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    • 5. 发明授权
    • Method of myelinating isolated motoneurons
    • 孤立运动神经元的髓鞘化方法
    • US08828721B1
    • 2014-09-09
    • US12788732
    • 2010-05-27
    • James HickmanJohn Rumsey
    • James HickmanJohn Rumsey
    • C12N5/0793C12N5/079
    • C12N5/0619C12N5/0622C12N2502/081C12N2502/086C12N2533/30C12N2533/32
    • The present invention provides a method of inducing myelination of isolated motoneurons by preparing a non-biological substrate having thereon a covalently attached monolayer of DETA; depositing isolated motoneurons on the substrate in a defined serum-free medium; plating isolated Schwann cells cultured in the defined serum-free medium onto the motoneurons, thereby initiating a co-culture; and passaging the co-culture as necessary into fresh, defined serum-free medium supplemented with L-ascorbic acid at least until the motoneurons form Nodes of Ranvier indicative of myelination. The invention also includes a method of testing for new drugs effective in demyelinating diseases. Additionally, cellular products provided by the invention include an isolated motoneurons myelinated or remyelinated in vitro according to the methods disclosed.
    • 本发明提供了通过制备其上具有共价连接的DETA单层的非生物底物来诱导分离的运动神经元的髓鞘形成的方法; 在限定的无血清培养基中在基底上沉积分离的运动神经元; 将在定义的无血清培养基中培养的分离的雪旺氏细胞电镀到运动神经元上,从而开始共培养; 并根据需要将共培养物传代至补充有L-抗坏血酸的新鲜定义的无血清培养基中,至少直到运动神经元形成指示髓鞘形成的Ranvier的节点。 本发明还包括测试有效脱髓鞘疾病的新药的方法。 此外,本发明提供的细胞产品包括根据所公开的方法在体外有髓鞘或髓鞘内分离的运动神经元。
    • 7. 发明授权
    • Model and methods for identifying points of action in electrically active cells
    • 用于识别电活动细胞中的作用点的模型和方法
    • US09489474B2
    • 2016-11-08
    • US13576442
    • 2011-02-07
    • James HickmanPeter MolnarFrank SommerhageJonathan Ernest HoodJerry Jenkins
    • James HickmanPeter MolnarFrank SommerhageJonathan Ernest HoodJerry Jenkins
    • G01N33/48G06F17/50G01N33/50G06F19/12G06G7/58
    • G06F17/5009G01N33/5058G06F19/12
    • The invention provides a model for generating predicted action potentials of an electrically active cell. The disclosed model includes three operatively coupled submodels. A first submodel contains Hodgkin-Huxley elements generating action potentials based on electrical equivalent circuits. A second submodel is based on reaction kinetics of cell metabolism and is operatively coupled with the first submodel. A third submodel is based on Boolean dynamics representing signaling and associated cellular processes and is operatively coupled with the first and second submodels. The invention includes storing a library of calculated action potentials and associated cellular parameters generated by the model, applying a stimulus to the electrically active cell in vitro so that the cell generates an action potential; and comparing the cell-generated action potential with those stored in the library, wherein a match is predictive of the cellular point of action of the applied stimulus according to the parameters stored.
    • 本发明提供了一种用于产生电活性电池的预测动作电位的模型。 所公开的模型包括三个可操作耦合的子模型。 第一个子模型包含Hodgkin-Huxley元素,其基于电等效电路产生动作电位。 第二子模型基于细胞代谢的反应动力学,并且与第一子模型操作性耦合。 第三子模型基于表示信令和相关联的细胞过程的布尔动力学,并且与第一和第二子模型可操作地耦合。 本发明包括存储由模型产生的计算的动作电位和相关联的细胞参数的文库,在体外对电活性细胞施加刺激,使得细胞产生动作电位; 以及将细胞产生的动作电位与库中存储的动作电位进行比较,其中匹配是根据所存储的参数来预测所施加的刺激的细胞作用点。
    • 10. 发明申请
    • Non-Contact Voltage Detector
    • 非接触式电压检测器
    • US20160267754A1
    • 2016-09-15
    • US15067755
    • 2016-03-11
    • James Hickman
    • James Hickman
    • G08B5/36G08B3/10G01R31/36G08B21/18H02J7/00G01R19/00
    • G08B5/36G01R1/06788G01R1/07G01R19/155G08B3/10G08B21/182H02J7/0047H02J2007/0049
    • A non-contact voltage detector for detecting and indicating voltage. The non-contact voltage detector includes a housing having a voltage detection probe and plurality of light sources. The housing further includes an integral power source that is rechargeable via an external power source coupled to a user input port. The power source provides electrical energy to the non-contact voltage detector that further includes a controller and control circuit that is operably connected to at least one light source. The controller and control circuit can detect electrical energy at the user input port, detect the charge state of the integral power source, charge the integral power source, and emit one or more charge state light indicators when the state of the integral power source changes. In addition, the light sources can indicate the presence of voltage at the probe and can be independently activated by one or more switches.
    • 用于检测和指示电压的非接触式电压检测器。 非接触电压检测器包括具有电压检测探针和多个光源的壳体。 壳体还包括可通过耦合到用户输入端口的外部电源来充电的整体电源。 电源为非接触电压检测器提供电能,其还包括可操作地连接到至少一个光源的控制器和控制电路。 控制器和控制电路可以检测用户输入端口的电能,检测积分电源的充电状态,对整体电源充电,并在整体电源的状态发生变化时发出一个或多个充电状态指示灯。 此外,光源可以指示在探头处存在电压,并且可以由一个或多个开关独立地激活。