CN112221015A - 一种通过电磁场分解脂肪组织的装置与方法 - Google Patents
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Abstract
一种通过电磁场分解脂肪组织的装置与方法,至少一个开关,一个电容器和励磁线圈,所述方法包括分解多余脂肪的方法:使用电源充满电容器,切换至少一个开关;从脉冲电容器到励磁线圈提供峰值电流在300A至8000A范围内的电流脉冲,以通过励磁线圈产生脉冲磁场;将脉冲磁场的双相正弦脉冲以50μs至500μs范围的脉冲持续时间施加到用户的肌肉上,以引起肌肉收缩,从而减少脂肪组织。
Description
技术领域
本发明涉及美容设备领域,具体涉及一种通过电磁场分解脂肪组织的装置与方法。
背景技术
磁疗是利用磁场对生物组织的影响。由于磁场变化而在组织中产生感应电流,从而引起细胞膜极化。生物组织中是神经兴奋或肌肉收缩本质上为生物体体内电流。磁疗效果的强度取决于磁通量密度,脉冲的重复率或脉冲持续时间。
将永久磁体的磁场用于生物磁疗的方法已广泛用于保健和多种疾病的治疗。虽然磁疗的原理还没有很清楚,但一个磁疗效果好、效率高的工作磁场及磁疗装置应该满足的一些基本条件已基本形成共识。
按照磁化说,一个磁化效果好、磁化效率高的磁化磁场应满足:磁化磁场相对人体运动,磁力线方向与运动方向垂直,磁力线指向交替变化,磁化磁场的强度适当但变化梯度大,单位长度连续切割的次数多,磁场经过的区域都被磁化;
按照磁按摩说,可以先推论一个属于常识的无须证明的论断:一个好的工作磁场应能使人体磁场或电场中的各点产生微小的震荡,以促使已经偏离正常平衡位置的回复到正常的平衡位置,或使因受阻而不能正常震荡的逐步恢复在平衡位置附近震荡,或使能够在平衡位置附近正常震荡的震荡得更活跃、耗能更低;任何强力或不规则的外力会使其偏离平衡位置,从而破坏人体磁场和电场地正常平衡状态,不但达不到磁疗的目的,相反有害于人体健康。也许这一论断有助解释长期处于一定强度磁场附近生活的人身体受损的原因。所以,一个磁疗效果好的工作磁场应该是:一个由多个小磁场有序排列构成的小磁场矩阵,该磁场相对人体运动,磁力线方向垂直于运动方向,磁力线指向交替变化,磁场强度适当但变化梯度大,单位长度连续交替变化的次数多,磁场经过的区域都被变化规律、一致的磁力线切割。
已经有通过脉冲磁场治疗肥胖或超重的设备和方法,但是除了使用产生磁场的线圈之外,其他设备和方法还需要与人体表面接触的另一种永磁体,或是通过产生刺激甲状腺的磁场,间接达到效果,且还必须通过颈带施加到身体上。
发明内容
本发明的目的是提供一种借助于感应磁场来反复刺激神经引起肌肉收缩以达到分解脂肪组织的目的的装置和方法,使用者能够根据自己的使用状况来调节和控制。比如有针对性的方式减少身体限定区域(例如腹部,臀部或大腿)的脂肪组织,而无需任何身体接触。
本发明利用脉冲磁场通过人体产生非接触感应电场,进而刺激刺激肌肉收缩的原理来达到减肥的效果。脉动磁场还能够通过影响电流并显着提高新陈代谢来刺激离子传输。更快速的新陈代谢会导致人体血液循环速度明显增加,所需要的的氧气供应增加。除此之外,磁场刺激引起的肌肉收缩会导致肌肉耗能增加,周围区域的脂肪组织产生能量,亦能达到减肥的效果。
该设备的基本组件是大面积的磁场线圈,电流流经该磁场的线圈,以下称为励磁线圈,该励磁线圈固定在外壳中;通过对电容器的充放电产生磁场。外壳上设有把手,。励磁线圈封装在塑料外壳中,外壳可确保避免接触电压,并同时引导冷却剂空气。
励磁线圈产生的磁场在线圈表面前约5cm处的峰值磁通密度为0.005T至0.2T。磁场可以随时间变化,并且由具有50μs至500μs的脉冲持续时间T的双相或单相脉冲组成。脉冲的重复频率(激励频率fp)为1Hz至1000Hz。通过在组织中的刺激部位处感应,可以实现0.05V每平方厘米至2V每平方厘米的最大电场强度。
本发明的优点尤其在于非接触地感应励磁,消除了电励磁在人体上产生的疼痛刺激。
附图说明
图1为本装置的立体示意图。
图2为装置去壳后立体示意图。
图3为本装置的左视透视图。
图4为本装置的仰视透视示意图。
图5为励磁线圈导线截面图。
图6为壳体内部散热空气流道示意图。
图7为设备及外接电容器电路示意图。
其中,附图标记如下所示:
1-手柄,2-塑料外壳,3-散热风扇,4-励磁线圈
具体实施方式
下面结合附图和实施例对本发明作进一步说明,本发明的实施方式包括但不限于下列实施例。
如图1所示,一种通过电磁场分解脂肪组织的装置。该装置具有手把、外壳与励磁线圈2,励磁线圈2、散热风扇3容纳在塑料外壳4中。
塑料壳体上设有散热孔,用于内外空气进行热交换,并对励磁线圈进行散热。
需要说明的是,励磁线圈2由绝缘外皮和固化在外壳内部的线圈组成;所述绝缘外壳由环氧树脂和玻璃纤维的混合固化而成。所述励磁线圈为包裹绝缘层的导体由内向外缠绕成平面螺旋,并且导体两端引出接线端伸展到线圈中间位置再延伸到外壳外部;线圈的接线端设有集磁器。
来自电源的500V至1200V电压通过电子开关在50V的阶段中进行选择,通过晶闸管电路(图中未画出)输入外接电容器,以进行存储。外接电容器的选定充电电压基本上决定了励磁线圈的功率,并因此决定了要产生的刺激脉冲的幅度水平。原则上,外接电容器与激励线圈2形成一个振荡电路,该振荡电路被连接导线和耦合器的欧姆电阻所阻尼图中为欧姆电阻(R)。外接的重复放电以及由此产生的激励频率是通过两个以并联方式连接并能够承载大电流的晶闸管控制的,这两个晶闸管连接脉冲外接到励磁线圈2。由于两个晶闸管的反并联连接,可以产生正弦相电压和电流脉冲。
在晶闸管接通后,可获得正弦电流的正半波,其最大振幅约为8000A。在时间T/2,即在脉冲持续时间T的一半结束之后,振荡电路中的电流I(t)改变其极性,晶闸管接通并接管电流传导,直到已达到完整的正弦振荡。同时,另一个晶闸管被阻塞。由此产生的正弦电流的负半波也具有大约8000A的最大振幅。由于两个晶闸管在脉冲持续时间T之后都被阻塞,所以可以防止进一步的振荡,从而仅产生两相脉冲。只有在达到与震荡频率的倒数相对应的刺激脉冲重复时间T之后,晶闸管才以上述方式再次接通。
励磁线圈产生的磁场在线圈表面前约5cm处的峰值磁通密度为0.005T至0.2T。磁场可以随时间变化,并且由具有50μs至500μs的脉冲持续时间T的双相或单相脉冲组成。脉冲的重复频率(激励频率fp)为1Hz至1000Hz。通过在组织中的刺激部位处感应,可以实现0.05V每平方厘米至2V每平方厘米的最大电场强度。
使用电源充满电容器,从脉冲电容器到励磁线圈提供峰值电流在300A至8000A范围内的电流脉冲,以通过励磁线圈产生脉冲磁场;将脉冲磁场的双相正弦脉冲以50μs至500μs范围的脉冲持续时间施加到使用者的肌肉上;所述刺激线圈的表面的前方5cm处,具有在0.005特斯拉至0.2特斯拉的范围内的磁体流密度,以引起肌肉收缩,从而减少脂肪组织。刺激部位处感应从0.05V每平方厘米至2V每平方厘米的电场强度。将脉冲磁场施加到使用者的至少一个身体区域,包括大腿,臀部,腹部或腰部。
按照上述实施例,便可很好地实现本发明。值得说明的是,基于上述结构设计的前提下,为解决同样的技术问题,即使在本发明上做出的一些无实质性的改动或润色,所采用的技术方案的实质仍然与本发明一样,故其也应当在本发明的保护范围内。
Claims (9)
1.一种通过电磁场分解脂肪组织的装置,其特征为:至少一个开关,一个电容器和励磁线圈。
2.根据权利要求1所述的设备及方法,其中,所述励磁线圈包括导体,所述导体为多匝线圈,导体的横截面面积在大约0.5平方厘米至3平方厘米的范围内。
3.根据权利要求1或2所述任一项所述的一种通过电磁场分解脂肪组织的装置,其中,所述塑料壳体包括至少一个孔,用与励磁线圈进行散热。
4.根据权利要求1至3所述任一项所述的一种通过电磁场分解脂肪组织的装置,其特征在于:所述刺激线圈是平面线圈,其中,励磁线圈位于塑料壳体内;其中刺激线圈与塑料壳体间隔开以便利用风机使空气在刺激线圈与塑料壳体之间流动。
5.一种通过电磁场分解脂肪组织的的方法:使用电源充满电容器,切换至少一个开关;从脉冲电容器到励磁线圈提供峰值电流在300A至8000A范围内的电流脉冲,以通过励磁线圈产生脉冲磁场;将脉冲磁场的双相正弦脉冲以50μs至500μs范围的脉冲持续时间施加到使用者的肌肉上,以引起肌肉收缩,从而减少脂肪组织。
6.根据权利要求5所述的一种通过电磁场分解脂肪组织的的方法,还包括将脉冲磁场施加到使用者的至少一个身体区域,包括大腿,臀部,腹部或腰部。
7.根据权利要求5或6任一项所述的一种通过电磁场分解脂肪组织的方法,其中,所述脉冲磁场在所述刺激线圈的表面的前方5cm处具有在0.005特斯拉至0.2特斯拉的范围内的磁体流密度。
8.根据权利要求5至7任一项所述的一种通过电磁场分解脂肪组织的方法,还包括在组织的刺激部位处感应从0.05V每平方厘米至2V每平方厘米的电场强度。
9.根据权利要求5至8任一项所述的一种通过电磁场分解脂肪组织的方法,其中,所述脉冲的频率在1Hz至1000Hz的范围内。
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