起搏細胞 的英文怎麼說

中文拼音 [bāo]
起搏細胞 英文
p cell
  • : 起Ⅰ動詞1 (站起; 坐起) rise; get up; stand up 2 (取出; 取走) draw out; remove; extract; pull 3...
  • : 動詞1. (搏鬥) combat; fight; struggle; wrestle; strike 2. (撲上去抓) pounce on 3. (跳動) beat; pulsate; throb
  • : 形容詞1 (條狀物橫剖面小) thin; slender 2 (顆粒小) in small particles; fine 3 (音量小) thin ...
  • : Ⅰ名詞1 (胞衣) afterbirth2 (同一個國家或民族的人) fellow countryman; compatriot Ⅱ形容詞(同胞...
  • 細胞 : cell; sytes; bioplast; cella; [口語] gene; [生物學] cellule; cellule cellulli cellulo ; cello ; k...
  1. Our previous studies demonstrated that agmatine not only reduced the amplitude of action potential ( apa ), maximal rate of depolarization ( vmax ), velocity of diastolic ( phase 4 ) depolarization ( vdd ), and rate of pacemaker firing ( rpf ), but also prolonged 90 % duration of action potential ( apd90 ) in a concentration - dependent manner

    我們先前的實驗證明,胍了胺可劑量依賴性地抑制兔竇房結起搏細胞的0相最大上升速度( v _ ( max ) ) ,動作電位幅度( apa )和舒張期除極化速度( vdd ) ,起搏細胞放電頻率( rpf ) ,而且能延長90動作電位時程( apd _ ( 90 ) ) 。
  2. Myocardial bioelectric phenomena and their mechanism, the characters of excitation transmission in heart ; the periodicity changes and their characters of myocardial excitability, autorhythmicity and pacemaker of heart ; pumping function of heart and evaluation ; the concept, mechanism and influencing factors of arterial blood pressure ; carotid sinus and aortic arch baroreceptor reflex

    心肌(工作和自律)的生物電現象及其形成的機制,心內興奮傳播的特點;心肌興奮性的周期性變化及其特點,自律性和心臟的點;心臟的泵血功能及其評價;動脈血壓的概念、形成機制、影響因素;頸動脈竇和主動脈弓壓力感受性反射。
  3. The cardiac impulse originates in a relatively small group of primary pacemaker cells. typical primary pacemaker cells have the highest intrinsic frequency in firing. following its firing, there is a slow depolarization called pacemaker potential

    位於右心房竇房結內的起搏細胞具有最高的固有發放節律,每次發放后即出現一個緩慢的自動去極化過程,心率主要取決于起搏細胞去極化的斜率。
  4. Single pacemaker cell

    起搏細胞
  5. University of michigan researchers are reporting significant progress in growing bioengineered heart muscle, or behm, with organized cells, capable of generating pulsating forces and reacting to stimulation more like real muscle than ever before

    密西根州大學研究人員報道了生物工程心肌組織( behm ,存在有機成分)的最新進展,它能夠動並對正常刺激反應,同以前研究相比,功能上已經很接近真正的心肌組織。
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