CN114585331A - 动物用股骨植入物 - Google Patents

动物用股骨植入物 Download PDF

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Publication number
CN114585331A
CN114585331A CN202080074149.8A CN202080074149A CN114585331A CN 114585331 A CN114585331 A CN 114585331A CN 202080074149 A CN202080074149 A CN 202080074149A CN 114585331 A CN114585331 A CN 114585331A
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China
Prior art keywords
femoral implant
bone growth
animal
animals
femoral
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CN202080074149.8A
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English (en)
Inventor
徐正祐
沈普均
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Animal Iron Protection Co ltd
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Animal Iron Protection Co ltd
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Publication of CN114585331A publication Critical patent/CN114585331A/zh
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    • B33Y80/00Products made by additive manufacturing

Abstract

本发明涉及一种动物用股骨植入物,更具体地,涉及一种可实现针对动物的髋关节置换术,借由动物自发的骨生长使植入物牢牢固定在动物的股骨上,以防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症,多孔部形成有多个空隙且强度相对较弱,由形成固体表面且强度相对较强的支架部保护,以确保在将股骨植入物插入到动物股骨的过程中,防止出现因多孔部的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断由于多孔部受损时可能出现的多孔颗粒(Porous Particles)渗入血管而引发的各种炎症反应等问题的,动物用股骨植入物。

Description

动物用股骨植入物
技术领域
本发明涉及一种动物用股骨植入物,更具体地,涉及一种可实现针对动物的髋关节置换术,借由动物自发的骨生长使植入物牢牢固定在动物的股骨上,以防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症,多孔部形成有多个空隙且强度相对较弱,由形成固体表面且强度相对较强的支架部保护,以确保在将股骨植入物插入到动物股骨的过程中,防止出现因多孔部的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断由于多孔部受损时可能出现的多孔颗粒(PorousParticles)渗入血管而引发的各种炎症反应等问题的,动物用股骨植入物。
背景技术
髋关节(Hip Joint),是骨盆(Pelvis)的外侧髋臼窝(Acetabular Fossa)和股骨(Femur)的股骨头(Femoral Head)相交的部位,其构成球窝关节(Ball andSocket Joint)形状,特征在于,可实现多个方向的关节运动。
髋臼窝和股骨头被关节软骨(Articular Cartilage)覆盖,在髋臼外侧部,盂唇(Labrum)和髋臼一起覆盖股骨头,在其外侧,关节囊(Articular Capsule)将髋臼和股颈骨(Femoral Neck)一起包围。
构成髋关节的股骨,根据其部位大致可分为:球形股骨头(Femoral Head);从股骨头开始逐渐变细且连接转子间部的股颈骨(Femoral Neck);及作为连接大转子(GreaterTrochanter)和小转子(Lesser Trochanter)的部位,其上附有多个肌肉的转子间部(Intertrochanter)。
这种髋关节因发生关节炎、骨折或其他疾病等而引发剧烈疼痛,经物理治疗或服用药物后,症状仍不见好转时,则考虑进行人工髋关节置换术,即一种用人工髋关节替换有问题的关节的手术。
人工髋关节置换术是指,去除受损骨骼和关节软骨后,用人工关节替换整个髋关节的手术。
股骨侧,以去除股骨头,再将金属股骨柄(Stem)插入并固定到股骨骨髓腔内的方式进行,将金属或陶瓷球(Ball)插入到股骨柄上端,用以替代去除的股骨头。
骨盆侧,去除受损的髋臼关节软骨,使用金属螺丝或水泥,将金属窝(Socket),即髋臼杯插入到髋臼固定,并在髋臼杯中插入塑料、陶瓷或金属衬垫(Liner),以确保球和窝可以平滑接触。
除上述全髋关节置换术外,人工髋关节置换术还包括:半人工关节置换术,即在股骨头关节软骨有损伤或疾病,但髋臼侧没有问题时,仅对股骨侧进行手术;及表面置换术,即髋臼侧窝类似于全置换术,但不去除股骨头,而是插入具有可覆盖股骨头的形状的人工关节植入物。
图1所示为现有人工髋关节置换术中使用的股骨植入物(90),其在韩国公开专利公报第10-2005-0112919号(2005.12.01)中得以公开。现有上述股骨植入(90)由主体部(91),颈部(93)和结合部(95)构成。
上述主体部(91),是指插入并固定到股骨骨髓腔内的构造;上述颈部,是指沿近端方向延伸形成,与结合部(95)和上述主体部(91)相连接的构造;上述结合部(95),是指形成于股骨植入物(90)的近端部,以便插入、组装与髋臼杯(A)接触的人工股骨头(H)截头圆锥形构造。
在将这种股骨植入物(90)固定到股骨骨髓腔内时,主要使用骨水泥,针对接受水泥型股骨植入物的患者进行的中长期追踪观察结果表明,多会发生无菌性松动,并在水泥周围出现严重的骨吸收等并发症。因此,针对在将上述股骨植入物(90)固定在股骨内部时,不使用水泥来固定的无水泥型植入物的相关研究正在火热进行中。
如上所述,股骨植入物(90)以人作为移植对象,其局限性在于,无法将其应用到与直立行走的人类具有不同解剖结构的动物(如:狗、猫)身上。另外,由于人们生活水平日渐提高,家庭形态也逐渐趋于核心家庭化,饲养伴侣动物的人数一直呈持续增长态势,因此,对于可治疗人类,还可治疗身体不适的动物的医疗技术开发方面的需求日渐增高,可现实却是,没有可以治疗动物的专用医疗器械。
动物的髋关节也发生类似于人类发生的疾病时,由于没有替换动物髋关节的专用植入物,以致无法为动物提供人工髋关节置换术等适当的手术。
因此,相关行业要求引进一种全新的技术,也就是开发一种反映动物解剖结构的动物用植入物,其在针对动物进行的全膝关节置换术中,可使动物的膝关节运动得到恢复,从而确保术后动物的正常行走。
因此,相关行业要求引进一种全新的技术,也就是开发一种反映动物解剖结构的动物用植入物,实现针对动物的人工髋关节置换术,以使动物的膝关节运动得到恢复,从而确保术后动物的正常行走。
专利文献1:韩国公开专利公报第10-2005-0112919号(2005.12.01)
发明内容
发明所要解决的课题
本发明旨在解决上述问题,
本发明的目的在于,提供一种动物用股骨植入物,以实现针对动物的人工髋关节置换术。
本发明的另一个目的在于,构造主体部、从上述主体部的近端部起延伸形成的颈部、从上述颈部的近端部起延伸形成的结合部,以使上述主体部插入并固定到动物股骨内,可借由上述颈部防止一定范围内的干扰现象,使动物的解剖关节运动得以恢复,放置上述结合部,使人工股骨头结合到结合部上。
本发明的另一个目的在于,在主体部的近端部上构造骨生长部,即使不使用骨水泥,也可使上述主体部借由动物的自发骨生长牢牢固定在动物的股骨上。
本发明的另一个目的在于,在主体部的远端部上构造柄部,在将上述主体部插入到动物的股骨骨髓腔内时,可使上述主体部的插入更容易进行,并可借由插入的柄部使上述主体部稳定固定在上述股骨内。
本发明的另一个目的在于,骨生长部被构造成与颈部的远端部形成段差,沿远端方向延伸形成,通过增加骨生长部的表面积来促进骨生长,但可防止因上述颈部与髋臼杯之间的干扰而导致的植入物的关节运动范围,相较于解剖关节运动范围会受限的问题。
本发明的另一个目的在于,在骨生长部上构造形成有多个空隙的多孔部,使植入物借由骨生长固定在股骨上,以确保在不使用骨水泥的情况下,防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症。
本发明的另一个目的在于,在骨生长部上构造支架部,使形成有多个空隙且强度相对较弱的多孔部可由上述支架部保护。
本发明的另一个目的在于,使形成固体表面且强度相对较强的支架部构造成沿骨生长部的边缘形成,以确保在将股骨植入物插入到动物股骨的过程中,防止出现因多孔部的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断由于多孔部受损时可能出现的多孔颗粒(Porous Particles)渗入血管而引发的各种炎症反应等问题。
本发明的另一个目的在于,通过3D打印方式制造形成有多个空隙的多孔部和形成固体表面的支架部,以使动物用股骨植入物的制作更容易,并提供适合各种动物的定制型植入物。
本发明的另一个目的在于,将相邻的多孔部和支架部构造成同一水平,以确保强度相对较弱的多孔部可由支架部保护,但当主体部被插入到动物的骨髓腔内时,则使上述多孔部与骨内壁紧密接触,以促进骨生长。
本发明的另一个目的在于,构造从骨生长部的远端部起开始缩小,形成段差,沿远端方向延伸形成的柄部,在将动物用股骨植入物插入到动物的股骨骨髓腔内时,使插入更容易进行。
本发明的另一个目的在于,结合到动物用股骨植入物的人工股骨头的尺寸,会随从小型动物,到中型动物,再到大型动物的变化而变大,结合部的尺寸也会随之变大,当上述结合部的尺寸较颈部相对变大时,颈部则相对变薄且无法承受集中的应力,上述颈部也很容易受损,因此,应构造一种在上述结合部的尺寸变大时,上述颈部的尺寸也变大,当上述结合部的尺寸变小时,上述颈部的尺寸也变小的动物用股骨植入物,最大限度减少颈部造成的干扰问题,并防止颈部受损问题。
本发明的另一个目的在于,在骨生长部上构造锁定孔,以使锁定螺栓固定到上述锁定孔上,进而防止插入到动物股骨内的动物用股骨植入物发生沉降。
本发明的另一个目的在于,在骨生长部的外侧面构造锁定孔,以使锁定螺栓从股骨外侧插入到内侧方向,进而确保在进行动物的人工髋关节置换术时,可保证手术医生的视野并实现手术便利性。
本发明的另一个目的在于,锁定孔的孔中心轴被构造成与柄轴垂直,以便在因血液、体液、遗物等导致手术医生视野极度受限的手术情况下,可确保手术医生能够更容易地将锁定螺栓固定到锁定孔上。
本发明的另一个目的在于,锁定孔的中心轴不与柄轴垂直,而是被构造成倾斜一定的角度,以确保更有效地防止插入动物股骨内的植入物发生沉降。
用于解决课题的手段
为实现上述目的,本发明借由具有以下构造的实施例来实现。
依据本发明的一个实施例,本发明的特征在于,包括:插入到动物股骨内的主体部,结合人工股骨头的结合部,及连接上述主体部和上述结合部的颈部。
依据本发明的另一个实施例,本发明的特征在于,上述主体部,包括:在近端部上形成,以促进骨生长的骨生长部,及在远端部上形成,以使插入到股骨内的动作更容易进行的柄部。
依据本发明的另一个实施例,本发明的特征在于,上述骨生长部,从上述颈部的远端部起开始扩大,形成段差,沿远端方向延伸形成。
依据本发明的另一个实施例,本发明的特征在于,上述骨生长部,包括:形成有多个空隙,以促进骨生长的多孔部。
依据本发明的另一个实施例,本发明的特征在于,上述骨生长部,包括:形成固体表面,以保护上述多孔部的支架部。
依据本发明的另一个实施例,本发明的特征在于,上述支架部,沿上述骨生长部的边缘形成。
依据本发明的另一个实施例,本发明的特征在于,上述多孔部和上述支架部,通过3D打印方式制造。
依据本发明的另一个实施例,本发明的特征在于,相邻的上述多孔部与上述支架部的水平相同。
依据本发明的另一个实施例,本发明的特征在于,上述柄部,从上述骨生长部的远端部起开始缩小,形成段差,沿远端方向延伸形成。
依据本发明的另一个实施例,本发明的特征在于,上述动物用股骨植入物,其上述颈部的尺寸,随上述结合部的尺寸而变化。
依据本发明的另一个实施例,本发明的特征在于,上述动物用股骨植入物,在上述结合部的尺寸变大时,上述颈部的尺寸也变大,在上述结合部的尺寸变小时,上述颈部的尺寸也变小。
依据本发明的另一个实施例,本发明的特征在于,包括:插入到动物股骨内的主体部,结合人工股骨头的结合部,及连接上述主体部和上述结合部的颈部,上述主体部,包括:在近端部形成,以促进骨生长的骨生长部,及在远端部形成,以使插入到股骨内的动作更容易进行的柄部,上述骨生长部,还包括:插有防止沉降的锁定螺栓的锁定孔。
依据本发明的另一个实施例,本发明的特征在于,上述锁定孔,在上述骨生长部的外侧面上形成。
依据本发明的另一个实施例,本发明的特征在于,上述锁定孔,其孔中心轴与柄轴垂直。
依据本发明的另一个实施例,本发明的特征在于,上述锁定孔,其孔中心轴不与柄轴垂直。
发明效果
本发明借由前述实施例及以下要描述的构造、组合和使用关系,可获得以下效果。
本发明的效果在于,提供一种动物用股骨植入物,以实现针对动物的人工髋关节置换术。
本发明得出的效果在于,构造主体部、从上述主体部的近端部起延伸形成的颈部、从上述颈部的近端部起延伸形成的结合部,以使上述主体部插入到动物股骨内固定,可借由上述颈部防止一定范围内的干扰现象,使动物的解剖关节运动得以恢复,放置上述结合部,使人工股骨头结合到结合部上。
本发明的效果在于,在主体部的近端部上构造骨生长部,即使不使用骨水泥,也可使上述主体部借由动物的自发骨生长牢牢固定在动物的股骨上。
本发明的效果在于,在主体部的远端部上构造柄部,在将上述主体部插入到动物的股骨骨髓腔内时,可使上述主体部的插入更容易进行,并可借由插入的柄部使上述主体部稳定固定在上述股骨内。
本发明得出的效果在于,骨生长部被构造成与颈部的远端部形成段差,沿远端方向延伸形成,通过增加骨生长部的表面积来促进骨生长,但可防止因上述颈部与髋臼杯之间的干扰而导致的植入物的关节运动范围,相较于解剖关节运动范围会受限的问题。
本发明的效果在于,在骨生长部上构造形成有多个空隙的多孔部,使植入物借由骨生长固定在股骨上,以确保在不使用骨水泥的情况下,防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症。
本发明的效果在于,在骨生长部上构造支架部,使形成有多个空隙且强度相对较弱的多孔部可由上述支架部保护。
本发明得出的效果在于,使形成固体表面且强度相对较强的支架部构造成沿骨生长部的边缘形成,以确保在将股骨植入物插入到动物股骨的过程中,防止出现因多孔部的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断由于多孔部受损时可能出现的因多孔颗粒(Porous Particles)渗入血管而引发的各种炎症反应等问题。
本发明的效果在于,通过3D打印方式制造形成有多个空隙的多孔部和形成固体表面的支架部,以使动物用股骨植入物的制作更容易,并提供适合各种动物的定制型植入物。
本发明的效果在于,将相邻的多孔部和支架部构造成同一水平,以确保强度相对较弱的多孔部可由支架部保护,但当主体部被插入到骨髓腔内时,则使上述多孔部与骨内壁紧密接触,以促进骨生长。
本发明的得出的效果在于,构造从骨生长部的远端部起开始缩小,形成段差,沿远端方向延伸形成的柄部,在将动物用股骨植入物插入到动物的股骨骨髓腔内时,使插入更容易进行。
本发明的效果在于,结合到动物用股骨植入物的人工股骨头的尺寸,会随从小型动物,到中型动物,再到大型动物的变化而变大,结合部的尺寸也会随之变大,当上述结合部的尺寸较颈部相对变大时,颈部则相对变薄且无法承受集中的应力,上述颈部也很容易受损,因此,应构造一种在上述结合部的尺寸变大时,上述颈部的尺寸也变大,当上述结合部的尺寸变小时,上述颈部的尺寸也变小的动物用股骨植入物,最大限度减少颈部造成的干扰问题,并防止颈部受损问题。
本发明的效果在于,在骨生长部上构造锁定孔,以使锁定螺栓固定到上述锁定孔上,进而防止插入到动物股骨内的动物用股骨植入物发生沉降。
本发明得出的效果在于,在骨生长部的外侧面构造锁定孔,以使锁定螺栓从股骨外侧插入到内侧方向,进而确保在进行动物的人工髋关节置换术时,可保证手术医生的视野并实现手术便利性
本发明的效果在于,锁定孔的孔中心轴被构造成与柄轴垂直,以便在因血液、体液、遗物等导致手术医生视野极度受限的手术情况下,可确保手术医生能够更容易地将锁定螺栓固定到锁定孔上。
本发明的效果在于,锁定孔的中心轴不与柄轴垂直,而是被构造成倾斜一定的角度,以确保更有效地防止插入动物股骨内的植入物发生沉降。
附图说明
图1示出的是在现有人工髋关节置换术中使用的股骨植入物。
图2示出的是依据本发明的一个实施例的动物用股骨植入物的透视图。
图3是图2的动物用股骨植入物的正视图。
图4是图2的动物用股骨植入物的内视图。
图5是图2的动物用股骨植入物的近端部视图。
图6是图2的动物用股骨植入物的远端部视图。
图7示出的是相邻的多孔部与支架部具有同一水平。
图8示出的是颈部的尺寸随结合部的尺寸而变化。
图9是依据本发明的一个实施例的动物用股骨植入物的相关附图。
图10是依据本发明的另一个实施例的动物用股骨植入物的相关附图。
图11是本发明的使用状态图。
具体实施方式
下面将参照附图对依据本发明的动物用股骨植入物的优选实施例进行详细地描述。在本发明的以下描述中,如果针对公知功能或构造的详细描述可能不必要地造成本发明要旨不请,则将省略其详细描述。除非另有定义,否则本说明书中的所有术语,均与本发明所属技术领域的普通技术人员所理解的术语之一般含义相同,如与本说明书所用术语含义发生冲突,则遵循本说明书所用定义。
本发明动物用股骨植入物(1),是可实现针对动物的人工髋关节置换术而被移植到动物股骨内的植入物,优选地,整个植入物(1)可通过3D打印技术制造。上述动物用股骨植入物(1)具有多孔部,以便借由动物的自发骨生长,使植入物牢牢固定在股骨上,无需使用骨水泥,因此,可防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症。
另外,多孔部形成有多个空隙且强度相对较弱,由形成固体表面且强度相对较强的支架部保护,以确保在将动物用股骨植入物(1)插入到动物股骨内的过程中,防止出现因多孔部的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断由于多孔部受损时可能出现的多孔颗粒(Porous Particles)渗入血管而引发的各种炎症反应等问题。
图2示出的是依据本发明的一个实施例的动物用股骨植入物的透视图,参照图2进行描述,本发明动物用股骨植入物(1)大体包括:主体部(10)、颈部(30)和结合部(50)。
上述主体部(10),是插入到动物股骨内的构造,可看作除后述颈部(30)和结1合部(50)的以外的其余部分的总称。上述主体部(10)是被移植到动物的股骨骨髓腔内的部分,优选地,应构造成可使骨髓腔内的插入容易进行,且可在定位移植后与骨骼快速融合(Fusion)。为此,上述主体部(10)如图2至图4所示,具有朝远端部逐渐缩小的锥形(Taper)形状。有关上述主体部(10)的制造方法,并不以任何特定的概念对其加以限定,但,优选地,可通过3D打印方式制造。
图3是图2的动物用股骨植入物的正视图,参照图3进行描述,上述主体部(10),包括:骨生长部(11)和柄部(13)。
上述骨生长部(11),是在上述主体部(10)的近端部形成,以促进骨生长的构造,上述骨生长部(11)从后述颈部(30)的远端部起开始扩大,形成段差(S),沿远端方向延伸形成。借此,通过增加上述骨生长部(11)的表面积来促进骨生长,但可防止因后述颈部(30)与髋臼杯之间的干扰而导致植入物的关节运动范围,相较于解剖关节运动范围会受限的问题。通过上述骨生长部(11)可促进自然骨生长,因此,在将上述主体部(10)固定在动物股骨上的过程中,可以不使用骨水泥。
这种上述骨生长部(11),包括:多孔部(111)和支架部(113)。
上述多孔部(111),是形成有多个空隙,以促进骨生长的构造,使动物用股骨植入物(1)借由骨生长固定在股骨上,以确保在不使用骨水泥的情况下,防止出现使用骨水泥时可能发生的无菌性松动,及水泥周围发生的骨吸收等并发症。上述多孔部(1)优选地,可通过3D打印方式形成。
上述支架部(113),是形成固体表面的构造,优选地,可沿上述骨生长部(11)的边缘形成。即,上述支架部(113)如图2至图6所示,优选地,可见其形成于多孔部(111)中的多孔结构层相交、形成边界的所有部分之上。上述多孔部(111)如图2至图6所示,可见其形成于上述主体部(4)的4面之上,因此,上述支架部(113)形成在面与面相交的边缘上,以保护上述多孔部(111)的边缘(Edge)。在上述骨生长部(11)上构造上述支架部(113),使形成有多个空隙且强度相对较弱的上述多孔部(111)由上述支架部(113)保护,因此,在将动物用股骨植入物(1)插入到动物股骨内的过程中,可防止出现因强度较弱的上述多孔部(111)的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题,并阻断因上述多孔部(111)受损时可能出现的多孔颗粒(Porous Particles)渗入血管而引发的各种炎症反应等问题。
这种上述多孔部(111)和上述支架部(113)可通过3D打印方式制造。借此,动物用股骨植入物(1)的制作更容易,并可提供适合各种动物的定制型植入物。
参照图7进行描述,相邻的多孔部(111)和支架部(113)可被构造成具有相同的水平。相同的水平是指,多孔部(111)与支架部(113)相交的部分不向任一侧突出,如图7所示,形成相同的高度。凭借这种构造,强度相对较弱的上述多孔部(111)可由上述支架部(113)保护,但当上述主体部(10)被插入到动物的骨髓腔内时,可使上述多孔部(111)与骨内壁紧密接触,以促进骨生长。
上述柄部(13),是形成在主体部(10)的远端部,以使插入到股骨内的动作更容易进行的构造,其在将上述主体部(10)插入到动物的股骨骨髓腔内时,可使上述主体部(10)的插入更容易进行,并可借由插入的柄部(13)使上述主体部(10)稳定固定在上述股骨内。上述柄部(13),从上述骨生长部(11)的远端部起开始缩小,形成段差,可沿远端方向延伸形成。借此,在将动物用股骨植入物(1)插入到动物的股骨骨髓腔内时,可使插入更容易进行。上述柄部(13)如图2至图4所示,其可被构造成,形成固体表面,借由平滑平面减少摩擦力,增加物理强度。这种上述柄部(13)也可通过3D打印方式制作。
上述颈部(30),是连接上述主体部(10)和后述结合部(50)的构造,可借由上述颈部(30)防止一定范围内的干扰现象,使动物的解剖关节运动得以恢复。上述动物用股骨植入物(1),可被构造成,上述颈部(30)的尺寸,随后述结合部(50)的尺寸而变化。
参照图8进行描述,例如,上述结合部(50)的A点横截面积为12.23㎜2时,上述颈部(30)的B点横截面积则为9.75㎜2,上述结合部(50)的A点横截面积为24.59㎜2时,上述颈部(30)的B点横截面积则为19.97㎜2,上述结合部(50)的A点横截面积为41.21㎜2时,上述颈部(30)的B点横截面积则为33.61㎜2
即,可见上述动物用股骨植入物(1),在后述结合部(50)的尺寸变大时,上述颈部(30)的尺寸也变大,后述结合部(50)的尺寸变小时,上述颈部(30)的尺寸也变小。
就人类而言,正常成年人的体型大同小异,但,就动物而言,则有小型动物、中型动物、大型动物之分,体型差异显著。结合到动物用股骨植入物(1)上的人工股骨头的尺寸,会随着从小型动物,到中性动物,再到大型动物的变化而变大,后述结合部(50)的尺寸也随之变大,当上述结合部(50)的尺寸较上述颈部(30)相对变大时,上述颈部(30)则相对变薄且无法承受集中的应力,上述颈部(30)也很容易受损。
上述结合部(50),是结合人工股骨头的构造,可从上述颈部(30)的近端部延伸形成。不以任何特定形状,对上述结合部(50)的形状加以限定,但优选地,可具有截头圆锥形构造。可对这种上述结合部(50)进行机械加工,以满足其与人工股骨头的结合条件。即,以3D打印方式制造整个植入物(1)后,可单独对上述结合部(50)进行机械加工。
图9是依据本发明的一个实施例的动物用股骨植入物(1)的相关附图,在本实施例中,特征在于,在上述骨生长部(11)上还增加一个锁定孔(115),因此,为避免重复叙述,以下,仅围绕新增加的上述锁定孔(115)进行描述。
上述锁定孔(115),是插有防止沉降的锁定螺栓的构造,如图9所示,其可在上述骨生长部(11)的外侧面上形成。优选地,可对上述锁定孔(115)进行机械加工。在上述骨生长部(11)上构造上述锁定孔(115),以使锁定螺栓固定到上述锁定孔(115)上,进而防止插入到动物股骨内的动物用股骨植入物(1)发生沉降。
另外,在上述骨生长部(11)中,应在上述骨生长部(11)的外侧面上形成上述锁定孔(115),以使锁定螺栓从股骨外侧插入到内侧方向,进而确保在进行动物的人工髋关节置换术时,可保证手术医生的视野并实现手术便利性。
这种上述锁定孔(115)可被构造成,孔中心轴(AH)与柄轴(AS)垂直。借此,在因血液、体液、遗物等导致手术医生视野极度受限的手术情况下,可确保手术医生能够更容易地将锁定螺栓固定到上述锁定孔(115)上。
图10是依据本发明的另一个实施例的动物用股骨植入物(1)的相关附图,在本实施例中,特征在于,在上述骨生长部(11)上形成的锁定孔(115)倾斜形成。即,如图9所示,上述锁定孔(115),特征在于,孔中心轴不与柄轴垂直。上述锁定孔(115)的孔中心轴(AH)不与柄轴(AS)垂直,如图10所示,被构造成倾斜一定的角度,以确保更有效地防止插入动物股骨内的植入物发生沉降。在图10中,上述锁定孔(115)朝向远端方向倾斜,但,上述锁定孔(115)的倾斜方向也可构造成,朝向相反的近端方向倾斜。
图11是本发明的使用状态图,参照图11进行描述,本发明动物用股骨植入物(1)如图11所示,是在针对动物的人工髋关节置换术过程中,被插入到动物的股骨(F)骨髓腔内的假体。通过上述动物用股骨植入物(1)可实现针对动物的人工髋关节置换术,如上所述,上述动物用股骨植入物(1)构造多孔部(111),不使用骨水泥,因此,可防止骨水泥引发的各种问题。
最重要的是,这种多孔部(111),可由形成固体表面且强度相对较强的支架部(113)保护,因此,在将动物用股骨植入物(1)插入到动物股骨内的过程中,可防止出现因上述多孔部(111)的边缘与骨骼之间的摩擦或外力而产生的碎裂或弯曲等受损问题。多孔部(111)受损时,会生成从多孔部(111)上掉落的细微颗粒,即多孔颗粒,而上述多孔颗粒渗入血管会引发各种炎症反应。但,本源发明通过上述支架部(113)的构造可从根源上阻断上述多孔部(111)受损,因此,可提前预防由多孔颗粒引发的问题。
以上的详细描述旨在举例说明本发明。另外,上述内容示出、描述的是本发明的优选实施方式,而本发明亦可用于其他各种组合、变更和环境。即,可在本说明书中公开的发明概念范围内;及与所述公开内容均等的范围及/或本领域的技术或知识范围内进行变更或修改。所述实施例描述的是旨在实现本发明技术思想的最佳状态,而在本发明的具体应用领域和用途中,也可根据需要进行各种变更。因此,本发明的上述详细描述仅为公开的实施状态,而非用于限定本发明。另外,还应理解为,所附权利要求书也包括其他实施状态。

Claims (15)

1.一种动物用股骨植入物,其特征在于,包括:插入到动物股骨内的主体部、结合人工股骨头的结合部以及连接所述主体部和所述结合部的颈部。
2.根据权利要求1所述的动物用股骨植入物,其特征在于,所述主体部包括:在近端部上形成以促进骨生长的骨生长部以及在远端部上形成以使插入到股骨内的动作更容易进行的柄部。
3.根据权利要求2所述的动物用股骨植入物,其特征在于,所述骨生长部从所述颈部的远端部起开始扩大,形成段差,沿远端方向延伸形成。
4.根据权利要求3所述的动物用股骨植入物,其特征在于,所述骨生长部包括:形成有多个空隙,以促进骨生长的多孔部。
5.根据权利要求4所述的动物用股骨植入物,其特征在于,所述骨生长部包括:形成固体表面,以保护所述多孔部的支架部。
6.根据权利要求5所述的动物用股骨植入物,其特征在于,所述支架部沿所述骨生长部的边缘形成。
7.根据权利要求6所述的动物用股骨植入物,其特征在于,通过3D打印方式制造所述支架部。
8.根据权利要求6所述的动物用股骨植入物,其特征在于,相邻的所述多孔部与所述支架部的水平相同。
9.根据权利要求2所述的动物用股骨植入物,其特征在于,所述柄部从所述骨生长部的远端部起开始缩小,形成段差,沿远端方向延伸形成。
10.根据权利要求1所述的动物用股骨植入物,其特征在于,在所述动物用股骨植入物中,所述颈部的尺寸随所述结合部的尺寸而变化。
11.根据权利要求10所述的动物用股骨植入物,其特征在于,在所述动物用股骨植入物中,在所述结合部的尺寸变大时,所述颈部的尺寸也变大,在所述结合部的尺寸变小时,所述颈部的尺寸也变小。
12.一种动物用股骨植入物,其特征在于,包括:插入到动物股骨内的主体部、结合人工股骨头的结合部以及连接所述主体部和所述结合部的颈部,所述主体部,包括:在近端部形成以促进骨生长的骨生长部以及在远端部形成以使插入到股骨内的动作更容易进行的柄部,所述骨生长部还包括:插有防止沉降的锁定螺栓的锁定孔。
13.根据权利要求12所述的动物用股骨植入物,其特征在于,所述锁定孔在所述骨生长部的外侧面上形成。
14.根据权利要求13所述的动物用股骨植入物,其特征在于,所述锁定孔的孔中心轴与柄轴垂直。
15.根据权利要求13所述的动物用股骨植入物,其特征在于,所述锁定孔的孔中心轴不与柄轴垂直。
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KR102350091B1 (ko) 2022-01-12

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