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    • 41. 发明授权
    • System and kit for stress and relaxation management
    • 用于压力和放松管理的系统和工具包
    • US08529457B2
    • 2013-09-10
    • US12918531
    • 2009-02-16
    • Sandrine Magali Laure DevotAndreas BrauersElke NaujokatRobert PinterHarald ReiterJeroen Adrianus Johannes Thijs
    • Sandrine Magali Laure DevotAndreas BrauersElke NaujokatRobert PinterHarald ReiterJeroen Adrianus Johannes Thijs
    • A61B5/00A61B5/02A61B5/04A61B5/08
    • A61B5/0452A61B5/0205A61B5/02405A61B5/02438A61B5/165A61B5/486A61B5/6887G06F19/00
    • This invention relates to a system and a kit for stress and relaxation management. A cardiac activity sensor (101) is used for measuring the heart rate variability (HRV) signal of the user and a respiration sensor (102) for measuring the respiratory signal of the user. The system contains a user interaction device (103) having an input unit (104) for receiving user specific data and an output unit for providing information output to the user. A processor (106) is used to assess the stress level of the user by determining a user related stress index. The processor is also used to monitor the user during a relaxation exercise by means of determining a relaxation index based on the measured HRV and respiratory signals, the relaxation index being continuously adapted to the incoming measured signals and based thereon the processor instructs the output unit to provide the user with biofeedback and support messages. Finally, the processor uses the user specific data as an input in generating a first set of rules defining an improvement plan for self-management of stress and relaxation. The first set of rules is adapted to trigger commands instructing the output unit to provide the user with motivation related messages. Also, at least a portion of said user specific data is further used to define a second set of rules indicating the user's personal goals.
    • 本发明涉及一种用于压力和放松管理的系统和套件。 心脏活动传感器(101)用于测量用户的心率变异性(HRV)信号和用于测量用户的呼吸信号的呼吸传感器(102)。 该系统包括具有用于接收用户特定数据的输入单元(104)的用户交互设备(103)和用于向用户提供输出信息的输出单元。 处理器(106)用于通过确定用户相关的压力指数来评估用户的压力水平。 处理器还用于通过基于测量的HRV和呼吸信号确定松弛指数来进行放松练习期间的用户监视,松弛指数连续地适应于输入的测量信号,并且基于该处理器指示输出单元 为用户提供生物反馈和支持消息。 最后,处理器使用用户特定数据作为输入,以产生定义用于压力和放松的自我管理的改进计划的第一组规则。 第一组规则适于触发指令输出单元向用户提供与动机相关的消息的命令。 此外,所述用户特定数据的至少一部分还用于定义指示用户的个人目标的第二组规则。
    • 42. 发明授权
    • System for inducing a subject to fall asleep
    • 用于诱导受试者入睡的系统
    • US08454491B2
    • 2013-06-04
    • US12989663
    • 2009-04-28
    • Anke SchmeinkRobert Pinter
    • Anke SchmeinkRobert Pinter
    • A61M21/00
    • A61B5/024A61B5/0816A61B5/6892A61B2562/0247A61M21/02A61M2021/0027A61M2021/0044A61M2021/0061A61M2230/06A61M2230/42A61M2230/005
    • A system (100) for inducing a subject (110) to fall asleep comprises a monitor (120) for monitoring heart rate and breathing rate of the subject (110), a coherence assessing device (130) coupled to the monitor (120) for assessing a degree of coherence between the heart rate and the breathing rate, and an output device (140, 150) coupled to the coherence assessing device (130). The output device (140, 150) may comprise a light pattern generator (140) for generating a light pattern (145) in view of the subject (110) based on the degree of coherence. The output device (140, 150) may alternatively or additionally comprise an instructing system (150) for instructing the subject on a breathing pattern, and wherein the instructions are given based on the degree of coherence.
    • 用于诱导对象(110)入睡的系统(100)包括用于监测对象(110)的心率和呼吸速率的监视器(120),耦合到监视器(120)的相干性评估装置(130),用于 评估心率和呼吸频率之间的一致程度,以及耦合到相干性评估装置(130)的输出装置(140,150)。 输出装置(140,150)可以包括光图案发生器(140),用于基于相干程度从对象(110)生成光图案(145)。 输出装置(140,150)可以可选地或另外地包括用于以呼吸模式指示对象的指示系统(150),并且其中基于相干程度给出指令。
    • 44. 发明申请
    • CONTACTLESS RESPIRATION MONITORING OF A PATIENT
    • 患者的联合呼吸监测
    • US20110112425A1
    • 2011-05-12
    • US12990806
    • 2009-05-04
    • Jens MuhlsteffRobert PinterGeert G.G. Morren
    • Jens MuhlsteffRobert PinterGeert G.G. Morren
    • A61B5/08
    • A61B5/0816A61B5/05A61B5/0507A61B5/113A61B5/7239G01S7/352G01S13/583G01S13/88
    • The invention relates to a method for detection of respiration of a patient comprising the following steps: emitting an electromagnetic signal towards the patient; receiving a reflected electromagnetic signal reflected from the patient; converting the reflected electromagnetic signal, yielding a first signal; phase-shifting the reflected electromagnetic signal and converting the phase-shifted reflected electromagnetic signal, yielding a second signal; determining a first vector being defined by the time derivatives of the first signal and the second signal, for a common first point in time; determining a second and vector being defined by the time derivatives of the first signal and the second signal, for a common second point in time; and calculating the scalar product of the normalized first vector and the normalized second vector as an indicator value for a change from expiration to inspiration of the patient or vice versa. A change from expiration to inspiration of the patient or vice versa is preferably indicated if the indicator value is below a threshold value, preferably below a value of 0. In this way, a possibility for contactless remote respiration monitoring of a patient based on the Doppler radar principle is provided which is reliable and easy to handle.
    • 本发明涉及一种用于检测患者呼吸的方法,包括以下步骤:向患者发射电磁信号; 接收从患者反射的反射的电磁信号; 转换反射的电磁信号,产生第一信号; 相移所反射的电磁信号并转换相移的反射电磁信号,产生第二信号; 对于公共的第一时间点,确定由所述第一信号和所述第二信号的时间导数定义的第一矢量; 对于公共第二时间点,确定由所述第一信号和所述第二信号的时间导数定义的第二和向量; 以及计算标准化第一矢量和归一化第二矢量的标量乘积,作为从患者到呼吸到吸气的改变的指标值,反之亦然。 如果指标值低于阈值,优选地低于0,则优选地指示从患者的期满到吸气的改变或反之亦然。以这种方式,基于多普勒的患者的非接触远程呼吸监测的可能性 提供雷达原理可靠,易于处理。
    • 46. 发明申请
    • Magnetic Induction Tomography System and Method
    • 磁感应层析成像系统与方法
    • US20080258717A1
    • 2008-10-23
    • US12097529
    • 2006-12-14
    • Claudia Hannelore IgneyRobert PinterOlaf Such
    • Claudia Hannelore IgneyRobert PinterOlaf Such
    • G01R33/14
    • G01V3/104A61B5/0522A61B5/0536
    • The present invention relates to a magnetic induction tomography system and method for studying the electromagnetic properties of an object. In order to provide a high resolution MIT technique without the need of increasing the number of coils, a magnetic induction tomography system (1) for studying the electromagnetic properties of an object (2) is suggested, the system comprising one or more generator coils (4) adapted for generating a primary magnetic field, said primary magnetic field inducing an eddy current in the object (2), one or more sensor coils (5) adapted for sensing a secondary magnetic field, said secondary magnetic field being generated as a result of said eddy current, and means (6, 7, 8, 9) for providing a relative movement between one or more generator coils (4) and/or one or more sensor coils (5) on the one hand and the object (2) to be studied on the other hand.
    • 本发明涉及一种用于研究物体的电磁特性的磁感应断层摄影系统和方法。 为了提供高分辨率MIT技术而不需要增加线圈数量,建议用于研究物体(2)的电磁特性的磁感应断层摄影系统(1),该系统包括一个或多个发电机线圈( 4)适于产生主磁场,所述初级磁场在物体(2)中感应出涡流,适用于感测次级磁场的一个或多个传感器线圈(5),因此产生所述次级磁场 以及用于提供一个或多个发电机线圈(4)和/或一个或多个传感器线圈(5)和所述物体(2)之间的相对运动的装置(6,7,8,9) )另一方面要研究。
    • 47. 发明申请
    • Method and Apparatus for Inductively Measuring the Bio-Impedance of a User's Body
    • 用于感应测量使用者身体的生物阻抗的方法和装置
    • US20080221474A1
    • 2008-09-11
    • US11915750
    • 2006-05-16
    • Eberhard WaffenschmidtAndreas BrauersHarald ReiterRobert Pinter
    • Eberhard WaffenschmidtAndreas BrauersHarald ReiterRobert Pinter
    • A61B5/053
    • A61B5/053
    • The present invention relates to a method and apparatus (1) for inductively measuring the bio-impedance of a user's body. Furthermore the invention relates to a bed (2) comprising said apparatus (1). In order to provide a method and apparatus for spatially resolved inductively measuring the bio-impedance of a user's body without a complex circuitry, an apparatus (1) is suggested for inductively measuring the bio-impedance of a user's body, whereas the apparatus (1) comprises a number of first inductors (4), said first inductors (4) being adapted to induce an alternating magnetic field in the user's body and the apparatus (1) further comprises a number of second inductors (6), said second inductors (6) being adapted to measure a secondary magnetic field in the user's body, characterized in that each of the number of first inductors (4) overlaps at least one of the number of second inductors (6) to form a number of measuring areas (12, 25).
    • 本发明涉及用于电感测量使用者身体的生物阻抗的方法和装置(1)。 此外,本发明涉及包括所述装置(1)的床(2)。 为了提供用于空间分辨地感应地测量用户身体的生物阻抗而没有复杂电路的方法和装置,建议用于电感测量用户身体的生物阻抗的装置(1),而装置(1 )包括多个第一电感器(4),所述第一电感器(4)适于在用户体内诱发交变磁场,并且所述设备(1)还包括多个第二电感器(6),所述第二电感器 6)适于测量用户身体中的次级磁场,其特征在于,多个第一电感器(4)中的每一个与多个第二电感器(6)中的至少一个重叠以形成多个测量区域(12) ,25)。