SYRINGE DEVICE, SYSTEM AND METHOD FOR DELIVERING OZONE GAS
    1.
    发明申请
    SYRINGE DEVICE, SYSTEM AND METHOD FOR DELIVERING OZONE GAS 有权
    用于输送臭氧的SYRINGE装置,系统和方法

    公开(公告)号:US20150133852A1

    公开(公告)日:2015-05-14

    申请号:US14597906

    申请日:2015-01-15

    Abstract: In accordance with at least one exemplary embodiment, a syringe device, method and system for delivering a therapeutic amount of ozone are disclosed. A sterility case can enclose a syringe portion and can maintain sterility while the syringe device is interfaced to an ozone generator. A valvably-controlled fluid channel can extend from the barrel of the syringe through the case. Conducting elements can be attached to the case and can breach the case. The conductive elements can be connected to electrodes. The electrodes can be attached to the syringe. The syringe portion can be filled with oxygen gas via the valvably-controlled fluid channel. An electric current can be provided to the conductive elements from an ozone generator resulting in a corona discharge from at least one electrode. A therapeutic amount of ozone gas can be produced from the oxygen gas and the syringe delivered into the sterile field without compromise.

    Abstract translation: 根据至少一个示例性实施例,公开了一种用于递送治疗量的臭氧的注射器装置,方法和系统。 无菌情况可以包围注射器部分,并且可以在注射器装置与臭氧发生器连接时保持不育。 可控制的流体通道可以从注射器的筒体延伸通过壳体。 传导元件可以附在案件上,并可以违反案件。 导电元件可以连接到电极。 电极可以连接到注射器。 注射器部分可以通过可调节控制的流体通道填充氧气。 可以从臭氧发生器向导电元件提供电流,从而产生从至少一个电极的电晕放电。 可以从氧气和注射器输送到无菌区域而不折不扣地产生治疗量的臭氧气体。

    SYRINGE DEVICE, SYSTEM AND METHOD FOR DELIVERING OZONE GAS
    2.
    发明申请
    SYRINGE DEVICE, SYSTEM AND METHOD FOR DELIVERING OZONE GAS 审中-公开
    用于输送臭氧的SYRINGE装置,系统和方法

    公开(公告)号:US20170028123A1

    公开(公告)日:2017-02-02

    申请号:US15294999

    申请日:2016-10-17

    Abstract: In accordance with at least one exemplary embodiment, a syringe device, method and system for delivering a therapeutic amount of ozone are disclosed. A sterility case can enclose a syringe portion and can maintain sterility while the syringe device is interfaced to an ozone generator. A valvably-controlled fluid channel can extend from the barrel of the syringe through the case. Conducting elements can be attached to the case and can breach the case. The conductive elements can be connected to electrodes. The electrodes can be attached to the syringe. The syringe portion can be filled with oxygen gas via the valvably-controlled fluid channel. An electric current can be provided to the conductive elements from an ozone generator resulting in a corona discharge from at least one electrode. A therapeutic amount of ozone gas can be produced from the oxygen gas and the syringe delivered into the sterile field without compromise.

    Abstract translation: 根据至少一个示例性实施例,公开了一种用于递送治疗量的臭氧的注射器装置,方法和系统。 无菌情况可以包围注射器部分,并且可以在注射器装置与臭氧发生器连接时保持不育。 可控制的流体通道可以从注射器的筒体延伸通过壳体。 传导元件可以附在案件上,并可以违反案件。 导电元件可以连接到电极。 电极可以连接到注射器。 注射器部分可以通过可调节控制的流体通道填充氧气。 可以从臭氧发生器向导电元件提供电流,从而产生从至少一个电极的电晕放电。 可以从氧气和注射器输送到无菌区域中而不折不扣地产生治疗量的臭氧气体。

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