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    • 3. 发明授权
    • Method and apparatus for desynchronization of neural brain activity
    • 神经脑活动失步的方法和装置
    • US07974698B2
    • 2011-07-05
    • US11441251
    • 2006-05-26
    • Peter TassOleksandr PopovychChristian Hauptmann
    • Peter TassOleksandr PopovychChristian Hauptmann
    • A61N1/36
    • A61N1/36135A61N1/36082A61N1/36103
    • The invention relates to an apparatus for desynchronization of neural illness-synchronous brain activity in which the activities in at least two subareas of a brain area or at least two functionally associated brain areas are stimulated by means of at least two electrodes. In the case of a person with an illness, desynchronization therapy suppresses symptoms in the relevant neuron population. The feedback stimulation signal, that is to say the measured, time-delayed and process neural activity, is used as an individual stimulus. This results in self-regulated, demand control of the amplitude of the stimulation signal, thus minimizing the intensity of the stimulation stimuli automatically after successful desynchronization. The apparatus has at least two stimulation electrodes and at least one sensor, which are driven by a controller such that they result in desynchronization in their local environment.
    • 本发明涉及一种用于神经疾病同步脑活动的同步化的装置,其中通过至少两个电极刺激脑区域或至少两个功能相关的脑区域的至少两个子区域中的活动。 在患有疾病的人的情况下,去同步治疗可抑制相关神经元群体的症状。 反馈刺激信号,也就是说测量的,时间延迟的和过程的神经活动被用作个体刺激。 这导致刺激信号的幅度的自我调节,需求控制,从而在成功的失步之后自动最小化刺激刺激的强度。 该装置具有至少两个刺激电极和至少一个传感器,其由控制器驱动,使得它们导致其局部环境中的不同步。
    • 4. 发明申请
    • Method and apparatus for desynchronization of neural brain activity
    • 神经脑活动失步的方法和装置
    • US20060276853A1
    • 2006-12-07
    • US11441251
    • 2006-05-26
    • Peter TassOleksandr PopovychChristian Hauptmann
    • Peter TassOleksandr PopovychChristian Hauptmann
    • A61N1/36
    • A61N1/36135A61N1/36082A61N1/36103
    • The invention relates to an apparatus for desynchronization of neural, illness-synchronous brain activity in which, according to the invention, the activities in at least two subareas of a brain area or at least two functionally associated brain areas are stimulated by means of at least two electrodes, on the basis of which, in the case of a person with an illness, desynchronization surprisingly occurs in the relevant neuron population and the symptoms are suppressed. The feedback stimulation signal, that is to say the measured, time-delayed and process neural activity, is used as an individual stimulus. In consequence, this results in demand control, which is self-regulating according to the invention, of the amplitude of the stimulation signal thus minimizing the intensity of the stimulation stimuli automatically after successful desynchronization. For successful operation, the apparatus requires neither complex calibration nor control of the stimulation parameters and, instead, these can preferably be adapted and optimized by the additional controller. The apparatus has at least two stimulation electrodes (2) and at least one sensor (3), which are driven by a controller such that they result in desynchronization in their local environment.
    • 本发明涉及一种用于神经,疾病同步脑活动的同步化的装置,其中根据本发明,通过至少刺激至少两个脑区域或至少两个功能相关的脑区域的至少两个子区域中的活动 两个电极,在一个病人的情况下,在相关的神经元群体中出乎意料地发生了同步,并且抑制了症状。 反馈刺激信号,也就是说测量的,时间延迟的和过程的神经活动被用作个体刺激。 因此,这导致根据本发明自我调节的需求控制,刺激信号的幅度因此在成功去同步之后自动最小化刺激刺激的强度。 为了成功运行,该装置既不需要复杂的校准也不需要对刺激参数的控制,相反,这些可以优选地由附加控制器进行调整和优化。 该装置具有至少两个刺激电极(2)和至少一个传感器(3),其由控制器驱动,使得它们导致其局部环境中的不同步。
    • 9. 发明申请
    • Device for treating patients by brain stimulation, electronic component and use of the device and electronic component in medicine and medical treatment method
    • 用于通过脑刺激,电子元件治疗患者的装置以及医疗和医疗处理方法中的装置和电子部件的使用
    • US20070135860A1
    • 2007-06-14
    • US11603293
    • 2006-11-22
    • Peter Tass
    • Peter Tass
    • A61N1/00
    • A61N1/36067A61N1/36082
    • A device for treating patients by brain stimulation and related electronic component and use of the device and of the electronic component in a medical treatment method. To achieve the brain stimulation result, a device includes at least one electrode for stimulating a brain region, at least one sensor for measuring an electrical signal, a control system which can detect the occurrence of a pathological feature of the electrical signal which was measured by the sensor and, when the pathological feature occurs, delivers at least one component from a group of stimulus sequences (a) through (d): (a) a short high-frequency pulse train, (b) a resetting short high-frequency pulse train followed by a further desynchronizing short high-frequency pulse train, (c) a resetting low-frequency sequence of a high-frequency pulse train followed by a desynchronizing high-frequency pulse train, or (d) a resetting single pulse followed by a short desynchronizing high-frequency pulse train to the electrode.
    • 一种用于通过脑刺激和相关电子部件治疗患者的装置以及在医疗方法中使用该装置和电子部件。 为了实现脑刺激结果,装置包括用于刺激脑区域的至少一个电极,用于测量电信号的至少一个传感器,可以检测电信号的病理特征的发生的控制系统,该控制系统由 传感器,并且当发生病理特征时,从一组刺激序列(a)到(d)中递送至少一个分量:(a)短的高频脉冲串,(b)复位短的高频脉冲 然后是进一步去同步的短高频脉冲串,(c)高频脉冲序列的复位低频序列,随后是去同步高频脉冲串,或(d)复位单脉冲,随后是 短时间同步高频脉冲串到电极。