TWI622389B - 可對應中醫人體經絡產生氣血共振的系統 - Google Patents
可對應中醫人體經絡產生氣血共振的系統 Download PDFInfo
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- TWI622389B TWI622389B TW104130534A TW104130534A TWI622389B TW I622389 B TWI622389 B TW I622389B TW 104130534 A TW104130534 A TW 104130534A TW 104130534 A TW104130534 A TW 104130534A TW I622389 B TWI622389 B TW I622389B
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- pulse
- meridian
- resonance
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- Electrotherapy Devices (AREA)
Abstract
一種可對應中醫人體經絡產生氣血共振的系統,包含一包括一操作介面及一運算模組的控制單元、一用以輸出一相關於人體動脈搏動的脈搏信號的測脈單元,及一共振單元。該共振單元包括一具有一調控模組及一脈波模組的脈波產生器,及至少一用以刺激所對應經絡的電極貼片。其中,該調控模組解析該脈搏信號,而獲得該動脈的一搏動相位及一搏動頻率,並配合由該控制單元輸出的控制信號,以調變輸出一調控信號給該脈波模組。使該脈波模組輸出一相關於該調控信號的電氣信號至該電極貼片,讓該電極貼片下的肌肉產生間歇性收縮,而與該經絡產生共振。
Description
本發明是有關於一種電療系統,特別是指一種可對應中醫人體經絡產生氣血共振的系統。
現代人經常因為不正確的坐臥姿勢、運動損傷,或是氣血循環不佳等因素,而承受肌肉痠疼之苦。除了透過理療師的按摩、推拿之外,還可藉助經皮神經電刺激(Transcutaneous Electrical Nerve Stimulation,TENS)來緩解痠痛症狀。
然而,現有的經皮神經電刺激產生裝置,皆是根基於西方的生理醫學理論進行設計。例如,當施以小於10Hz的低頻率電流時,會讓人體產生類似嗎啡(Morphine),而具有緩解疼痛功效的腦內啡(Endorphin);此外,隨著提高頻率至100Hz以上時,就會讓到達T細胞前的粗纖維和細纖維受到突觸前抑制(Pre-synaptic Inhibition),使得疼痛傳導產生阻斷。因此,目前的裝置多以複合式電刺激法,即交替式輸出不同頻率之電刺激,來達到止痛的效果。
但是,對中醫而言,痛證其來自「瘀堵」,意指氣血循環在經絡之中受到阻滯。若不能及時疏通,久而久之,氣滯血瘀形成體內蘊毒,就會使人產生疼痛感與身體的不適。所以,中醫講求的「通法」即是讓經絡血脈循環通暢。打通了瘀阻的部位,疼痛與身體的不適便自然而然地減弱,甚至消失。
因此,本發明之目的,即在提供一種可對應中醫人體經絡產生氣血共振而活絡經絡血脈循環的系統。
於是,本發明可對應中醫人體經絡產生氣血共振的系統,包含一控制單元、一測脈單元,及一共振單元。
該控制單元包括一操作介面及一運算模組。該操作介面可顯示一相關於人體十二經絡及一干涉模式的操作訊息,並接收一使用者對應該操作訊息的操作命令,而使該運算模組輸出一相關於該操作命令的控制信號。
該測脈單元用以輸出一相關於人體動脈搏動的脈搏信號。
該共振單元包括一脈波產生器,及至少一信號連接於該脈波產生器,且用以刺激所對應經絡的電極貼片。該脈波產生器具有一信號連接於該運算模組與該測脈單元的調控模組,及一脈波模組。其中,該調控模組解析該脈搏信號,而獲得該動脈的一搏動
相位及一搏動頻率,並配合該控制信號的設定,以調變輸出一調控信號給該脈波模組,使該脈波模組輸出一相關於該調控信號的電氣信號至該電極貼片,讓該電極貼片下的肌肉產生間歇性收縮,而與該經絡產生共振。
本發明之功效在於:透過該使用者對該控制信號的設定,而能針對特定經絡及所對應的干涉模式,來調變輸出該調控信號,使該脈波模組輸出該電氣信號至該電極貼片,讓該電極貼片下的肌肉產生間歇性收縮,而與該經絡共振,進而產生氣血共振的效果。
100‧‧‧控制單元
110‧‧‧操作介面
120‧‧‧運算模組
321‧‧‧正極
322‧‧‧負極
400‧‧‧資料單元
200‧‧‧測脈單元
210‧‧‧脈搏偵測裝置
220‧‧‧脈診儀
300‧‧‧共振單元
310‧‧‧脈波產生器
311‧‧‧調控模組
312‧‧‧脈波模組
320‧‧‧電極貼片
410‧‧‧分析資料庫
420‧‧‧預設模式
430‧‧‧脈診模式
500‧‧‧使用者
T0‧‧‧延遲時間
T1‧‧‧時間間距
T2‧‧‧時間間距
T3‧‧‧時間間距
本發明之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中:圖1是一示意圖,說明本發明可對應中醫人體經絡產生氣血共振的系統的一實施例;圖2是一序列圖,說明該實施例與一使用者之間的信號傳遞序列關係;圖3是一示意圖,說明該實施例中的一操作介面,及顯示在該操作介面上的一操作訊息、一測脈訊息,及相關操作訊息;圖4是一信號比較圖,說明該實施例在一補氣模式下,心臟的搏動波形與一對應足太陰脾經的共振頻率的電氣信號;及
圖5是一示意圖,說明該實施例中的一控制單元與一共振單元整合成一設備,以及一電極貼片的另一種實施態樣。
參閱圖1與圖2,本發明可對應中醫人體經絡產生氣血共振的系統的一實施例包含一控制單元100、一測脈單元200、一共振單元300,及一資料單元400。
參閱圖1與圖2,該控制單元100包括一操作介面110,及一運算模組120。如圖3所示,該操作介面110可顯示一相關於人體十二經絡及一干涉模式的操作訊息、一測脈訊息,及一建議訊息,並接收一使用者500對應該等訊息的命令。其中,該使用者500可對應該操作訊息,而輸入一操作命令,使該操作介面110接收該操作命令後,讓該運算模組120輸出一相關於該操作命令的控制信號。此外,該測脈訊息用以提供互動式資訊,可顯示由該測脈單元200所探知的一相關於人體動脈搏動次數的脈搏信號,或是由該使用者500輸入一次數命令,使該操作介面110接收該次數命令後,讓該運算模組120輸出相關於該次數命令的該脈搏信號。在本實施例中,該控制單元100為智慧型手機,但也可為桌上型電腦、筆記型電腦、平板電腦、智慧型電視,及智慧型手表之其中一者。要說明的是,隨著穿戴式裝置的快速發展,使得像智慧型手機或智慧型手表等裝置同時具備有高效能的處理器、多功能的感測元件、多樣
化的應用程式(Application,APP),以及能隨時隨地的透過網路傳遞資訊。因此,作為本發明的控制平台實在更合適不過了。如此一來,該智慧型手機的螢幕便為該操作介面110,而其所顯示的該等訊息,則是依據安裝於該智慧型手機記憶體中的應用程式所執行輸出。此外,在本實施例中,該操作訊息雖是以文字的方式顯現;但是,也可以透過圖像的方式-如人體經絡示意圖,以更直覺的方式提供該使用者500點選相對應的經絡。
參閱圖1與圖2,該測脈單元200包括一脈搏偵測裝置210,及一脈診儀220。該脈搏偵測裝置210用以偵測人體動脈的搏動,而輸出相關於該動脈搏動的該脈搏信號。要說明的是,根據本發明的運作原理,所要產生氣血共振的頻率是相關於心臟搏動的頻率。因此,該脈搏偵測裝置210可自動地感測脈搏,並提供給該控制單元100顯示及輸出該脈搏信號。但是,若該脈搏偵測裝置210因故障等緣故,而無法提供該脈搏信號,也可由該使用者500手動地輸入該次數命令,而讓該運算模組120輸出該脈搏信號。另外,該脈診儀220是用以輸出一相關於人體脈象的檢測資料,而提供給該資料單元400進行分析與建議評估。其中,由於該脈診儀220非本發明的技術特徵所在,所以在此不加贅述。
參閱圖1與圖2,該共振單元300包括一脈波產生器310,及複數信號連接於該脈波產生器310,且用以刺激所對應經
絡的電極貼片320。其中,該脈波產生器310具有一信號連接於該運算模組120與該測脈單元200的調控模組311,及一脈波模組312。該等電極貼片320分別為一正極321,及一負極322。透過相異電性的電極以適當距離,而分別貼於同一經絡上,使得由該正極321所輸出的微弱電流經其貼觸部位、皮下組織、肌肉,而至該負極322,以形成一電流迴路。要注意的是,若該等電極距離太近,則該電流迴路僅會形成在該等電極之間的皮膚表面上;若相隔太遠,該等電極之間的電阻值將會過大,使得該電流迴路上的電流值過小,皆不易刺激肌肉產生共振效果。因此,為了便利該使用者500使用,該共振單元300的電極貼片320的另一實施態樣如圖5所示,為一單片型貼片,則該電極貼片320同時具有該正極321及該負極322,且該正、負極321、322之間的距離是搭配該脈波產生器310的輸出功率。具有較大輸出功率的脈波產生器310,則該正、負極321、322之間的距離可以大一點,以刺激更多肌肉,而產生更大範圍的共振;反之,則適用於刺激該經絡上的穴道。根據發明人測試調校,該正、負極321、322之間的距離以4至7公分較為理想,但並不以此為限。此外,該控制單元100與該共振單元300也能如圖5般,整合成一設備;同時,該設備也同樣可以用該智慧型手機來實作。透過手機上的輸出埠-如音源孔-來連接該電極貼片320。惟手機的輸出電流可能過小,而必須透過一電流放大器(圖
未示)來增強輸出至該電極貼片320的電流。然而,此部分非本發明之技術特徵,所以在此不加贅述。
參閱圖2與圖3,該資料單元400包括一分析資料庫410、複數預設模式420,及複數脈診模式430。每一預設模式420是根據一因人體經絡氣血不順所造成的症狀,並由該分析資料庫410對應出一能緩解該症狀的經絡診方,以輸出一相關於該經絡診方的診方信號至該操作介面110,使該操作介面110顯示相關於該診方信號的該建議訊息。另外,每一脈診模式430是依據由該脈診儀220輸出的該檢測資料,並由該分析資料庫410對應出一能提升氣血循環的建議分析,使該操作介面110顯示相關於該建議分析的該建議訊息。並且,該資料單元400是儲存於該控制單元100中的一記憶體(圖未示),及一雲端儲存系統(圖未示)之其中一者。因此,本發明可利用如智慧型手機,及智慧型手表等穿戴式裝置,來作為該控制單元100、該測脈單元200,及該資料單元400,並透過有線傳輸或無線通訊等方式,輸出該控制信號與該脈搏信號至該共振單元300。同時,還可藉由網路連線或自身安裝的應用程式來獲得該建議訊息。其中,透過該雲端儲存系統(圖未示),不僅能方便管理、分析如使用歷史紀錄、相關病症檢索資料,或由該脈診儀220所輸出的該檢測資料...等相關於使用者的資料,以提供個人
化的診療資訊管理,而且能避免資料丟失與方便相關醫療應用整合。
藉此,該調控模組311解析該脈搏信號,而獲得該動脈的一搏動相位及一搏動頻率,並配合該控制信號的設定,以調變輸出一調控信號給該脈波模組312,使該脈波模組312輸出一相關於該調控信號的電氣信號至該等電極貼片320,讓該等電極貼片320下的肌肉產生間歇性收縮,而與該經絡產生共振。要說明的是,該調控模組311是以該搏動頻率作為基波(Fundamental Wave)頻率,並進行頻率調變,以產生一對應該經絡的頻率的共振諧波(Harmonic Wave),而輸出相關於該共振諧波的該調控信號。此為根基於王唯工教授等人所闡述的血液循環共振理論。其理論的核心為,人體各動脈都有其特定的共振頻率,而各個器官及穴道皆分別與該等動脈耦合振動,產生分頻現象;因此,各個器官及穴道也一樣有其特定的共振頻率。如果把相同共振諧波之器官歸為一類,就會得到人體器官與經絡的對應關係。同時,心臟搏動是所有共振能量的來源,其搏動頻率為各經絡的共振頻率的基數,而分別具有基波與其共振諧波的關聯性。並且,根據該理論,該等經絡的名稱,及所對應的共振諧波分別是:足厥陰肝經:第一諧波;足少陰腎經:第二諧波;足太陰脾經:第三諧波;手太陰肺經:第四諧波;足陽明胃經:第五諧波;足少陽膽經:第六諧波;足太陽膀胱
經:第七諧波;手陽明大腸經:第八諧波;手少陽三焦經:第九諧波;手太陽小腸經:第十諧波;手少陰心經:第十一諧波;及,手厥陰心包經:第零諧波。此處的基波及諧波,與物理學中的基波及諧波定義相同。舉例來說,當該搏動頻率為1.2Hz時,所對應到足厥陰肝經的第一諧波頻率即為1.2Hz,對應到足少陰腎經的第二諧波頻率便為2.4Hz,而對應到足太陰脾經的第三諧波頻率便為3.6Hz,依此類推到各經絡的諧波頻率。要注意的是,手厥陰心包經在該理論中定義為第零諧波,為能量總和波,是屬於所有諧波的能量加總總合,並且是屬於一種直流信號。
所以,中醫的「氣」在該血液循環共振理論看來,就是透過心臟搏動,而將血液輸送到各個器官及經絡的運行狀況。如果某個器官及經絡的共振頻率與該搏動頻率不和諧,則該器官及經絡的血液在輸送時,便無法藉由共振的力量,而充分地進入該器官及經絡。長久下來,該器官及經絡就會因為缺血、缺氧、缺乏營養,及代謝廢物的累積等原因,顯現出疼痛及疾病等「氣虛」的症狀。另外,有時疾病是因為共振能量不夠,亦即心臟搏動的強度不足,致使各器官及經絡供血不足,並使得低次諧波的器官逐漸往高次諧波的器官發生病變,這正好與中醫的相表裏及相生相剋的關係相符合。因此,本發明是藉由對應各經絡的共振頻率來產生氣血共振,並將其對應到中醫的整體觀,以進行辯證論治。
值得一提的是,相較於物理上的波動干涉理論,中醫的「氣」也有干涉現象。也就是說,所謂的補氣與瀉氣其實是經絡相位的增加或減少。因此,前述的該干涉模式可分成一補氣模式,及一瀉氣模式。在該補氣模式下,該共振諧波的相位與該搏動相位產生建設性干涉(Constructive Interference)的相位疊加(Phase Superposition),使得經絡的振幅增大;而在該瀉氣模式下,該共振諧波的相位與該搏動相位產生破壞性干涉(Destructive Interference)的相位疊加,使得經絡的振幅降低。舉例來說,如圖4所示,上方信號波形圖為該使用者500的心臟搏動波形,而下方信號波形圖為在該補氣模式下,本發明所輸出對應足太陰脾經的共振頻率的該電氣信號。其中,根據該搏動波形,可區分相鄰心跳之間的時間間距T1、T2,及T3。而足太陰脾經是屬於第三諧波,因此,其諧波頻率為該基波頻率的三倍,即相對應於該時間間距T1、T2,及T3內均會產生三個脈波的該電氣信號。並且,由於該共振單元300會有運算時間延遲的情況;因此,所輸出的該電氣信號與搏動波形之間具有一時間間距為T0的延遲時間。不過,若是使用一般的脈搏偵測裝置210,或是透過該使用者500輸入該次數命令的方式,則該脈搏信號便是相關於固定週期的心臟搏動波形,而使得該調控模組311所根據該脈搏信號輸出的調控信號,其脈波寬度恆為固定。
要注意的是,在該補氣模式下,是要產生建設性干涉的相位疊加,所以將該搏動波形的最大值視為波峰,而每段時間間距內的該電氣信號也是由高振幅開始輸出。而且,上述的振幅,並不是指波形上的最大位移,而是泛指能量變化的幅度。因此,根據使用者的體質差異和各部位敏感度不同,可自行或程式調整該電氣信號強度。強度越強,電流也越大,則越能滲透到人體深層組織,達到活絡經絡的功效就越強。這也是本發明與現有的經皮神經電刺激產生裝置最大不同之處,透過該使用者500對該控制信號的設定,而能針對特定經絡及所對應的干涉模式,來調變輸出該調控信號,使該脈波模組312輸出該電氣信號至該電極貼片320,讓該電極貼片320下的肌肉產生間歇性收縮,而與該經絡共振,進而達成促進經絡血脈通暢的效果。
惟以上所述者,僅為本發明之實施例而已,當不能以此限定本發明實施之範圍,即凡是依本發明申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本發明專利涵蓋之範圍內。
Claims (10)
- 一種可對應中醫人體經絡產生氣血共振的系統,包含: 一控制單元,包括一操作介面,及一運算模組,該操作介面可顯示一相關於人體十二經絡及一干涉模式的操作訊息,並接收一使用者對應該操作訊息的操作命令,而使該運算模組輸出一相關於該操作命令的控制信號; 一測脈單元,用以輸出一相關於人體動脈搏動的脈搏信號;及 一共振單元,包括一脈波產生器,及至少一信號連接於該脈波產生器,且用以刺激所對應經絡的電極貼片,該脈波產生器具有一信號連接於該運算模組與該測脈單元的調控模組,及一脈波模組;其中,該調控模組解析該脈搏信號,而獲得該動脈的一搏動相位及一搏動頻率,並配合該控制信號的設定,以調變輸出一調控信號給該脈波模組,使該脈波模組輸出一相關於該調控信號的電氣信號至該電極貼片,讓該電極貼片下的肌肉產生間歇性收縮,而與該經絡產生共振。
- 如請求項1所述的可對應中醫人體經絡產生氣血共振的系統,其中,該調控模組以該搏動頻率作為基波(Fundamental Wave)頻率,並進行頻率調變,以產生一對應該經絡的頻率的共振諧波(Harmonic Wave),而輸出相關於該共振諧波的該調控信號;並且,該等經絡的名稱,及所對應的共振諧波分別是:足厥陰肝經:第一諧波;足少陰腎經:第二諧波;足太陰脾經:第三諧波;手太陰肺經:第四諧波;足陽明胃經:第五諧波;足少陽膽經:第六諧波;足太陽膀胱經:第七諧波;手陽明大腸經:第八諧波;手少陽三焦經:第九諧波;手太陽小腸經:第十諧波;手少陰心經:第十一諧波;及,手厥陰心包經:第零諧波。
- 如請求項2所述的可對應中醫人體經絡產生氣血共振的系統,其中,該干涉模式可分成一補氣模式,及一瀉氣模式;在該補氣模式下,該共振諧波的相位與該搏動相位產生建設性干涉(Constructive Interference)的相位疊加(Phase Superposition);在該瀉氣模式下,該共振諧波的相位與該搏動相位產生破壞性干涉(Destructive Interference)的相位疊加。
- 如請求項1所述的可對應中醫人體經絡產生氣血共振的系統,其中,該操作介面還可顯示一相關於該脈搏信號的測脈訊息;另外,該測脈單元包括一脈搏偵測裝置,該脈搏偵測裝置能偵測人體中的一動脈搏動,而輸出相關於該動脈搏動的該脈搏信號。
- 如請求項4所述的可對應中醫人體經絡產生氣血共振的系統,其中,該測脈訊息可供該使用者輸入一次數命令,而使該運算模組輸出相關於該次數命令的該脈搏信號。
- 如請求項1所述的可對應中醫人體經絡產生氣血共振的系統,其中,該操作介面還可顯示一建議訊息,該共振單元的電極貼片數目為一片及二片其中一者,若其數目為一片,則該電極貼片同時具有一正極及一負極;若其數目為二片,則該等電極貼片分別為該正、負極。
- 如請求項6所述的可對應中醫人體經絡產生氣血共振的系統,還包含一資料單元,該資料單元包括一分析資料庫,及複數預設模式,每一預設模式是根據一因人體經絡氣血不順所造成的症狀,並由該分析資料庫對應出一能緩解該症狀的經絡診方,以輸出一相關於該經絡診方的診方信號至該操作介面,使該操作介面顯示相關於該診方信號的該建議訊息。
- 如請求項7所述的可對應中醫人體經絡產生氣血共振的系統,其中,該資料單元還包括複數脈診模式,每一脈診模式是依據一檢測資料,並由該分析資料庫對應出一能提升氣血循環的建議分析,使該操作介面顯示相關於該建議分析的該建議訊息。
- 如請求項8所述的可對應中醫人體經絡產生氣血共振的系統,其中,該測脈單元還包括一脈診儀,該檢測資料是由該脈診儀輸出。
- 如請求項7所述的可對應中醫人體經絡產生氣血共振的系統,其中,該資料單元儲存於該控制單元中的一記憶體,及一雲端儲存系統之其中一者;該控制單元為桌上型電腦、筆記型電腦、平板電腦、智慧型電視、智慧型手機,及智慧型手表之其中一者。
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