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    • 7. 发明申请
    • SYSTEMS AND METHODS FOR MITIGATING INTERFERENCE BETWEEN ACCESS POINTS
    • 用于减轻接入点之间干扰的系统和方法
    • US20110032849A1
    • 2011-02-10
    • US12537535
    • 2009-08-07
    • Simon YeungBen ChanJason LeungDoug GeorgePiu Bill Wong
    • Simon YeungBen ChanJason LeungDoug GeorgePiu Bill Wong
    • H04B15/00H04W4/00H04J3/00
    • H04B7/0434H04B7/0495H04B7/0617H04W16/28
    • Systems and methods which implement cooperative techniques at wireless network access points to provide interference mitigation are shown. Embodiments utilize cooperative antenna beam adaptation techniques wherein antenna beam selection, selective antenna beam transmission power, and/or antenna beam null selection is implemented based upon the communication environment created by a plurality of access points. Additionally or alternatively, embodiments utilize cooperative antenna beam isolation techniques wherein narrow channel filters are implemented with respect to antenna beam signals and/or shielding is provided between various antenna beams based upon the communication environment created by a plurality of access points. Embodiments additionally or alternatively utilize cooperative antenna beam coordination techniques wherein transmission and/or reception of signals is coordinated, the use of antenna beams is coordinated, and/or interference cancellation is implemented based upon the communication environment created by a plurality of access points.
    • 示出了在无线网络接入点实现协作技术以提供干扰减轻的系统和方法。 实施例利用了基于由多个接入点创建的通信环境来实现天线波束选择,选择天线波束发射功率和/或天线波束空选择的协作天线波束适配技术。 附加地或替代地,实施例利用协作天线波束隔离技术,其中相对于天线波束信号实现窄通道滤波器,和/或基于由多个接入点产生的通信环境在各种天线波束之间提供屏蔽。 实施例另外或替代地使用协作天线波束协调技术,其中信号的传输和/或接收被协调,天线波束的使用被协调,和/或基于由多个接入点创建的通信环境来实现干扰消除。
    • 8. 发明申请
    • IMPLANTABLE DEVICES AND METHODS FOR TREATING MICRO-ARCHITECTURE DETERIORATION OF BONE TISSUE
    • 用于治疗骨组织微结构鉴定的可植入装置和方法
    • US20070067034A1
    • 2007-03-22
    • US11468759
    • 2006-08-30
    • Paul ChiricoBen Chan
    • Paul ChiricoBen Chan
    • A61F2/44A61B17/16
    • A61B17/8858A61B17/1671A61B17/70A61B17/8855
    • An expandable stabilization device is disclosed that is suitable for deployment within cancellous bone, including, for example, within a vertebral body of a spine. The device comprises: an elongate expandable shaft adapted to be positioned within a vertebral body having a first profile and a second profile; wherein the shaft is adapted to cut through cancellous bone within the vertebral body during expansion from the first profile to the second profile; and further wherein the shaft is adapted to abut a surface of cortical bone within the vertebral body without passing therethrough. The invention also includes a method for treating cancellous bone, such as cancellous bone of a vertebral body. The method comprises: delivering an expandable device within the cancellous bone of in an interior of a vertebral body; expanding the delivered device within the cancellous bone of the vertebra body; applying force from a surface of the device to an inner surface of a cancellous bone of the vertebral body sufficient to cut through the cancellous bone; and applying force from a surface of the device to an inner surface of a cortical bone of the vertebral body sufficient to support the vertebral body
    • 公开了一种可膨胀的稳定装置,其适于在松质骨内展开,包括例如脊椎的椎体内。 所述装置包括:细长可扩张轴,其适于定位在具有第一轮廓和第二轮廓的椎骨体内; 其中所述轴适于在从所述第一轮廓到所述第二轮廓的膨胀期间切割所述椎骨体内的松质骨; 并且进一步其中所述轴适于邻接所述脊椎体内皮质骨的表面,而不通过所述皮质骨。 本发明还包括一种治疗松质骨的方法,例如椎体的松质骨。 该方法包括:在椎骨内部的松质骨内输送可扩张装置; 扩大椎体内松质骨内的输送装置; 从装置的表面施加力到椎骨的松质骨的内表面足以穿过松质骨; 并且将力从所述装置的表面施加到所述椎体的皮质骨的内表面,足以支撑所述椎体