引起的过敏反应的系统
    • US20080004504A1
    • 2008-01-03
    • US11480344
    • 2006-06-30
    • Kimmo UutelaBorje Rantala
    • Kimmo UutelaBorje Rantala
    • G06Q50/00A61B5/00
    • G06Q50/24A61B5/411
    • System for detecting allergic reactions resulting from a chemical substance given to a patient The system comprises a workstation configured to carry out desired proceedings and physiological measurements of the patient, a detection arrangement for detecting the chemical substance given to the patient, a database having information of allergic symptoms, and a warning/information display. The database is configured to operate with the workstation to obtain results of the physiological measurements carried out, and is further configured to operate with the detection arrangement for detecting the chemical substance given to the patient and the warning/information display in order to generate a warning of allergic reactions from the basis of the information obtained from the physiological measurements and the chemical substance given to the patient.
    • 用于检测由给予患者的化学物质引起的过敏反应的系统该系统包括一个被配置为执行期望的程序和患者的生理测量的工作站,用于检测给予患者的化学物质的检测装置,具有 过敏症状和警告/信息显示。 数据库被配置为与工作站一起操作以获得进行的生理测量的结果,并且还被配置为与检测装置一起操作以检测给予患者的化学物质和警告/信息显示,以产生警告 根据从生理测量获得的信息和给予患者的化学物质的过敏反应。