CN110623723A - 射频等离子体针刀电极化、热凝、切割手术消炎装置 - Google Patents

射频等离子体针刀电极化、热凝、切割手术消炎装置 Download PDF

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CN110623723A
CN110623723A CN201910833899.8A CN201910833899A CN110623723A CN 110623723 A CN110623723 A CN 110623723A CN 201910833899 A CN201910833899 A CN 201910833899A CN 110623723 A CN110623723 A CN 110623723A
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cutting
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张丽华
陶高见
桑金华
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Nanjing Sandi Medical Technology Co Ltd
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Abstract

本发明涉及射频离子刀手术技术领域,且公开了射频等离子体针刀电极化、热凝、切割手术消炎装置,包括手柄,所述手柄的内部固定连接有射频电源,射频电源的上方电性连接有发生器,发生器远离射频电源的一端电性连接有电极,电极远离发生器的一端电性连接有刀头,准备工作:准备好射频等离子发生装置、发生器系统、手柄电机、刀头、电极。该射频等离子体针刀电极化、热凝、切割手术消炎装置,通过准备工作、控制单元、使用前调节、接电预热、预热观察、切割消炎、凝血处理、报警工作的配合作用,从而达到了手术凝血、切割消炎、提高治疗精度的效果;并在设备出现故障的时候进行报警,防止在手术过程中对患者造成二次伤害的现象。

Description

射频等离子体针刀电极化、热凝、切割手术消炎装置
技术领域
本发明涉及射频离子刀手术技术领域,具体为射频等离子体针刀电极化、热凝、切割手术消炎装置。
背景技术
射频等离子体手术系统是新一代的低温等离子体手术系统,可用于外科手术的软组织解剖、切除、消融、止血和干燥,可以与内窥镜系统配合进行腔内手术或与影像系统配合开展介入治疗。
传统的射频离子体外科设备由于工作温度高,创作范围略大,精确、安全、简便性还没达到理想状态;此外,传统手术设备在进行手术的过程中因切割组织之后无法止血,且其工作原理是通过加热组织使组织变性达到治疗目的,治疗区域可控性不高,造成未被切割的部位也会受到热损伤,因此射频等离子体针刀电极化、热凝、切割手术消炎装置应运而生。
发明内容
针对上述问题,本发明的目的在于提供射频等离子体针刀电极化、热凝、切割手术消炎装置,具有凝血、切割消炎、提高治疗精度的作用。
射频等离子体针刀电极化、热凝、切割手术消炎装置,包括手柄,所述手柄的内部固定连接有射频电源,射频电源的上方电性连接有发生器,发生器远离射频电源的一端电性连接有电极,电极远离发生器的一端电性连接有刀头。
本发明为实现技术目的采用如下技术方案:射频等离子体针刀电极化、热凝、切割手术消炎方法,包括以下步骤:
S1、准备工作:准备好射频等离子发生装置、发生器系统、手柄电机、刀头、电极;
S2、控制单元:发生器系统被配置成生成射频电信号,该端部安装有电连接到发生器系统的单个活性电极;
S3、使用前调节:调节手柄上的转速按钮和转动方向,发生器系统发出信号至手柄电机;
S4、接电预热:接入220V交流电源,维持低电压预热10min-15min后打开高电压开关转动功率按钮,调节输出功率至最大,反射功率最小;
S5、预热观察:电极在刀头前端形成肉眼可见等离子薄层,此时便可进行手术;
S6、切割消炎:操作手术刀柄上的切割控制开关,发生器系统通过控制单元输出相应能量的1.09-1.11兆射频处理波形输出至手术电极,实现组织的切割、消融;
S7、凝血处理:操作手柄上的凝血控制开关,高频发生器主机输出相应能量的400k-410k高频处理波形输出至手术电极,手术电极产生热量与组织作用实现组织凝血;
S8、报警工作:用于在接收到报警信号时,通过声音提示、文字提示和/ 或指示灯显示进行报警。
作为优化,所述S1手柄电机与刀头连接,电极与刀头连接且互相导电。
作为优化,所述S2电信号能够将活性电极极化,以便在活性电极处于组织块的近邻时在活性电极与组织块之间生成辉光等离子体放电。
作为优化,所述S3手柄电机转动,转动速度和方向根据人体不同组织的需求而进行实时调节。
作为优化,所述S6利用电能激发导电介质产生等离子体,并且基于等离子体的射频能量对目标体进行汽化切割。
作为优化,所述S7当需要止血和紧缩组织时,主机按照医生的需要精确产生适量热能,达到止血和紧缩效果,并确保不破坏周边组织活性。
作为优化,所述S8中等离子单元检测到运行故障后向控制单元发送报警信号,控制单元将报警信号发送给发生器系统,便于下一步检查工作的进行。
本发明具备以下有益效果:
该射频等离子体针刀电极化、热凝、切割手术消炎装置,通过准备工作、控制单元、使用前调节、接电预热、预热观察、切割消炎、凝血处理、报警工作的配合作用,从而达到了手术凝血、切割消炎、提高治疗精度的效果;并在设备出现故障的时候进行报警,防止在手术过程中对患者造成二次伤害的现象。
附图说明
图1为本发明射频等离子体针刀电极化、热凝、切割手术消炎装置示意 图。
具体实施方式
请参阅附图1,射频等离子体针刀电极化、热凝、切割手术消炎装置,包括手柄1,手柄1的内部固定连接有射频电源2,射频电源2的上方电性连接有发生器3,发生器3远离射频电源2的一端电性连接有电极4,电极4远离发生器3的一端电性连接有刀头5。
实施例1:射频等离子体针刀电极化、热凝、切割手术消炎方法,包括以下步骤:
S1、准备工作:准备好射频等离子发生装置、发生器系统、手柄电机、刀头5、电极4;
S2、控制单元:发生器系统被配置成生成射频电信号,该端部安装有电连接到发生器系统的单个活性电极;
S3、使用前调节:调节手柄上的转速按钮和转动方向,发生器系统发出信号至手柄电机;
S4、接电预热:接入220V交流电源,维持低电压预热10min后打开高电压开关转动功率按钮,调节输出功率至最大,反射功率最小;
S5、预热观察:电极在刀头前端形成肉眼可见等离子薄层,此时便可进行手术;
S6、切割消炎:操作手术刀柄上的切割控制开关,发生器系统通过控制单元输出相应能量的1.09兆射频处理波形输出至手术电极,实现组织的切割、消融;
S7、凝血处理:操作手柄上的凝血控制开关,高频发生器主机输出相应能量的400k高频处理波形输出至手术电极,手术电极产生热量与组织作用实现组织凝血;
S8、报警工作:用于在接收到报警信号时,通过声音提示、文字提示进行报警。
S1手柄电机与刀头连接,电极与刀头连接且互相导电。
S2电信号能够将活性电极极化,以便在活性电极处于组织块的近邻时在活性电极与组织块之间生成辉光等离子体放电。
S3手柄电机转动,转动速度和方向根据人体不同组织的需求而进行实时调节。
S6利用电能激发导电介质产生等离子体,并且基于等离子体的射频能量对目标体进行汽化切割。
S7当需要止血和紧缩组织时,主机按照医生的需要精确产生适量热能,达到止血和紧缩效果,并确保不破坏周边组织活性。
S8中等离子单元检测到运行故障后向控制单元发送报警信号,控制单元将报警信号发送给发生器系统,便于下一步检查工作的进行。
实施例2:射频等离子体针刀电极化、热凝、切割手术消炎方法,包括以下步骤:
S1、准备工作:准备好射频等离子发生装置、发生器系统、手柄电机、刀头5、电极4;
S2、控制单元:发生器系统被配置成生成射频电信号,该端部安装有电连接到发生器系统的单个活性电极;
S3、使用前调节:调节手柄上的转速按钮和转动方向,发生器系统发出信号至手柄电机;
S4、接电预热:接入220V交流电源,维持低电压预热15min后打开高电压开关转动功率按钮,调节输出功率至最大,反射功率最小;
S5、预热观察:电极在刀头前端形成肉眼可见等离子薄层,此时便可进行手术;
S6、切割消炎:操作手术刀柄上的切割控制开关,发生器系统通过控制单元输出相应能量的1.11兆射频处理波形输出至手术电极,实现组织的切割、消融;
S7、凝血处理:操作手柄上的凝血控制开关,高频发生器主机输出相应能量的410k高频处理波形输出至手术电极,手术电极产生热量与组织作用实现组织凝血;
S8、报警工作:用于在接收到报警信号时,通过指示灯显示进行报警。
S1手柄电机与刀头连接,电极与刀头连接且互相导电。
S2电信号能够将活性电极极化,以便在活性电极处于组织块的近邻时在活性电极与组织块之间生成辉光等离子体放电。
S3手柄电机转动,转动速度和方向根据人体不同组织的需求而进行实时调节。
S6利用电能激发导电介质产生等离子体,并且基于等离子体的射频能量对目标体进行汽化切割。
S7当需要止血和紧缩组织时,主机按照医生的需要精确产生适量热能,达到止血和紧缩效果,并确保不破坏周边组织活性。
S8中等离子单元检测到运行故障后向控制单元发送报警信号,控制单元将报警信号发送给发生器系统,便于下一步检查工作的进行。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (8)

1.射频等离子体针刀电极化、热凝、切割手术消炎装置,包括手柄(1),其特征在于,所述手柄(1)的内部固定连接有射频电源(2),射频电源(2)的上方电性连接有发生器(3),发生器(3)远离射频电源(2)的一端电性连接有电极(4),电极(4)远离发生器(3)的一端电性连接有刀头(5)。
2.根据上述射频等离子体针刀电极化、热凝、切割手术消炎装置,现提出一种射频等离子体针刀电极化、热凝、切割手术消炎方法,包括以下步骤,其特征在于:
S1、准备工作:准备好射频等离子发生装置、发生器系统、手柄电机、刀头(5)、电极(4);
S2、控制单元:发生器系统被配置成生成射频电信号,该端部安装有电连接到发生器系统的单个活性电极;
S3、使用前调节:调节手柄上的转速按钮和转动方向,发生器系统发出信号至手柄电机;
S4、接电预热:接入220V交流电源,维持低电压预热10min-15min后打开高电压开关转动功率按钮,调节输出功率至最大,反射功率最小;
S5、预热观察:电极在刀头前端形成肉眼可见等离子薄层,此时便可进行手术;
S6、切割消炎:操作手术刀柄上的切割控制开关,发生器系统通过控制单元输出相应能量的1.09-1.11兆射频处理波形输出至手术电极,实现组织的切割、消融;
S7、凝血处理:操作手柄上的凝血控制开关,高频发生器主机输出相应能量的400k-410k高频处理波形输出至手术电极,手术电极产生热量与组织作用实现组织凝血;
S8、报警工作:用于在接收到报警信号时,通过声音提示、文字提示和/或指示灯显示进行报警。
3.根据权利要求2述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S1手柄电机与刀头连接,电极与刀头连接且互相导电。
4.根据权利要求2所述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S2电信号能够将活性电极极化,以便在活性电极处于组织块的近邻时在活性电极与组织块之间生成辉光等离子体放电。
5.根据权利要求2所述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S3手柄电机转动,转动速度和方向根据人体不同组织的需求而进行实时调节。
6.根据权利要求2所述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S6利用电能激发导电介质产生等离子体,并且基于等离子体的射频能量对目标体进行汽化切割。
7.根据权利要求2所述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S7当需要止血和紧缩组织时,主机按照医生的需要精确产生适量热能,达到止血和紧缩效果,并确保不破坏周边组织活性。
8.根据权利要求2所述的射频等离子体针刀电极化、热凝、切割手术消炎方法,其特征在于:所述S8中等离子单元检测到运行故障后向控制单元发送报警信号,控制单元将报警信号发送给发生器系统,便于下一步检查工作的进行。
CN201910833899.8A 2019-09-04 2019-09-04 射频等离子体针刀电极化、热凝、切割手术消炎装置 Withdrawn CN110623723A (zh)

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