CN1720880A - 坐骨支承式假腿 - Google Patents
坐骨支承式假腿 Download PDFInfo
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- CN1720880A CN1720880A CNA2005100780076A CN200510078007A CN1720880A CN 1720880 A CN1720880 A CN 1720880A CN A2005100780076 A CNA2005100780076 A CN A2005100780076A CN 200510078007 A CN200510078007 A CN 200510078007A CN 1720880 A CN1720880 A CN 1720880A
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Abstract
即使在残缺的下肢侧剩下的大腿的长度短的情况下,或在从股关节部截除下肢、没有大腿的情况下,也使步行能够顺畅地进行。在具备胯部支座(1)、垂设在胯部支座(1)下面的长度与下肢大致相同的轴部(21)以及安装在轴部(21)下端的脚部(22)的坐骨支承式假腿中,上述胯部支座(1)形成为近似L字形状,将其中之一的正面端部(2)配置在前面,安装时紧靠胯部的大致前半部分;同时将其另一个的侧面端部(3)配置在残缺的下肢的背面,安装时紧靠残缺的下肢的坐骨和臀部。在胯部支座(1)的前后端部具备前扎带支承器件(41)和后扎带支承器件(42),使它们可以转动,安装腰带(43、44)和肩挂式吊带(47)。
Description
技术领域
本发明涉及在假腿的上端设置胯部支座、并且贴靠两腿分叉处用坐骨支承人体重量的坐骨支承式假腿。
背景技术
以往,作为在假腿的上端设置胯部支座、并且贴靠两腿分叉处用坐骨支承人体重量并将残缺的下肢侧剩下的大腿固定在假腿上的坐骨支承式假腿,有专利文献1所记载的“假腿”和专利文献2所记载的“鞍座式拐杖”。它们由于使鞍座贴靠两腿分叉处支承人体重量,因此在因事故、地雷或疾病等使下肢残缺或负伤的情况下,在伤口没有治愈的早期阶段可以安装假腿步行。并且,如现有假腿那样,由于它们不必根据残缺的下肢的残缺形状定做,因此可以批量生产,能够以低的价格提供。
如上所述,坐骨支承式假腿由于残缺的下肢的顶端不承担负重,因此穿着感好,不需要专门的步行训练,安装后立即就能步行。但是,如果从前面看安装了现有坐骨支承式假腿状态的姿势的话,在健全的下肢一侧,作用于下肢的体重由骨盆端部的股关节支承,而残缺的下肢一侧由于安装了假腿,因此作用于下肢的体重通过鞍座支承在胯部的坐骨部即左右方向的中心位置。结果,支承上体的姿势左右不平衡,上体容易移动到健全的下肢一侧,步行中上体的姿势容易摇晃。
并且,在残缺的下肢一侧剩下的大腿的长度短的情况下,现有坐骨支承式假腿中假腿与大腿的固定不牢。并且,在下肢从股关节部截断,没有大腿的情况下,不能将假腿固定在大腿。在这些情况下,存在假腿往身体上的安装不牢固,在进行步行活动中拉动后方的假腿向前移动的动作不能顺畅地进行的问题。
并且,在将假腿固定到残缺的下肢一侧的大腿上步行的情况下,如果注意假腿顶端的脚的移动的话,则现有坐骨支承式假腿使脚以胯部的鞍座部为中心象摆锤一样前后运动。此时,脚向前上方摆动的角度与向后上方摆动的角度大致相等。而如果观察未安装假腿的健全的下肢侧的大腿的动作的话,由于有膝关节,因此大腿向前上方的摆动角度大,相应地,向后的摆动角度小。这样一来,与健全一侧的大腿相比,假腿侧的可动范围偏向后方,残缺一侧的大腿向后的倾斜大到健全时的步行中不能达到的程度。结果,在步行中大腿留在后面假腿向后倾斜的情况下,或者骨盆同时倾斜,或者上半身前倾而歪斜,步行姿势摇摆。
[专利文献1]日本外观设计登记第1163891号公报
[专利文献2]日本专利公报特开2002-34717号
发明内容
因此,本发明的目的就是要提出一种减少作用于假腿上的体重的左右不平衡,进一步改善穿着感的坐骨支承式假腿的方案。并且,本发明的另一个目的是要提出一种即使在残缺的下肢一侧剩下的大腿短,或者没有大腿的情况下,也能牢固地将假腿固定在坐骨上的坐骨支承式假腿的方案。而且,本发明还有一个目的就是要提出一种使假腿在步行中前后移动时的动作更加流畅、能够减少摇摆的坐骨支承式假腿的方案。
为了达到上述目的,本发明为一种坐骨支承式假腿,其具备:胯部支座、垂设在该胯部支座下面的长度与下肢大致相同的轴部以及安装在该轴部下端的脚部,其特征在于,上述胯部支座形成为平面视图的近似L字形状,将一个端部侧配置在前方,安装时紧靠胯部的大致前半部分;同时将其另一个的端部侧配置在残缺的下肢的背面,安装时紧靠残缺的下肢的坐骨和臀部。
所述坐骨支承式假腿的特征在于,上述胯部支座的两端隆起。
所述坐骨支承式假腿的特征在于,上述轴部垂设在上述胯部支座的中间弯曲部的下面,同时上述轴部偏向残缺的下肢侧的斜前方。
所述坐骨支承式假腿的特征在于,具备:能够沿前上下方向转动地安装在上述胯部支座的前端的前扎带支承器件;能够沿后上下方向转动地安装在上述胯部支座的中间弯曲部的后端的后扎带支承器件;分别连接在上述前、后扎带支承器件的上端,紧固自由并且装卸自由地安装在假腿穿着者的腰上的腰带。
所述坐骨支承式假腿的特征在于,具备端部分别连接在上述前、后扎带支承器件的上端,紧固自由并且装卸自由地安装在假腿穿着者的肩上的肩挂式吊带。
所述坐骨支承式假腿的特征在于,使上述胯部支座为左右对称的形状,并且使上述前扎带支承器件能够在上述胯部支座的两个端部自由装卸地安装,同时使上述后扎带支承器件在上述胯部支座的中间弯曲部后端的安装方向能够绕垂直轴线旋转,通过这样能够安装在左右任意一条下肢残缺的穿着者身上。
所述坐骨支承式假腿的特征在于,具备向斜前下方安装到上述轴部的上部、用扎带固定残缺下肢侧的大腿的凹面形状的大腿支托部。
所述坐骨支承式假腿的特征在于,在上述轴部的中间套上能上下自由移动的圆筒,在上述圆筒下降的位置将所述圆筒内的所述轴分割成上下两部分并用铰链连接,使上述轴的上部在上述圆筒上升的状态下能够向后倾斜。
所述坐骨支承式假腿的特征在于,使上述轴部的任意区间为双重轴的结构,同时在上述双重轴结构的部分沿轴向方向隔开适当间隔穿设多个直径方向的孔,并分别在上述每个孔内自由地插拔销钉,使上述轴部的长度能够分级地调整。
所述坐骨支承式假腿的特征在于,使上述脚部在上述脚部的下侧触地面的前后方向的中间偏左右方向一侧的位置与上述轴部的下端连接,并将上述轴部的下端插入或保持在上述脚部中,用螺栓紧固所述脚部,使上述脚部偏离上述轴部的下端的方向可以左右切换。
如上所述,根据本发明,通过使胯部支座的形状为平面视图的近似L字形状,使一个端部紧靠胯部同时使另一个端部紧靠残缺的下肢的臀部,当体重作用于假腿时用残缺的下肢侧的坐骨支承体重,能够改善左右支承体重的不平衡,能够改善穿着感,使步行更加自然。
并且,通过使轴部的上部从胯部支座的连接位置向残缺的下肢的斜前方偏移,能够增加支承体重的假腿的稳定性,能够使步行更加流畅。
而且,通过在胯部支座的前、后端分别能够向上下方向转动地安装前、后扎带支承器件,并分别在该前、后扎带支承器件的上端连接腰带,紧固自由并且装卸自由地安装在假腿穿着者的腰上,能够提高假腿的穿着性,能够稳定地步行。
并且,通过在前、后扎带支承器件的上端连接肩挂式吊带,将胯部支座吊在假腿穿着者的肩上,能够提高假腿的穿着性,能够稳定地步行。
并且,通过使上述胯部支座为左右对称的形状,并且使上述前、后扎带支承器件的安装位置可以左右切换,同时使脚部的偏离方向也可以左右切换,无论左右哪一条下肢残缺的穿着者身上都能安装。
并且,通过在轴部的上部向斜前下方设置大腿支托部固定残缺的下肢侧的大腿,能够提高步行的稳定性。
并且,通过在轴部的中间设置铰链,在装着假腿的情况下也能够坐下。
并且,通过使轴部的长度可以分级调整,仅用1种假腿即能够与穿着者的体格大小相对应。
附图说明
图1从斜后方看本发明的坐骨支承式假腿的胯部支座的透视图
图2本发明的坐骨支承式假腿的胯部支座的俯视图
图3本发明的坐骨支承式假腿的胯部支座的底面视图
图4本发明的坐骨支承式假腿的胯部支座的正面视图
图5本发明的坐骨支承式假腿的胯部支座的背面视图
图6本发明的坐骨支承式假腿的胯部支座的右视图
图7本发明的坐骨支承式假腿的胯部支座的左视图
图8本发明的坐骨支承式假腿的胯部支座的分解透视图
图9本发明的坐骨支承式假腿的组装过程中的透视图
图10本发明的坐骨支承式假腿的组装过程中的俯视图
图11本发明的坐骨支承式假腿的组装过程中的底面视图
图12本发明的坐骨支承式假腿的组装过程中的正面视图
图13本发明的坐骨支承式假腿的组装过程中的背面视图
图14本发明的坐骨支承式假腿的组装过程中的右视图
图15本发明的坐骨支承式假腿的组装过程中的左视图
图16本发明的坐骨支承式假腿的组装后的透视图
图17本发明的坐骨支承式假腿的组装后的俯视图
图18本发明的坐骨支承式假腿的组装后的底面视图
图19本发明的坐骨支承式假腿的组装后的正面视图
图20本发明的坐骨支承式假腿的组装后的背面视图
图21本发明的坐骨支承式假腿的组装后的右视图
图22本发明的坐骨支承式假腿的组装后的左视图
图23表示形成在上轴上的铰链的弯折状态的透视图
图24表示轴的下端的外观图
图25表示轴的下端的外观图
图26图24的A-A线剖视图
图27表示L型连接配件的可动范围的透视图
图28表示L型连接配件的装卸操作的透视图
图29表示旋转变更后扎带支承器件的方向时的情况的透视图
图30表示假腿安装状态的正视图
具体实施方式
下面根据附图说明本发明的实施形态。另外,虽然本实施形态所述的坐骨支承式假腿为左右对称结构,无论残缺的下肢是左还是右都能替换安装,但在此仅就安装在左侧下肢残缺的穿着者身上时的情况进行说明。
首先,就胯部支座部分的结构进行说明。图1至图8为单独地表示本发明的坐骨支承式假腿的胯部支座部分的图,图1为从斜后方看胯部支座的透视图,图2为俯视图,图3为底面视图,图4为正面视图,图5为背面视图,图6为右视图,图7为左视图,图8为分解透视图。
如这些图所示,胯部支座1形成为平面形状为L字形,正面端部2和侧面端部3稍微宽一些地隆起。并且,中间弯曲部4也稍微宽一些地形成。在安装假腿时,将该正面端部2一侧紧靠在胯部的前半部分,同时将侧面端部3一侧紧靠在位于残缺下肢一侧的左臀部和坐骨处。另外,虽然在图示例中使正面端部2与侧面端部3的交叉角度为100°,但并不局限于100°。在胯部支座1的底面紧固有由金属板制成的安装轴用的座板5,其中心部分垂设有胯部支座轴6。胯部支座轴6沿2等分正面端部2与侧面端部3的交叉角的方向向斜前方倾斜,同时下端沿与座板5垂直的方向弯曲。即,胯部支座轴6的下端从上端的根部向斜前方偏移。
在座板5的正面端部2一侧与侧面端部3一侧的中间位置分别突设有一对托架7、8,轴支着用来安装后述的前扎带支承器件41的L型连接配件9。如图8所示,在座板5的中间的胯部支座轴6的根部的外侧形成有螺纹孔11,用小螺钉14通过套管13能够旋转地轴装着用来安装后述后扎带支承器件42的配件12。由此,配件12能够以小螺钉14为中心旋转约100°。在座板5的两端分别螺钉拧接有将金属板弯曲成L字形的连接配件15、16,其上部分别与正面端部2的端面和侧面端部3的端面相抵接。在连接配件15、16的上端固定有安装到后述的大腿支托部31上的扎带32。
下面说明处于将轴部、脚部以及前后扎带支承器件组装到胯部支座部分上的组装过程中的状态的坐骨支承式假腿。图9至图15为表示处于该组装过程中的状态下的坐骨支承式假腿的图,图9为从斜前方看去的透视图,图10为俯视图,图11为底面视图,图12为正面视图,图13为背面视图,图14为右视图,图15为左视图。如这些图所示,轴部21连接在胯部支座轴6的下端,其下端安装有脚部22。轴部21的上端由上轴23构成并形成为能够插入胯部支座轴6的筒状,并在外周形成切口,在插入胯部支座轴6后,用开口卡圈24紧固其外侧,通过这样将上轴23与胯部支座轴6连接并能调节到任意的角度。
卡圈25升降自如地嵌合安装在开口卡圈24下方的上轴23上,内侧装有后述的铰链结构。上轴23的下端通过将中轴26插入内侧,其外侧用开口卡圈27紧固来连接。中轴26采用中空的结构,从下端插入下轴28,通过插拔固定销29,能够调整高度。因此,本发明的假腿用一种假腿就能够与穿着者的体格大小相对应。插入有下轴28的下端的脚部22的结构为在插入部形成缝隙,通过螺钉夹紧,脚部22的安装位置可以左右交换。
在位于胯部支座1的正面端部2与侧面端部3之间的下方的胯部支座轴6上,与胯部支座轴6平行地安装有模制的呈凹面形状的大腿支托部31。在正面端部2的前方能够前后摆动地支承着与L型连接配件9的端部相连的前扎带支承器件41。在中间弯曲部4的后方能够前后摆动地支承着与配件12的端部连接着的后扎带支承器件42。
下面说明组装成安装状态的坐骨支承式假腿。图16至图22为表示处于组装完成状态下的坐骨支承式假腿的图,图16为从斜前方看去的透视图,图17为俯视图,图18为底面视图,图19为正面视图,图20为背面视图,图21为右视图,图22为左视图。如这些图所示,穿着者的残缺下肢一侧的左大腿紧靠大腿支托部31,用3根紧固扎带32~34固定在大腿支托部31上。位于上面的紧固扎带32的两端连接在连接配件15、16上,用带扣37通过压板35、36的外侧紧扣。位于中间的紧固扎带33缠绕在大腿支托部31的里面,用带扣38通过压板35、36的外侧紧扣。位于下面的紧固扎带34缠绕在大腿支托部31的里面,用带扣39通过压板35、36的外侧紧扣。这样一来,由于固定在大腿支托部31上的左大腿朝向斜前下方,因此步行时左大腿使假腿向前后运动变得容易。
接着,前扎带支承器件41和后扎带支承器件42的左侧连接有腰带43,同样右侧也连接有腰带44,通过带扣45、46紧扣。结果,胯部支座1牢固地固定在穿着者的腰上,即使就在这种状态下也能够步行。这里,为了牢固地将胯部支座1固定在穿着者身上,在前扎带支承器件41与后扎带支承器件42之间挂有肩挂式吊带47,用带扣48、49紧扣。这样一来,由于用腰和两肩将胯部支座1安装在穿着者身上,因此提高了步行性。
图23为表示形成在上轴23中间的铰链处于弯折状态的透视图。上轴23的中间部分被分割成上下两部分,其上下部分上分别固定着开口卡圈24、27,其间上下滑动自由地嵌合有卡圈25。在分割部的下侧的上端形成有叉形槽51,在分割部的上侧下端形成与叉形槽51相对应的突起部52,在叉形槽51与突起部52嵌合的状态下穿插销53,通过这样转动自如地连接。一般在该铰链伸直的状态下使卡圈25下降盖住铰链,通过这样将上轴23的上下保持为直线的刚性体状态下。
这种结构的铰链在假腿穿着者中断步行坐在椅子等上时,能够使卡圈25上升将上轴23的上部向后弯折,以此来弯折铰链。在开始步行时,使铰链伸直,向下滑动卡圈25,通过这样使上轴23的上下成一条直线的状态,就可以步行。并且,当弯折铰链坐下时,图8所示的前扎带支承器件41通过L型连接配件9可以向前下方倒下,能够消除坐下时前扎带支承器件41压迫腹部的问题。
图24和图25为表示轴部21的下端的外观图,图26为图24的A-A线剖视图。如图所示,中轴26由管材形成,其下端的内侧出入自由地插入有比中轴26细一些的下轴28。中轴26和下轴28上以一定的间隔沿直径方向形成通孔56、57。通过调节中轴26与下轴28的嵌合量、将固定销29插入通孔56、57中,能够分级地调整轴部21的长度。固定销29为在由Ω字形状的弹性材料制成的夹子的中心部分安装销的构件,因此通过单触式操作能够在中轴26上装卸。在中轴26下端的外周部形成有螺纹,通过将带螺纹的卡圈58拧在该螺纹上紧固,能够不产生松动地连接中轴26和下轴28。
并且,在将下轴28的下端插入突设在脚部22的上面一侧偏心的位置上的轴毂59中的状态下,通过用螺栓紧固轴毂59的侧面形成的切口,将脚部22固定在下轴28的下端。虽然一般情况下脚部22的中心偏向外侧,但当穿着者在安装假腿以后不能立刻行走时,也可以使脚部22偏向内侧行走。该脚部22根据轴部21偏向左右的哪一侧来调整方向。并且,如图11及图18的底面视图所示的那样,脚部22优选与步行方向平行的方向。
图27为表示支承前扎带支承器件41的L型连接配件9的可动范围的透视图。在腰带43、44安装在前扎带支承器件41上的状态下,L型连接配件9上升,弯曲部内侧与胯部支座1的正面端部2相抵接。在从前扎带支承器件41上取掉腰带43、44的状态下,L型连接配件9靠自重下降。并且,即使在腰带43、44安装在前扎带支承器件41上的状态下,如果穿着者是坐姿姿势的话,由于穿着者的腰部相对于假腿向前弯曲,因此前扎带支承器件41和L型连接配件9下降。
图28为表示支承前扎带支承器件41的L型连接配件9的装卸操作的透视图。图示例表示的是安装在左下肢残缺的穿着者身上时的情况,当该假腿安装在右下肢残缺的穿着者身上时,将L型连接配件9从胯部支座1的正面端部2取下安装到侧面端部3一侧。此时,如图所示,用六角形扳手取下拧在胯部支座1下面的托架7上的带六角孔的螺栓,从托架7上取下L型连接配件9,安装到侧面端部3一侧的托架8上。这样一来,用1把六角形扳手就能实施L形连接配件9的换装。
图29为表示在同样将假腿从安装到左侧变成安装到右侧的情况下旋转后扎带支承器件42的方向进行变更时的情况的透视图。图示例为表示安装到左下肢残缺的穿着者身上时的情况,在将该假腿安装到右下肢残缺的穿着者身上时,在换装L型连接配件9的同时使支承后扎带支承器件42的配件12以小螺钉14为中心逆时针方向旋转约100°。该配件12的旋转不用工具,操作简单。
图30为表示安装了上述结构的假腿的状态的正视图。不仅使假腿的胯部支座1贴靠穿着者的胯部和残缺下肢侧的左臀部,而且用腰带43、44、肩挂式吊带47通过前扎带支承器件41和后扎带支承器件42固定在穿着者身上。而且,左大腿通过扎带32~34固定在大腿支托部31上。通过这样安装,作用于左假腿上的体重由胯部和左侧的坐骨支承,因此与现有的坐骨支承式假腿相比,增加了左右方向的稳定性。并且,步行时剩下的左大腿能够使假腿前后运动,提高了步行性。并且,通过使用腰带43、44和肩挂式吊带47增加了安装到身体上的安装性,在这种状态下可以从假腿的上面穿上裤子,能够缓解安装假腿的穿着者产生的羞耻感。
本发明除了在因事故、地雷或疾病等使下肢残缺的情况下可以作为假腿使用外,在因骨折或负伤而单腿不能支承体重的情况下还可以临时作为拐杖使用。
Claims (10)
1.一种坐骨支承式假腿,其具备:胯部支座、垂设在该胯部支座下面的长度与下肢大致相同的轴部以及安装在该轴部下端的脚部,其特征在于,上述胯部支座形成为平面视图的近似L字形状,将一个端部侧配置在前方,安装时紧靠胯部的大致前半部分;同时将其另一个的端部侧配置在残缺的下肢的背面,安装时紧靠残缺的下肢的坐骨和臀部。
2.如权利要求1所述的坐骨支承式假腿,其特征在于,上述胯部支座的两端隆起。
3.如权利要求1或2所述的坐骨支承式假腿,其特征在于,将上述轴部垂设在上述胯部支座的中间弯曲部的下面,同时使上述轴部偏向残缺的下肢侧的斜前方。
4.如权利要求1~3中的任一项所述的坐骨支承式假腿,其特征在于,具备:能够沿前上下方向转动地安装在上述胯部支座的前端的前扎带支承器件;能够沿后上下方向转动地安装在上述胯部支座的中间弯曲部的后端的后扎带支承器件;分别连接在上述前、后扎带支承器件的上端,紧固自由并且装卸自由地安装在假腿穿着者的腰上的腰带。
5.如权利要求4所述的坐骨支承式假腿,其特征在于,具备端部分别连接在上述前、后扎带支承器件的上端,紧固自由并且装卸自由地安装在假腿穿着者的肩上的肩挂式吊带。
6.如权利要求1~5中的任一项所述的坐骨支承式假腿,其特征在于,使上述胯部支座为左右对称的形状,并且使上述前扎带支承器件能够在上述胯部支座的两个端部自由装卸地安装,同时使上述后扎带支承器件在上述胯部支座的中间弯曲部后端的安装方向能够绕垂直轴线旋转,通过这样能够安装在左右任意一条下肢残缺的穿着者身上。
7.如权利要求1~6中的任一项所述的坐骨支承式假腿,其特征在于,具备向斜前下方安装到上述轴部的上部、用扎带固定残缺下肢侧的大腿的凹面形状的大腿支托部。
8.如权利要求1~7中的任一项所述的坐骨支承式假腿,其特征在于,在上述轴部的中间套上能上下自由移动的圆筒,在该圆筒下降的位置将圆筒内的轴分割成上下两部分并用铰链连接,使上述轴部的上部在上述圆筒上升的状态下能够向后倾斜。
9.如权利要求1~8中的任一项所述的坐骨支承式假腿,其特征在于,使上述轴部的任意区间为双重轴的结构,同时在该双重轴结构的部分沿轴向方向隔开适当间隔穿设多个直径方向的孔,并且在该孔内插拔自由地插入销钉,使上述轴部的长度能够分级地调整。
10.如权利要求1~9中的任一项所述的坐骨支承式假腿,其特征在于,采用使上述脚部在上述脚部的下侧触地面的前后方向的中间偏左右方向一侧的位置与上述轴部的下端连接,并将上述轴部下端插入或保持在上述脚部中且用螺栓紧固脚部,使上述脚部偏离上述轴部下端的方向可以左右切换。
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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JP2004173556 | 2004-06-11 | ||
JP2004173556A JP4512819B2 (ja) | 2004-06-11 | 2004-06-11 | 座骨支持式義足 |
Publications (1)
Publication Number | Publication Date |
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CN1720880A true CN1720880A (zh) | 2006-01-18 |
Family
ID=35455180
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CNA2005100780076A Pending CN1720880A (zh) | 2004-06-11 | 2005-06-10 | 坐骨支承式假腿 |
Country Status (6)
Country | Link |
---|---|
US (1) | US7288116B2 (zh) |
JP (1) | JP4512819B2 (zh) |
KR (1) | KR20060046413A (zh) |
CN (1) | CN1720880A (zh) |
DE (1) | DE102005025159A1 (zh) |
TW (1) | TW200612879A (zh) |
Cited By (5)
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CN102573572A (zh) * | 2009-10-23 | 2012-07-11 | 约瑟夫·格洛克尔 | 直立座椅 |
CN105769397A (zh) * | 2016-04-05 | 2016-07-20 | 江先利 | 一种假肢 |
CN106691641A (zh) * | 2016-12-26 | 2017-05-24 | 东莞产权交易中心 | 一种残疾人假肢 |
CN111000705A (zh) * | 2019-11-27 | 2020-04-14 | 西安交通大学 | 一种用于小腿中下段及足部骨折的行走支具 |
US11911331B2 (en) | 2019-11-28 | 2024-02-27 | Toyota Jidosha Kabushiki Kaisha | Leg brace and garment covering leg brace |
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JP2007229278A (ja) * | 2006-03-02 | 2007-09-13 | Shigetoshi Yamada | 大腿義足 |
US7959545B2 (en) * | 2007-03-20 | 2011-06-14 | Dmitry Olexenko | Walking aid |
US9615944B2 (en) | 2007-10-23 | 2017-04-11 | Rocky Mountain Manufacturing, Llc. | Couplable prosthetic device |
US20090292368A1 (en) * | 2008-01-16 | 2009-11-26 | John Plowman | Prosthetic limb connector |
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JP5793314B2 (ja) * | 2011-02-10 | 2015-10-14 | サンコールエンジニアリング株式会社 | 歩行補助装置 |
US8491667B2 (en) | 2011-04-08 | 2013-07-23 | Timothy R Dillingham | Modular prosthesis system |
US8470050B2 (en) | 2011-04-08 | 2013-06-25 | Timothy R. Dillingham | Rapid fit modular prosthetic device for accommodating gait alignment and residual limb shape and volume |
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CN106691779B (zh) * | 2017-01-22 | 2019-07-26 | 北京协同创新研究院 | 一种悬吊结构动力膝关节康复平台 |
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- 2004-06-11 JP JP2004173556A patent/JP4512819B2/ja not_active Expired - Fee Related
-
2005
- 2005-05-23 US US11/134,623 patent/US7288116B2/en not_active Expired - Fee Related
- 2005-06-01 DE DE102005025159A patent/DE102005025159A1/de not_active Withdrawn
- 2005-06-08 TW TW094118930A patent/TW200612879A/zh unknown
- 2005-06-10 KR KR1020050049686A patent/KR20060046413A/ko not_active Application Discontinuation
- 2005-06-10 CN CNA2005100780076A patent/CN1720880A/zh active Pending
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102573572A (zh) * | 2009-10-23 | 2012-07-11 | 约瑟夫·格洛克尔 | 直立座椅 |
CN102573572B (zh) * | 2009-10-23 | 2016-09-07 | 约瑟夫·格洛克尔 | 直立座椅 |
CN105769397A (zh) * | 2016-04-05 | 2016-07-20 | 江先利 | 一种假肢 |
CN106691641A (zh) * | 2016-12-26 | 2017-05-24 | 东莞产权交易中心 | 一种残疾人假肢 |
CN106691641B (zh) * | 2016-12-26 | 2018-08-07 | 东莞产权交易中心 | 一种残疾人假肢 |
CN111000705A (zh) * | 2019-11-27 | 2020-04-14 | 西安交通大学 | 一种用于小腿中下段及足部骨折的行走支具 |
US11911331B2 (en) | 2019-11-28 | 2024-02-27 | Toyota Jidosha Kabushiki Kaisha | Leg brace and garment covering leg brace |
Also Published As
Publication number | Publication date |
---|---|
KR20060046413A (ko) | 2006-05-17 |
US7288116B2 (en) | 2007-10-30 |
US20050278038A1 (en) | 2005-12-15 |
DE102005025159A1 (de) | 2005-12-29 |
TW200612879A (en) | 2006-05-01 |
JP4512819B2 (ja) | 2010-07-28 |
JP2005348989A (ja) | 2005-12-22 |
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