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首页> 外文期刊>Journal of Rehabilitation Research and Development >Prosthetic sockets stabilized by alternating areas of tissue compression and release
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Prosthetic sockets stabilized by alternating areas of tissue compression and release

机译:假牙承窝通过交替的组织压缩和释放区域来稳定

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A prosthetist makes a conventional socket by wrapping plaster bandage around the residual limb and using the resulting shell to create a positive model. After he or she modifies the plaster, it is used to create a laminated socket. Such sockets are almost perfect cylinders that encapsulate the limb. The bone is centered in soft, compressible tissue that must move aside before the bone can push against the socket to transmit force or torque to the prosthesis. In a compression/release stabilized (CRS) socket, three or more longitudinal depressions compress and displace tissue between the socket wall and the bone to reduce lost motion when the bone is moved with respect to the socket. Release areas between depressions are opened to accommodate displaced tissue. Without these openings provided, the CRS socket will not function as intended. Often, the release areas of compression are the struts of a carbonfiber frame, and the regions between struts are left open. A frame with openings may be modified by the prosthetist adding a thin membrane fully surrounding the limb but allowing the membrane and underlying tissue to enter the release openings. The membrane may contain electrodes, and it may constitute a rollon liner that helps suspend the prosthesis. We introduce three socket designs transradial, transfemoral, and transhumeral.
机译:假肢医生通过将石膏绷带缠在残肢周围并使用产生的外壳来创建正面模型来制作传统的窝。在他或她修改了灰泥之后,就可以使用它来创建层压式承窝。这样的插座几乎是完美的圆柱体,包裹了肢体。骨骼位于柔软,可压缩的组织中,该组织必须移开,然后骨骼才能推向承窝,以将力或扭矩传递到假体上。在压缩/释放稳定(CRS)插槽中,三个或更多个纵向凹口压缩并移动插槽壁和骨骼之间的组织,以减少骨骼相对于插槽移动时的运动损失。凹陷之间的释放区域是开放的,以容纳移位的组织。没有这些开口,CRS插座将无法正常工作。通常,压缩的释放区域是碳纤维框架的撑杆,而撑杆之间的区域则保持敞开状态。可以通过以下方式修改带有开口的框架:假肢添加完全围绕四肢的薄膜,但允许薄膜和下面的组织进入释放开口。该膜可以包含电极,并且它可以构成有助于悬挂假体的rollon衬里。我们介绍了经al骨,经股骨和经肱骨的三种承窝设计。

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