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    • 91. 发明授权
    • Splint system and method of use
    • 夹板系统和使用方法
    • US07022094B2
    • 2006-04-04
    • US10764123
    • 2004-01-24
    • Robert F. BuckmanJay A. LenkerDonald J. Kolehmainen
    • Robert F. BuckmanJay A. LenkerDonald J. Kolehmainen
    • A61F5/00
    • A61F5/0585
    • Devices and methods are disclosed for achieving control and stabilization of bone fractures in mammals, most specifically humans. Stabilization and traction is often required to support fractured bones of the arms or legs. The devices and methods disclosed herein are especially useful in the emergency or military setting. The devices utilize a collapsible frame that may be expanded and locked into position. The frame is fabricated primarily from polymeric materials with low radiodensity. The limb contact regions are adjustable to fit a wide variety of limb sizes and fracture locations. The traction applied by the splint is adjustable, controllable and measurable. The traction splint of the current invention is sufficiently compact that it will fit in a compartment of most ambulances and emergency rescue vehicles, thus making it more available for use than standard traction splints in use today. The traction splint is either a separate device or integrated into a backboard.
    • 公开了用于实现哺乳动物,特别是人的骨折的控制和稳定的装置和方法。 通常需要稳定和牵引力来支撑手臂或腿部的骨折骨。 本文公开的装置和方法在紧急或军事环境中特别有用。 这些装置利用可扩展的框架,并将其锁定到位。 该框架主要由具有低辐射密度的聚合材料制成。 肢体接触区域是可调节的,以适应各种各样的肢体大小和骨折位置。 由夹板施加的牵引力是可调节的,可控的和可测量的。 本发明的牵引夹板足够紧凑,使其适合大部分救护车和紧急救援车辆的隔间,从而使其比目前使用的标准牵引夹板更可用。 牵引夹板是单独的装置或集成到背板中。