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    • 6. 发明申请
    • FIXATION OF OPHTHALMIC IMPLANTS
    • 透明植入物的固定
    • US20110029074A1
    • 2011-02-03
    • US12685426
    • 2010-01-11
    • Carina R. ReisinKenneth E. KadziauskasBrooke C. BasingerTimothy R. Bumbalough
    • Carina R. ReisinKenneth E. KadziauskasBrooke C. BasingerTimothy R. Bumbalough
    • A61F2/16A61M5/00A61F9/00
    • A61F2/1613A61F2/1624A61F9/007A61F2220/0008A61F2220/005
    • An ophthalmic device for implantation into a capsular bag of an eye includes an adhesive or adherent that adheres to an eye at certain temperatures or other physical conditions, but has little or no adherence at other temperatures. The ophthalmic device may be an accommodating intraocular lens including an adjustable optic body and a support structure. The support structure includes an outer structure, an intermediate structure, and an adhesive or adherent material disposed over at least a portion of the support structure. The intermediate structure is located between, and connected to, the outer structure and the optic body. The outer structure has an outer face configured for engaging a capsular bag of an eye. The outer face includes an equatorial region, with anterior and posterior regions disposed on opposite sides of the equatorial region. Under a predetermined condition, the posterior region has an adhesion that is greater than an adhesion of the anterior region.
    • 用于植入眼睛囊袋的眼科装置包括在某些温度或其他物理条件下粘附于眼睛的粘合剂或附着物,但在其它温度下几乎不粘附或不粘附。 眼科装置可以是包括可调节光学主体和支撑结构的容纳眼内透镜。 支撑结构包括外部结构,中间结构以及设置在支撑结构的至少一部分上的粘合或粘附材料。 中间结构位于外部结构和光学主体之间并连接到外部结构和光学主体。 外部结构具有被配置用于接合眼睛囊袋的外表面。 外表面包括赤道区域,前后区域设置在赤道区域的相对两侧。 在预定条件下,后部区域具有大于前部区域的粘附的粘附。
    • 10. 发明授权
    • Systems and methods for power and flow rate control
    • 电力和流量控制的系统和方法
    • US08715220B2
    • 2014-05-06
    • US13243765
    • 2011-09-23
    • James GergCarina R Reisin
    • James GergCarina R Reisin
    • A61M1/00A61M5/178A61M31/00
    • A61M1/0031A61B2017/00084A61F9/00736A61M1/0035A61M1/0058
    • Systems and methods for fluid control during aspiration. In an embodiment, an aspiration system includes an aspiration line having distal and proximal ends and an aspiration port defined in the distal end; a fluid transport device operatively coupled to the proximal end of the aspiration line; and a flow restrictor operatively coupled to the aspiration line in between the fluid transport device and the aspiration port. To measure occlusion within the line, first and second pressure sensors are utilized, the first sensor being operatively coupled to the aspiration line between the port and the restrictor and the second sensor being operatively coupled to the aspiration line between the restrictor and the fluid transport device. The pressure differential between the two sensors can provide an indication of the onset, presence, and/or elimination of an occlusion.
    • 抽吸过程中流体控制的系统和方法。 在一个实施例中,抽吸系统包括具有远端和近端的抽吸管线和限定在远端中的抽吸口; 流体输送装置,其可操作地耦合到所述吸入管线的近端; 以及限流器,其可操作地联接到所述流体输送装置和所述抽吸端口之间的所述抽吸管线。 为了测量线内的闭塞,利用第一和第二压力传感器,第一传感器可操作地耦合到端口和节流器之间的抽吸管线,并且第二传感器可操作地联接到限制器和流体输送装置之间的抽吸管线 。 两个传感器之间的压力差可以提供闭塞的开始,存在和/或消除的指示。