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    • 1. 发明专利
    • Method and apparatus for reinforcing or restoring movement of muscle
    • 用于增强或恢复肌肉运动的方法和装置
    • JP2010166971A
    • 2010-08-05
    • JP2009010212
    • 2009-01-20
    • Ifg IncTohoku Univ国立大学法人東北大学株式会社Ifg
    • ABE TOSHIHIKOTAKAGI TOSHIYUKIIZUE SHINICHINAGATOMI RYOICHINAKAZATO NOBUKAZUYASHIMA KAZUMIMATSUZAKA YOSHIYAICHIHARA TOSHIAKIISHII KENJI
    • A61N2/00
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for reinforcing or restoring the movement of muscles by moving the muscles whose voluntary movement is difficult because of the paralysis, generating a pulse magnetic field with the electric potential generated at the time as a trigger signal and generating a large muscular constriction; and to provide technologies for effectively implementing rehabilitation by constructing a nerve network with the plasticity especially of the brain and nerves. SOLUTION: Magnetic pulses are generated in a magnetic stimulation coil 7 connected to a pulse power supply 6 with one of the electric potential acquired by detecting the myoelectric potential accompanying the autonomic movement of muscles or the joint movement accompanying the movement of a joint by a sensor and converting the detected movement into an electric signal, or the action potential from the brain waves accompanying the planning and execution of the autonomic movement, or the electric potential acquired by detecting the change of the cerebral blood flow from near-infrared spectroscopy and converting the detected change into an electric signal as a trigger signal 5, and next, the motor area of the cerebrum or the muscles are stimulated with magnetism of the magnetic pulses. According to the method, the movement of the muscles is reinforced or restored. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种通过由于瘫痪而移动自愿运动困难的肌肉来增强或恢复肌肉运动的方法和装置,产生具有当时产生的电位的脉冲磁场 作为触发信号并产生大的肌肉收缩; 并提供技术,通过构建神经网络,特别是脑和神经的可塑性,有效实施康复。 解决方案:在连接到脉冲电源6的磁刺激线圈7中产生磁脉冲,其中通过检测伴随肌肉自主运动的肌电势获得的电位之一或伴随关节运动的关节运动而获得的电位之一 通过传感器将检测到的运动转换成电信号,或伴随着自主运动的规划和执行的脑波的动作电位或通过从近红外光谱检测脑血流的变化而获得的电位 并将检测到的变化转换为电信号作为触发信号5,接着,用磁脉冲的磁力刺激大脑或肌肉的运动区域。 根据该方法,肌肉的运动被加强或恢复。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Method and device for therapeutic magnetic stimulation of living body
    • 用于生活体内治疗磁刺激的方法和装置
    • JP2010207268A
    • 2010-09-24
    • JP2009053473
    • 2009-03-06
    • Ifg IncTohoku Univ国立大学法人東北大学株式会社Ifg
    • ABE TOSHIHIKOTAKAGI TOSHIYUKIIZUE SHINICHINAGATOMI RYOICHINAKAZATO NOBUKAZUYASHIMA KAZUMIMATSUZAKA YOSHIYAICHIHARA TOSHIAKIISHII KENJI
    • A61N2/00
    • PROBLEM TO BE SOLVED: To provide a method for therapeutic magnetic stimulation of a living body by which an electrometer is not broken by excessive voltage generated due to a magnetic stimulation coil installed near the electrometer, as a method for strengthening or recovering muscle which becomes difficult to exercise a voluntary movement due to paralysis. SOLUTION: In the method for strengthening or recovering movements of the muscle by magnetically stimulating a motor area of the brain or the muscle by a magnetic pulse generated by a magnetic stimulator with myoelectric potential detected by the electrometer or active potential from the brain wave as a trigger, after the myoelectric potential or action potential is detected by the electrometer, an input circuit of the electrometer is electrically cut off, then magnetic stimulation is given by a magnetic pulse, influences of induced voltage by the magnetic pulse disappear, and then the input circuit is conducted again. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于治疗磁刺激的方法,其通过静电计不会由于安装在静电计附近的磁刺激线圈产生的过大电压而破坏,作为强化或恢复肌肉的方法 由于瘫痪而变得难以行使自愿行动。 解决方案:在通过用磁刺激器产生的磁脉冲通过磁刺激脑或肌肉的运动区域来强化或恢复肌肉运动的方法中,该磁刺激器由静电计检测到肌电势或来自脑的活动电位 波作为触发器,在电位计检测到肌电位或动作电位后,静电计的输入电路被电切断,然后用磁脉冲给出磁刺激,磁脉冲引起的感应电压的影响消失, 然后再次进行输入电路。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Converging magnetic field generation coil for transcranial magnetic stimulation
    • 用于跨磁电刺激的磁场生成线圈
    • JP2009039326A
    • 2009-02-26
    • JP2007207730
    • 2007-08-09
    • Ifg IncTohoku Univ国立大学法人東北大学株式会社Ifg
    • ABE TOSHIHIKOTAKAGI TOSHIYUKIIZUE SHINICHINAGATOMI RYOICHIYASHIMA YOSHINOBUNAKAZATO NOBUKAZU
    • A61N2/00A61B5/05
    • PROBLEM TO BE SOLVED: To provide a converging magnetic field generation coil for transcranial magnetic stimulation capable of magnetically stimulating a brain deep part by a relatively simple apparatus. SOLUTION: The converging magnetic field generation coil for the transcranial magnetic stimulation is characterized by that a pair of coils 1 and 2 are disposed facing each other, the coils 1 and 2 are excited respectively in opposite directions and a ring 3 of the conductor of a closed circuit is disposed between the coils. The converging magnetic field generation coil for the transcranial magnetic stimulation is characterized by that the ring 3 of the conductor of the closed circuit comprises one or two or more stages of the ring. The converging magnetic field generation coil for the transcranial magnetic stimulation is characterized by that, in the case that a set of the coils 1 and 2 arranged facing each other comprise multi-stage coils, the respective centers of the multi-stage coil are arranged at a position three-dimensionally away from the center of the coil facing each other. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够通过相对简单的装置磁刺激脑深部的经颅磁刺激的会聚磁场产生线圈。 解决方案:用于经颅磁刺激的会聚磁场产生线圈的特征在于一对线圈1和2彼此相对设置,线圈1和2分别在相反方向被激励,并且环3 闭合电路的导体设置在线圈之间。 用于经颅磁刺激的会聚磁场产生线圈的特征在于闭合电路的导体的环3包括环的一个或两个或多个阶段。 用于经颅磁刺激的收敛磁场产生线圈的特征在于,在彼此面对的一组线圈1和2包括多级线圈的情况下,多级线圈的各个中心被布置在 三维地离开线圈的中心彼此面对的位置。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Magnetic stimulation rehabilitation device
    • 磁刺激康复装置
    • JP2013103121A
    • 2013-05-30
    • JP2011264090
    • 2011-11-14
    • Ifg Inc株式会社IfgTohoku Univ国立大学法人東北大学
    • IZUE SHINICHIKANETAKA HIROYASUTAKAGI TOSHIYUKINAGATOMI RYOICHINAKAZATO NOBUKAZUKASE SHUICHIROSUZUKI EIZABUROABE TOSHIHIKOMORI HITOSHIYABUGAMI MAKOTO
    • A61N1/40A61H1/02
    • A61H1/02A61B5/1107A61H1/0285A61H2201/5002A61H2201/5064A61H2201/5092A61N2/006A61N2/02
    • PROBLEM TO BE SOLVED: To provide a technique for effectively performing a rehabilitation by moving a muscle or joint difficult to be voluntarily moved due to paralysis even a little by an individual's will and effort, detecting the site, direction and intensity of a motion caused on this occasion, generating a pulse magnetic field according to the level of a sensor signal to cause large muscle contraction by magnetic stimulation, thereby enhancing the intensity of the motion of the muscle, and creating a neural network using the plasticity of the brain.SOLUTION: A displacement caused in the muscle or joint by voluntary exercise is detected by an optical sensor, or an ultrasonic sensor, or a magnetic sensor, and a sensor output potential corresponding to the site, direction and intensity thereof is used as a trigger signal. A magnetic pulse of the intensity and frequency corresponding to the level of the trigger signal is generated in one or a plurality of magnetic stimulation coils connected to a pulse power source. The motor area of the cerebrum or the muscle is magnetically stimulated by this magnetic pulse, whereby the motion of the paralyzed muscle is enhanced.
    • 要解决的问题:提供一种通过移动由于瘫痪而难以自主移动的肌肉或关节的技术,甚至通过个人的意愿和努力来进行康复,检测位置,方向和强度 在这种情况下引起的运动,根据传感器信号的电平产生脉冲磁场,以通过磁刺激引起大的肌肉收缩,从而增强肌肉运动的强度,并且使用大脑的可塑性产生神经网络 。 解决方案:通过光学传感器或超声波传感器或磁性传感器检测肌肉或关节中由自愿运动引起的位移,并将与其位置,方向和强度对应的传感器输出电位用作 一个触发信号。 在连接到脉冲电源的一个或多个磁刺激线圈中产生与触发信号的电平相对应的强度和频率的磁脉冲。 通过该磁脉冲对大脑或肌肉的运动区域进行磁力刺激,从而增强了瘫痪肌肉的运动。 版权所有(C)2013,JPO&INPIT