IMPLANTABLE SYSTEMS AND METHODS FOR REMOVING SPECIFIC IMPURITIES FROM FLUIDS SUCH AS BLOOD

    公开(公告)号:US20190029793A1

    公开(公告)日:2019-01-31

    申请号:US16150992

    申请日:2018-10-03

    申请人: Zvi Herschman

    发明人: Zvi Herschman

    摘要: Systems and methods utilize semipermeable nanotubes in conjunction with application of controlled electrical potentials across semipermeable nanotube walls allow selective transport of charged impurities (e.g., charged impurities, ions, etc.) from a fluid into these nanotubes. Impurities collected in these nanotubes can then be removed from the fluid, (e.g., blood) as a waste stream. A collection of semipermeable nanotubes each carrying a waste stream can be aggregated and merged into a ureter for excretion thereby providing an artificial kidney system. Sensors that detect/measure various impurities may be included in the system to feed information to a microprocessor to inform on concentrations of impurities, and thereby control electrical potentials applied to the system.

    Implantable systems and methods for removing specific impurities from fluids such as blood

    公开(公告)号:US10117737B2

    公开(公告)日:2018-11-06

    申请号:US14951271

    申请日:2015-11-24

    申请人: Zvi Herschman

    发明人: Zvi Herschman

    摘要: Systems and methods utilize semipermeable nanotubes in conjunction with application of controlled electrical potentials across semipermeable nanotube walls allow selective transport of charged impurities (e.g., charged impurities, ions, etc.) from a fluid into these nanotubes. Impurities collected in these nanotubes can then be removed from the fluid, (e.g., blood) as a waste stream. A collection of semipermeable nanotubes each carrying a waste stream can be aggregated and merged into a ureter for excretion thereby providing an artificial kidney system. Sensors that detect/measure various impurities may be included in the system to feed information to a microprocessor to inform on concentrations of impurities, and thereby control electrical potentials applied to the system.

    Implantable systems and methods for removing specific impurities from fluids such as blood
    4.
    发明授权
    Implantable systems and methods for removing specific impurities from fluids such as blood 有权
    用于从诸如血液的流体中去除特定杂质的可植入系统和方法

    公开(公告)号:US09220829B2

    公开(公告)日:2015-12-29

    申请号:US13044147

    申请日:2011-03-09

    申请人: Zvi Herschman

    发明人: Zvi Herschman

    摘要: Systems and methods utilize semipermeable nanotubes in conjunction with application of controlled electrical potentials across semipermeable nanotube walls allow selective transport of charged impurities (e.g., charged impurities, ions, etc.) from a fluid into these nanotubes. Impurities collected in these nanotubes can then be removed from the fluid, (e.g., blood) as a waste stream. A collection of semipermeable nanotubes each carrying a waste stream can be aggregated and merged into a ureter for excretion thereby providing an artificial kidney system. Sensors that detect/measure various impurities may be included in the system to feed information to a microprocessor to inform on concentrations of impurities, and thereby control electrical potentials applied to the system.

    摘要翻译: 系统和方法利用半透性纳米管与半透性纳米管壁上的受控电位的应用相结合,允许从流体选择性地将带电杂质(例如带电杂质,离子等)输送到这些纳米管中。 然后可以将这些纳米管中收集的杂质作为废物流从流体(例如血液)中除去。 每个携带废物流的半透明纳米管的集合可以聚集并合并到输尿管中用于排泄,从而提供人造肾系统。 检测/测量各种杂质的传感器可以包括在系统中以将信息馈送到微处理器以通知杂质的浓度,从而控制施加到系统的电位。

    IMPLANTABLE SYSTEMS AND METHODS FOR REMOVING SPECIFIC IMPURITIES FROM FLUIDS SUCH AS BLOOD
    5.
    发明申请
    IMPLANTABLE SYSTEMS AND METHODS FOR REMOVING SPECIFIC IMPURITIES FROM FLUIDS SUCH AS BLOOD 审中-公开
    可移植的系统和方法,用于从血液如血液中去除特异性污染物

    公开(公告)号:US20120232458A1

    公开(公告)日:2012-09-13

    申请号:US13044147

    申请日:2011-03-09

    申请人: Zvi Herschman

    发明人: Zvi Herschman

    摘要: Systems and methods utilize semipermeable nanotubes in conjunction with application of controlled electrical potentials across semipermeable nanotube walls allow selective transport of charged impurities (e.g., charged impurities, ions, etc.) from a fluid into these nanotubes. Impurities collected in these nanotubes can then be removed from the fluid, (e.g., blood) as a waste stream. A collection of semipermeable nanotubes each carrying a waste stream can be aggregated and merged into a ureter for excretion thereby providing an artificial kidney system. Sensors that detect/measure various impurities may be included in the system to feed information to a microprocessor to inform on concentrations of impurities, and thereby control electrical potentials applied to the system.

    摘要翻译: 系统和方法利用半透性纳米管与半透性纳米管壁上的受控电位的应用相结合,允许从流体选择性地将带电杂质(例如带电杂质,离子等)输送到这些纳米管中。 然后可以将这些纳米管中收集的杂质作为废物流从流体(例如血液)中除去。 每个携带废物流的半透明纳米管的集合可以聚集并合并到输尿管中用于排泄,从而提供人造肾系统。 检测/测量各种杂质的传感器可以包括在系统中以将信息馈送到微处理器以通知杂质的浓度,从而控制施加到系统的电位。

    IMPLANTABLE SYSTEMS AND METHODS FOR REMOVING SPECIFIC IMPURITIES FROM FLUIDS SUCH AS BLOOD
    7.
    发明申请
    IMPLANTABLE SYSTEMS AND METHODS FOR REMOVING SPECIFIC IMPURITIES FROM FLUIDS SUCH AS BLOOD 审中-公开
    可移植的系统和方法,用于从血液如血液中去除特异性污染物

    公开(公告)号:US20160081786A1

    公开(公告)日:2016-03-24

    申请号:US14951271

    申请日:2015-11-24

    申请人: Zvi Herschman

    发明人: Zvi Herschman

    IPC分类号: A61F2/02 B01D61/42

    摘要: Systems and methods utilize semipermeable nanotubes in conjunction with application of controlled electrical potentials across semipermeable nanotube walls allow selective transport of charged impurities (e.g., charged impurities, ions, etc.) from a fluid into these nanotubes. Impurities collected in these nanotubes can then be removed from the fluid, (e.g., blood) as a waste stream. A collection of semipermeable nanotubes each carrying a waste stream can be aggregated and merged into a ureter for excretion thereby providing an artificial kidney system. Sensors that detect/measure various impurities may be included in the system to feed information to a microprocessor to inform on concentrations of impurities, and thereby control electrical potentials applied to the system.

    摘要翻译: 系统和方法利用半透性纳米管与半透性纳米管壁上的受控电位的应用相结合,允许从流体选择性地将带电杂质(例如带电杂质,离子等)输送到这些纳米管中。 然后可以将这些纳米管中收集的杂质作为废物流从流体(例如血液)中除去。 每个携带废物流的半透明纳米管的集合可以聚集并合并到输尿管中用于排泄,从而提供人造肾系统。 检测/测量各种杂质的传感器可以包括在系统中以将信息馈送到微处理器以通知杂质的浓度,从而控制施加到系统的电位。