HYBRID CLUSTERED NEURAL INTERFACE SYSTEM
    2.
    发明申请
    HYBRID CLUSTERED NEURAL INTERFACE SYSTEM 有权
    混合聚合神经接口系统

    公开(公告)号:US20120323288A1

    公开(公告)日:2012-12-20

    申请号:US13524989

    申请日:2012-06-15

    IPC分类号: A61N1/36 A61N5/06 A61M37/00

    CPC分类号: A61N1/0531 Y10T29/49147

    摘要: An apparatus comprises a flexible substrate. The flexible substrate includes a first substrate surface, a surface electrode array that includes a plurality of electrodes disposed on the first substrate surface, one or more flexible neural probes substantially orthogonal to the first substrate surface and insertable into biological tissue, and a penetrating electrode array that includes a plurality of electrodes formed on the one or more flexible neural probes, wherein electrodes of the surface electrode array and the penetrating electrode array are configured to one or both of receive a neural signal from a neural signal source and provide electrical stimulation energy to a neural stimulation target.

    摘要翻译: 一种装置包括柔性基板。 柔性基板包括第一基板表面,包括设置在第一基板表面上的多个电极的表面电极阵列,基本上与第一基板表面正交并可插入到生物组织中的一个或多个柔性神经探针,以及穿透电极阵列 其包括形成在所述一个或多个柔性神经探针上的多个电极,其中所述表面电极阵列和所述穿透电极阵列的电极被配置为接收来自神经信号源的神经信号中的一个或两个,并将电刺激能量提供给 神经刺激目标。

    Hybrid clustered neural interface system
    3.
    发明授权
    Hybrid clustered neural interface system 有权
    混合聚类神经接口系统

    公开(公告)号:US08954144B2

    公开(公告)日:2015-02-10

    申请号:US13524989

    申请日:2012-06-15

    IPC分类号: A61N1/00 A61N1/05

    CPC分类号: A61N1/0531 Y10T29/49147

    摘要: An apparatus comprises a flexible substrate. The flexible substrate includes a first substrate surface, a surface electrode array that includes a plurality of electrodes disposed on the first substrate surface, one or more flexible neural probes substantially orthogonal to the first substrate surface and insertable into biological tissue, and a penetrating electrode array that includes a plurality of electrodes formed on the one or more flexible neural probes, wherein electrodes of the surface electrode array and the penetrating electrode array are configured to one or both of receive a neural signal from a neural signal source and provide electrical stimulation energy to a neural stimulation target.

    摘要翻译: 一种装置包括柔性基板。 柔性基板包括第一基板表面,包括设置在第一基板表面上的多个电极的表面电极阵列,基本上与第一基板表面正交并可插入到生物组织中的一个或多个柔性神经探针,以及穿透电极阵列 其包括形成在所述一个或多个柔性神经探针上的多个电极,其中所述表面电极阵列和所述穿透电极阵列的电极被配置为接收来自神经信号源的神经信号中的一个或两个,并将电刺激能量提供给 神经刺激目标。

    Neural Interface System
    7.
    发明申请
    Neural Interface System 有权
    神经接口系统

    公开(公告)号:US20080208283A1

    公开(公告)日:2008-08-28

    申请号:US11932903

    申请日:2007-10-31

    IPC分类号: A61N1/05

    摘要: The neural interface system of the preferred embodiments includes an electrode array having a plurality of electrode sites and a carrier that supports the electrode array. The electrode array is coupled to the carrier such that the electrode sites are arranged both circumferentially around the carrier and axially along the carrier. A group of the electrode sites may be simultaneously activated to create an activation pattern. The system of the preferred embodiment is preferably designed for deep brain stimulation, and, more specifically, for deep brain stimulation with fine electrode site positioning, selectivity, tunability, and precise activation patterning. The system of the preferred embodiments, however, may be alternatively used in any suitable environment (such as the spinal cord, peripheral nerve, muscle, or any other suitable anatomical location) and for any suitable reason.

    摘要翻译: 优选实施例的神经接口系统包括具有多个电极位置的电极阵列和支撑电极阵列的载体。 电极阵列耦合到载体,使得电极位置沿着载体周向布置并且沿着载体轴向布置。 可以同时激活一组电极部位以产生激活模式。 优选实施例的系统优选地设计用于深部脑刺激,更具体地,针对具有精细电极位置定位,选择性,可调性和精确激活图案化的深部脑刺激。 然而,优选实施例的系统可以替代地在任何合适的环境(例如脊髓,周围神经,肌肉或任何其他合适的解剖学位置)中以及出于任何合适的原因使用。

    Neural interface system
    8.
    发明授权
    Neural interface system 有权
    神经界面系统

    公开(公告)号:US08731673B2

    公开(公告)日:2014-05-20

    申请号:US11932903

    申请日:2007-10-31

    IPC分类号: A61N1/00

    摘要: The neural interface system of the preferred embodiments includes an electrode array having a plurality of electrode sites and a carrier that supports the electrode array. The electrode array is coupled to the carrier such that the electrode sites are arranged both circumferentially around the carrier and axially along the carrier. A group of the electrode sites may be simultaneously activated to create an activation pattern. The system of the preferred embodiment is preferably designed for deep brain stimulation, and, more specifically, for deep brain stimulation with fine electrode site positioning, selectivity, tunability, and precise activation patterning. The system of the preferred embodiments, however, may be alternatively used in any suitable environment (such as the spinal cord, peripheral nerve, muscle, or any other suitable anatomical location) and for any suitable reason.

    摘要翻译: 优选实施例的神经接口系统包括具有多个电极位置的电极阵列和支撑电极阵列的载体。 电极阵列耦合到载体,使得电极位置沿着载体周向布置并且沿着载体轴向布置。 可以同时激活一组电极部位以产生激活模式。 优选实施例的系统优选地设计用于深部脑刺激,更具体地,针对具有精细电极位置定位,选择性,可调性和精确激活图案化的深部脑刺激。 然而,优选实施例的系统可以替代地在任何合适的环境(例如脊髓,周围神经,肌肉或任何其他合适的解剖学位置)中以及出于任何合适的原因使用。

    Instantly removable self-aligning high-accuracy mount for mounting a calibration instrument to a CNC work table

    公开(公告)号:US11027382B1

    公开(公告)日:2021-06-08

    申请号:US16188242

    申请日:2018-11-12

    申请人: David Anderson

    发明人: David Anderson

    IPC分类号: B23Q3/10 B23Q1/42 B23Q3/18

    摘要: The instant-mount aspect of the present invention allows a user to rapidly accurately dismount a mounted CNC calibration device from a CNC work table, and rapidly replace the CNC calibration device to its previously mounted position within 0.0001, in seconds. The alignment aspect of the present invention allows faster and more robust high-accuracy alignment of a CNC calibration device once it is mounted on a CNC work table. The remote nest aspect of the present invention allows rapid re-positioning of a CNC calibration device within a CNC milling machine cabinet in a way that does not disrupt the data connection between the CNC control computer and the CNC calibration device, and allows for utilization of more of the worktable surface during milling operations.