The present disclosure relates to braces for the spine. More particularly, the disclosure relates to an improved sternal pad mount for spine braces.
Improvement is desired in the design of braces for the spine. The present disclosure provides an improved sternal pad mount for spine braces.
The disclosure advantageously provides an adjustable mount structure that is particularly configured for adjustably mounting a sternal pad on a spine brace
In one aspect, a brace according to the disclosure includes a brace panel; a pad having an adjustment post with adjustment apertures; and an adjustable mount integrated with the panel for adjustably mounting the pad onto the panel, the adjustable mount including wedged levers operatively associated with a retaining arm having pins and located within a channel configured to receive the adjustment post of the sternal pad and the adjustment apertures.
In another aspect, a brace according to the disclosure includes a brace panel; a pad having an adjustment post; and an adjustable mount integrated with the brace panel for adjustably mounting the pad onto the brace panel, the adjustable mount including wedged levers operatively associated with a retaining arm and located within a channel configured to receive the adjustment post of the pad.
In a further aspect, the disclosure provides a height adjustment system including an adjustment post with adjustment apertures; and an adjustable mount having wedged levers operatively associated with a retaining arm having pins and located within a channel into which the adjustment post is received. Thee adjustment apertures are engaged by the pins of the retaining arm to lock the adjustment post in position and the adjustment post is adjustably positionable relative to the adjustable mount by pinching the wedged levers to move the retaining arm and the pins of the retaining arm out of engagement with the adjustment apertures to enable adjustment of the position of the adjustment post in the adjustable mount, and the adjustment post is again locked in position by releasing the wedged levers to engage the pins of the retaining arm with the adjustment apertures.
Further advantages of the disclosure are apparent by reference to the detailed description when considered in conjunction with the figures, which are not to scale so as to more clearly show the details, wherein like reference numbers indicate like elements throughout the several views, and wherein:
With reference to the drawings, the disclosure provides a spinal brace 10 having an anterior panel 40 having a sternal pad kit (SPK) 50.
The anterior panel 40 has an integrated adjustable mount 42 for adjustably mounting the sternal pad kit 50 onto the anterior panel 40. The mount 42 includes wedged levers 44 operatively associated with a retaining arm 46 having pins 46a and located within a channel 48.
The sternal pad kit 50 has a sternal plate 52 having a pad 52a (
To insert and adjust the height of the sternal pad 52, as shown in
The foregoing description of preferred embodiments for this disclosure has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the disclosure to the precise form disclosed. Obvious modifications or variations are possible in light of the above teachings. The embodiments are chosen and described in an effort to provide the best illustrations of the principles of the disclosure and its practical application, and to thereby enable one of ordinary skill in the art to utilize the disclosure in various embodiments and with various modifications as are suited to the particular use contemplated.
Number | Date | Country | |
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63118070 | Nov 2020 | US |
Number | Date | Country | |
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Parent | 17304256 | Jun 2021 | US |
Child | 17841855 | US |
Number | Date | Country | |
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Parent | 17841855 | Jun 2022 | US |
Child | 17899726 | US |