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    • 7. 发明申请
    • BIASED PIVOTING SLIDE ORTHODONTIC BRACKET
    • 偏斜式斜面正交支架
    • US20160175073A1
    • 2016-06-23
    • US14962703
    • 2015-12-08
    • Ormco Corporation
    • Stanley S. Huang
    • A61C7/28A61C7/30
    • A61C7/287A61C7/12A61C7/285A61C7/30
    • An orthodontic bracket includes a bracket body and a ligating slide. The bracket body includes an aperture and an archwire slot. The ligating slide is slidable relative to the archwire slot between an opened position and a first closed position and is pivotable to an angular position in a second closed position. The orthodontic bracket further includes a resilient member that is coupled to the ligating slide and is slidable in the aperture. The ligating slide defines a first height from the base surface having a first value, and in the second closed position, the ligating slide defines a second height from the base surface that is greater than the first value. The bracket body includes a slide support portion having at least one wing extending laterally therefrom. The wing is tapered in thickness. The slide support portion defines a pivot point about which the ligating slide is pivotable.
    • 正畸支架包括支架主体和结扎滑块。 支架主体包括孔和弓丝槽。 结扎滑块相对于弓丝槽在打开位置和第一关闭位置之间可滑动,并且可在第二关闭位置中枢转到角位置。 正牙支架还包括弹性构件,其联接到结扎滑块并且可在孔中滑动。 结扎滑动件限定了具有第一值的基础表面的第一高度,并且在第二关闭位置中,结扎滑动件限定了距离基础表面大于第一值的第二高度。 支架主体包括滑动支撑部分,其具有至少一个从其横向延伸的翼部。 机翼的厚度呈锥形。 滑动支撑部分限定枢轴点,结扎滑块围绕枢轴点枢转。
    • 9. 发明申请
    • ORTHODONTIC APPLIANCES INCLUDING FERROMAGNETIC SHAPE MEMORY ALLOYS AND METHODS OF ORTHODONTIC TREATMENT USING SAME
    • 包括FERROMAGNETIC SHAPE MEMORY ALLOYS的正交电极和使用相同方法进行正交治疗的方法
    • US20150238281A1
    • 2015-08-27
    • US14630200
    • 2015-02-24
    • ORMCO CORPORATION
    • Sammel Shahrier AlauddinBenjamin Mark Nazeck
    • A61C7/00A61C7/28A61C7/30
    • A61C7/006A61C7/28A61C7/285A61C7/287A61C2201/007
    • A self-ligating orthodontic bracket for ligating an archwire includes a bracket body defining an archwire slot configured to receive the archwire, a movable member movable relative to the archwire slot, and an actuator coupled to at least one of the bracket body and the movable member. The actuator includes a ferromagnetic shape memory alloy and is configured to move the movable member when exposed to a magnetic field. A method of orthodontic treatment using a self-ligating orthodontic bracket having an archwire slot configured to receive an archwire therein and including a ferromagnetic shape memory includes exposing at least a portion of the orthodontic bracket to a magnetic field such that the ferromagnetic shape memory alloy at least partially transforms to a martensitic phase from an austenitic phase, and at least one of inserting an archwire into the archwire slot and removing an archwire from the archwire slot.
    • 用于连接弓丝的自动结扎正畸托架包括限定被配置为容纳弓丝的弓丝槽的支架主体,可相对于弓丝槽移动的可移动部件,以及联接到支架主体和可移动部件中的至少一个的致动器 。 致动器包括铁磁形状记忆合金,并且构造成当暴露于磁场时移动可动构件。 使用具有被配置成在其中接收弓丝并包括铁磁形状存储器的弓形缝隙的自身结扎正畸托架的正畸治疗方法包括将所述正畸托架的至少一部分暴露于磁场,使得铁磁形状记忆合金在 至少部分地从奥氏体相转变为马氏体相,以及将弓丝插入弓丝槽中并从弓丝槽移除弓丝中的至少一种。
    • 10. 发明申请
    • Orthodontic Appliance Anchoring Method and Apparatus
    • 正畸装置锚固方法与装置
    • US20140170585A1
    • 2014-06-19
    • US13716167
    • 2012-12-16
    • Justin Parker
    • Justin Parker
    • A61C7/10A61C7/28
    • A61C7/10A61C7/22A61C7/282A61C7/285A61C8/0096
    • Orthodontic anchoring method and custom appliances affixed to teeth, TADs and/or tooth positioning, moving and stabilization appliances and/or orthodontic auxiliaries. Each appliance has mechanical fasteners structured to secure segments of a curable flexible resin rope called a flex fit module (FFM). The FFM is moldable and adaptable to the oral cavity between mechanical fasteners in an uncured first mode where it is cut to length, positioned around the anatomy of the mouth and attached to clamps or fasteners and/or flex fit wafers FFW(s) at each or one end. Each fastener has a clamp or fastener attached to orthodontic auxiliaries, orthodontic appliances or onto a TAD for anchorage purposes. One end of this custom appliance is usually attached via a clamp or fastener manufactured as part of a bracket or band to a tooth. The other end is connected to an appliance, tad, flex fit wafer or auxiliary. Once connected together the system is cured and becomes a solid entity ready to accept orthodontic forces.
    • 矫正锚固方法和定制电器固定在牙齿,TAD和/或牙齿定位,移动和稳定器具和/或正畸辅助部件上。 每个器具具有结构化以固定称为挠性拟合模块(FFM)的可固化柔性树脂绳索的部分的机械紧固件。 FFM是可模制的并适应于未固化的第一模式的机械紧固件之间的口腔,其中其被切割成长度,定位在口腔的解剖结构周围并且附接到夹具或紧固件和/或在每个模具处的柔性配合晶片FFW 或一端。 每个紧固件具有附接到正畸辅助部件,正畸器具或TAD上的夹具或紧固件用于锚固目的。 该定制装置的一端通常通过作为支架或带的一部分制造的夹具或紧固件附接到牙齿上。 另一端连接到电器,电源,柔性配合晶片或辅助电缆。 一旦连接在一起,系统就会被治愈,成为准备接受正畸力的坚实实体。