CN112245002B - 一种保护肾脏组织的钬激光碎石设备的光纤套 - Google Patents

一种保护肾脏组织的钬激光碎石设备的光纤套 Download PDF

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CN112245002B
CN112245002B CN202011229618.7A CN202011229618A CN112245002B CN 112245002 B CN112245002 B CN 112245002B CN 202011229618 A CN202011229618 A CN 202011229618A CN 112245002 B CN112245002 B CN 112245002B
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黄恒
郑国�
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Abstract

本发明提供了一种保护肾脏组织的钬激光碎石设备的光纤套,属于钬激光碎石设备技术领域。所述钬激光碎石设备的光纤套包括光纤、双层空心光纤套、纤维丝棒,纤维丝固定帽。所述双层空心光纤套设有外层膜和内层膜,所述内层膜和外层膜之间形成空心的结构,设置有多个纤维丝棒,纤维丝棒的内部有一个纤维丝,其结构与双层空心光纤套相同,所述双层空心纤维丝套外层膜的两侧设有多个出液孔,且同一高度下的两个出液孔的夹角在150~170°之间。本发明结构简单,成本低,不影响光纤的光路,没有复杂的电子结构,用完可以消毒,降低了使用成本,可以极大的减少肾结石病人的肾脏损伤。

Description

一种保护肾脏组织的钬激光碎石设备的光纤套
技术领域:
本发明属于体内激光碎石设备技术领域,涉及一种保护肾脏组织的钬激光碎石设备的光纤套。
背景技术:
钬激光是以钇铝石榴石(YAG)为激活媒质,掺敏化离子铬(Cr)、传能离子铥(Tm)、激活离子钬(Ho)的激光晶体(Cr:Tm:Ho:YAG)制成的脉冲固体激光装置产生的新型激光。可应用于泌尿外科、五官科、皮肤科、妇科等科室手术。该激光手术为无创或微创手术,病人的治疗痛苦非常小。
钬激光碎石与常用的体外冲击波碎石、气压弹道碎石相比,具有很强的安全性以及广泛的适用性。体外冲击波碎石是利用液电或电磁冲击波发生器发射高能量的冲击波,穿透人体,聚焦在体内尿路结石上,释放能量将结石击碎,结石碎片自然排出。该机器需X线或B超的准确定位,冲击波在穿透机体时也会造成组织损伤,如肾小球、肾小管的破坏,输尿管狭窄。反复进行体外冲击波碎石会导致肾功能下降,甚至肾脏萎缩。气压弹道碎石治疗中、下段输尿管结石时,容易使结石回冲至上段输尿管或肾内,使手术失去目标,且其仅能在硬性输尿管镜下进行,所以对上段输尿管结石及肾结石几乎无能为力。而钬激光则不然,碎石过程中结石很少跑动,回冲率非常低,因而效率大为提高。它可以通过膀胱镜、输尿管镜及经皮肾镜直接碎石,不会造成组织损伤。而且钬激光光纤是可弯曲的,不仅可以通过硬性输尿管镜导入,还可以通过软性输尿管镜导入进行碎石。所以它对任何部位的输尿管结石、肾结石均可进行有效碎石。采用钬激光治疗膀胱结石更是易如反掌,只需通过膀胱镜的工作通道将钬激光光纤引入,然后发射激光,数秒钟后结石就被击碎并通过尿道排出,既安全又省时。
如非脉冲式二氧化碳激光,是利用热效应汽化结石,由于温度高(2000~3000℃),故热损伤大。酸结石无效;钕激光则由于精确性较差,不能用于碎石治疗。传统的激光碎石仪就是仅仅是一个外皮和一个光纤,碎石的激光可以通过光纤传递到钬激光碎石设备的光纤套,钬激光碎石设备的光纤套部仅仅是一个硬质的玻璃纤维探针,可以将激光传导到肾结石的位置,将肾结石粉碎,并随着尿液通过肾小管排除体外,但传统的钬激光碎石设备的光纤套由于瞬间的高热量,其对肾脏组织伤害比较大,周围的肾脏组织会因为激光的副作用而发热,造成不可逆的细胞伤害,损坏肾功能。为此,申请人根据激光碎石仪的激光特点,提供一种全新的保护肾脏组织的钬激光碎石设备的光纤套。
发明内容:
为了防止钬激光对肾脏组织的损伤,本发明通过研究,在传统的光纤碎石设备的光纤外层和光纤头处进行了改进,提出了一种保护肾脏组织的钬激光碎石设备的光纤套,具体结构如下:
所述钬激光碎石设备的光纤套包括光纤、双层空心光纤套、纤维丝棒,纤维丝固定帽;
其中,所述双层空心光纤套设有外层膜和内层膜,其内层膜固定在硬质光纤皮外侧,所述内层膜和外层膜之间形成空心的结构,内层膜和外层膜组成了密封的袋状结构;所述双层空心光纤套靠近激光发生器一端设有进液口;
所述一个纤维丝棒的内部有一个纤维丝,纤维丝固定在纤维丝固定环上,所述纤维丝固定环与硬质光纤皮的底部连接,多个纤维丝固定在纤维丝固定环上,所述纤维丝的外侧也包裹有双层空心纤维丝套,其结构与双层空心光纤套相同,双层空心纤维丝套的顶部与双层空心光纤套相连,并是连通的,液体可以通过双层空心光纤套流入双层空心纤维丝套。所述双层空心纤维丝套外层膜的两侧设有多个出液孔,且同一高度下的两个出液孔的夹角在150~170°之间;
所述纤维丝固定帽的顶部为一个固定环,所述固定环上设置与纤维丝棒相同的数量的固定脚,所述固定脚上设一个固定槽,所述固定槽为带有弧度的“7”字型,其大小与纤维丝的匹配,纤维丝通过光纤的旋转从固定槽中滑出。
其中,所述双层空心光纤套和双层空心纤维丝套为软质材料。
其中,所述双层空心光纤套的外层膜比内层膜大1~3mm,双层空心纤维丝套外层膜比内层膜大0.5~1mm。
其中,双层空心光纤套和双层空心纤维丝套的外层膜或外层膜为防水的高分子膜,本发明选用的PVC聚乙烯膜。
其中,所述纤维丝为硬质可弯曲的,包括高分子材料丝和金属丝,其弯曲压力在0.2~3N之间。
其中,所述纤维丝底部比双层空心纤维丝套长。
其中,所述多个纤维丝固定在纤维丝固定环上优选8个纤维丝。
其中,所述硬质光纤皮为不透光材料。
有益效果
首先,本发明通过在传统的钬激光碎石设备的光纤外层设计了一种可以注射保护液的保护套,这种保护套在不注射保护液的时候,其为空心干瘪的状态,可以极大的减少光纤的直径,可以几乎不增加光纤的直径,方便将光纤穿入肾脏的结石处。
第二,本发明在光纤头的位置用多个纤维丝支撑8个脚,这八个脚在穿入人体组织时,是通过纤维丝固定帽放在一起,该纤维丝固定帽对应的八个固定脚上设置了一个类似于“7”字型的固定槽,该固定槽在受到压力的时候会卡住八个纤维丝固定在八个固定脚上,当光纤头到达结石位置时,压力减少,轻轻旋转光纤,8个纤维丝会随着固定槽上面的形状从固定槽中滑落,然后,再在外力的顶托作用下,由于结石为弧状,纤维丝会随着结石的形状往两边运动,直到包裹住2/3个结石,这时候,通过进液口注射保护液,在压力下,双层空心光纤套起到了一个保护液通道的左右,保护液最终从出液孔中喷出,经过测试,当出液孔的夹角在150~170°之间时,其保护液可以喷满整个结石的周围,覆盖率为95%以上,也是撑大了石头与人体组织的空间,降低碎石时的温度,从而减少对肾脏组织的伤害。
最后,本发明结构简单,成本低,不影响光纤的光路,没有复杂的电子结构,用完可以消毒,降低了使用成本,可以极大的减少肾结石病人的肾脏损伤。
附图说明
图1为本发明的纤维丝固定帽装配完成的结构图;
图2为本发明的硬质骨架的结构图;
图3为本发明的进液口的结构图;
图4为本发明的纤维丝固定帽未装配完成的结构图;
图5为本发明使用时的结构示意图;
图6为本发明A处的放大图;
图7为本发明纤维丝皮套的断面图;
图8为本发明纤维丝固定帽的结构图。
如图1~图8所示,1为光纤,2为双层空心光纤套,3为纤维丝棒,4为纤维丝固定帽,11为硬质光纤皮,12为纤维丝固定环,21为进液口,31为出液孔,32为纤维丝,33为双层空心纤维丝套,41为固定脚,42为固定槽,43为固定环。
具体实施方式
下面结合具体实施例和附图对本发明进行详细说明。
本发明提供了一种保护肾脏组织的钬激光碎石设备的光纤套,所述钬激光碎石设备的光纤套包括光纤1、双层空心光纤套2、纤维丝棒3、纤维丝固定帽4。其中,所述光纤1为细长的光纤,用于传递钛激光,所述光纤外层包裹有一层硬质光纤皮11,其为不透光材质,用于防止光纤折断,所述双层空心光纤套2为软质材料,为双层结构,完全套在硬质光纤皮11的外侧,其内层膜固定粘贴在硬质光纤皮11外侧,外层膜暴露在外面,外层膜比内层膜大1~3mm,所述内层膜和外层膜之间形成一个空心的结构,内外层中间为空心的结构,内层和外层组成了密封的袋状结构,为不漏液的保护袋。所述双层空心光纤套2远离钬激光碎石设备的光纤套处设有进液口21,所述进液口21用于将保护液注入双层空心光纤套2的内部。双层空心光纤套2为防水的高分子膜,本发明选用的PVC聚乙烯膜。
所述纤维丝棒3的内部有个纤维丝32,设置有八个纤维丝32固定在纤维丝固定环12上,所述纤维丝固定环12与硬质光纤皮11的底部连接,所述纤维丝32为硬质可弯曲的,纤维丝32可以是高分子材料,也可以是钢丝、银丝、铝丝等金属丝,其在0.2~3N的压力下可以弯曲。所述纤维丝32外侧也包裹有双层空心纤维丝套33,其结构与双层空心光纤套2相同,双层空心纤维丝套33的顶部与双层空心光纤套2相连,并是连通的,液体可以通过双层空心光纤套2流入双层空心纤维丝套33。所述双层空心纤维丝套33的两侧设有多个出液孔31,同一高度下的两个出液孔的夹角在150~170°之间。所述纤维丝32底部比双层空心纤维丝套33长,最底部的纤维丝32是没有双层空心纤维丝套33保护的。
所述纤维丝固定帽4的顶部为一个固定环43,固定环43为一个环形的硬质金属,所述固定环上等距设有8个固定脚41,所述固定脚41上设一个固定槽42,所述固定槽42为带有弧度的“7”字型,其大小与纤维丝32的匹配,纤维丝32伸出来的针脚刚好可以插入固定槽42中,当转动纤维丝固定帽4后,纤维丝32可以轻松的从固定槽42中滑出。
本发明的钬激光碎石设备的光纤套保护套适用于激光体内碎石设备,其使用方法如下:
首先,使用一个和本发明同样粗细程度的穿孔针穿入肾结石的部位,到达结石部位后取出穿孔针,将本发明的激光光纤安装好纤维丝固定帽,顺着穿孔针的路径到达有结石的部位,到达结石部位后,轻轻转动激光光纤,使得8个纤维丝32从固定槽42中转出,此时,继续向下穿,由于纤维丝32非常细,其遇到坚硬的结石后会弯曲变形,而结石基本是圆球装的,其纤维丝32会包裹着圆球向下运动,直到纤维丝完全分布在结石的四周。然后,通过进液口向本发明的激光光纤的双层空心光纤套的内部注射保护液,保护液顺着双层空心光纤套流入双层空心纤维丝套中,再通过出液孔喷出,将保护液喷涂在结石与肾脏组织的缝隙处。最后,喷完保护液后,再将进液口连接抽液设备,开始将保护液抽出来,开启抽液设备3~4s后开启激光碎石,激光产生的大量热量被保护液吸收,并迅速被抽出来,产生流动的液体,使得肾脏组织的温度不高于40℃,从而保护了肾脏组织。

Claims (9)

1.一种保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述钬激光碎石设备的光纤套包括光纤(1)、双层空心光纤套(2)、纤维丝棒(3),纤维丝固定帽(4);
其中,所述双层空心光纤套(2)设有外层膜和内层膜,其内层膜固定在硬质光纤皮(11)外侧,所述内层膜和外层膜之间形成空心的结构,内层膜和外层膜组成了密封的袋状结构;所述双层空心光纤套(2)靠近激光发生器一端设有进液口(21);
所述纤维丝棒(3)的内部有纤维丝(32),纤维丝(32)固定在纤维丝固定环(12)上,所述纤维丝固定环(12)与硬质光纤皮(11)的底部连接,多个纤维丝(32)固定在纤维丝固定环(12)上,所述纤维丝(32)的外侧也包裹有双层空心纤维丝套(33),其结构与双层空心光纤套(2)相同,双层空心纤维丝套(33)的顶部与双层空心光纤套(2)相连,并是连通的,液体通过双层空心光纤套(2)流入双层空心纤维丝套(33);所述双层空心纤维丝套(33)外层膜的两侧设有多个出液孔(31),且同一高度下的两个出液孔的夹角在150~170°之间;
所述纤维丝固定帽(4)的顶部为一个固定环(43),所述固定环(43)上设置与纤维丝棒(3)相同的数量的固定脚(41),所述固定脚(41)上设一个固定槽(42),所述固定槽(42)为带有弧度的“7”字型,其大小与纤维丝(32)的匹配,纤维丝(32)通过光纤的旋转从固定槽(42)中滑出;纤维丝(32)用于包裹结石并将保护液喷涂在结石与肾脏组织的缝隙处。
2.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述双层空心光纤套(2)和双层空心纤维丝套(33)为软质材料。
3.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述双层空心光纤套(2)的外层膜比内层膜大1~3mm,双层空心纤维丝套(33)外层膜比内层膜大0.5~1mm。
4.根据权利要求2所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述双层空心光纤套(2)和双层空心纤维丝套(33)的外层膜为防水的高分子膜。
5.根据权利要求2所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述双层空心光纤套(2)和双层空心纤维丝套(33)的外层膜为PVC聚乙烯膜。
6.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述纤维丝(32)为硬质可弯曲的,包括高分子材料丝和金属丝,其弯曲压力在0.2~3N之间。
7.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述纤维丝(32)底部比双层空心纤维丝套(33)长。
8.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述纤维丝(32)的数量为8个。
9.根据权利要求1所述的保护肾脏组织的钬激光碎石设备的光纤套,其特征在于:所述硬质光纤皮(11)为不透光材料。
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