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    • 2. 发明申请
    • METHODS AND APPARATUS FOR EFFECTUATING A LASTING CHANGE IN A NEURAL-FUNCTION OF A PATIENT
    • 影响患者神经功能变化的方法和装置
    • US20100145427A1
    • 2010-06-10
    • US12710964
    • 2010-02-23
    • Bradford Evan GlinerBrad FowlerAndrew D. FirlikJeffrey BalzerAlan J. LevyKent Leyde
    • Bradford Evan GlinerBrad FowlerAndrew D. FirlikJeffrey BalzerAlan J. LevyKent Leyde
    • A61N1/05
    • A61N1/32A61N1/0531A61N1/0534A61N1/0539A61N1/36017A61N1/36025A61N1/36082A61N1/375A61N1/3756A61N1/40
    • The following disclosure describes several methods and apparatus for intracranial electrical stimulation to treat or otherwise effectuate a change in neural-functions of a patient. Certain embodiments of methods in accordance with the invention electrically stimulate the brain at a stimulation site where neuroplasticity is occurring or is expected to occur. The stimulation site may be different than the region in the brain where neural activity is typically present to perform the particular neural function according to the functional organization of the brain. In one embodiment in which neuroplasticity related to the neural-function occurs in the brain, the method can include identifying the location where such neuroplasticity is present or expected to occur. In an alternative embodiment in which neuroplasticity is not occurring in the brain, an alternative aspect is to induce neuroplasticity at a stimulation site where it is expected to occur. Several embodiments of these methods that are expected to produce a lasting effect on the intended neural activity at the stimulation site use electrical pulses that increase the resting membrane potential of neurons at the stimulation site to a subthreshold level.
    • 以下公开内容描述了用于治疗或以其他方式实现患者神经功能变化的颅内电刺激的几种方法和装置。 根据本发明的方法的某些实施方案在神经可塑性发生或预期发生的刺激部位电刺激脑。 刺激部位可能不同于大脑中通常存在神经活动的区域,以根据脑的功能组织来执行特定的神经功能。 在与神经功能相关的神经可塑性发生在脑中的一个实施方案中,该方法可以包括鉴定存在或预期发生这种神经可塑性的位置。 在脑中不发生神经可塑性的替代实施方案中,替代方面是在预期发生的刺激位点处诱导神经可塑性。 预期对刺激部位的预期神经活动产生持久影响的这些方法的若干实施方案使用增加刺激部位的神经元的静息膜电位至亚阈值水平的电脉冲。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR ELECTRICALLY STIMULATING CELLS IMPLANTED IN THE NERVOUS SYSTEM
    • 用于电刺激在神经系统中植入的细胞的方法和装置
    • US20100274305A1
    • 2010-10-28
    • US12771198
    • 2010-04-30
    • Bradford Evan GlinerAlan J. LevyJeffrey BalzerAndrew D. FirlikW. Doughlas Sheffield
    • Bradford Evan GlinerAlan J. LevyJeffrey BalzerAndrew D. FirlikW. Doughlas Sheffield
    • A61N1/00
    • A61N1/36103A61N1/36017A61N1/3756C12N13/00
    • The following disclosure describes several methods and apparatus for stimulating cells implanted in the regions of nervous system, such as the brain, spinal cord or peripheral nerves. Accordingly, the functionality of the cells can be improved, for example, by differentiating undifferentiated or partially undifferentiated cells into neurons or other cells having action potentials. The method can also include promoting directional growth and connectivity of fully differentiated neural cells implanted in a patient's nervous system through electrical enhancement, for example, electrical stimulation via an anode and cathode. Methods in accordance with the invention can be used to treat brain damage (e.g., stroke, trauma, etc.), brain disease (e.g., Alzheimer's, Pick's, Parkinson's, etc.), and/or brain disorders (e.g., epilepsy, depression, etc.). The methods in accordance with the invention can also be used to enhance neural-function of normal, healthy brains (e.g., learning, memory, etc.), or to control sensory functions (e.g., pain).
    • 以下公开内容描述了用于刺激植入神经系统诸如脑,脊髓或周围神经的区域中的细胞的几种方法和装置。 因此,可以通过例如将未分化或部分未分化的细胞分化成具有动作电位的神经元或其他细胞来改善细胞的功能。 该方法还可以包括通过电增强(例如经由阳极和阴极的电刺激)促进植入患者神经系统中的完全分化的神经细胞的定向生长和连通性。 根据本发明的方法可用于治疗脑损伤(例如中风,创伤等),脑疾病(例如,阿尔茨海默氏症,皮克病,帕金森病等)和/或脑部疾病(例如,癫痫,抑郁症 等)。 根据本发明的方法还可以用于增强正常,健康的大脑(例如学习,记忆等)的神经功能,或用于控制感觉功能(例如疼痛)。