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The Institute of Theoretical and Applied Mechanics
11
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1.
(77)
Original version of the author's contribution as presented on CD, paper. :
PDF
The quantitative exploration of refractory period in human atrial cells
Brožková, K.
;
Šlichta, J.
Abstrakt:
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2.
(78)
Original version of the author's contribution as presented on CD, . :
PDF
Computational modelling of smooth muscle cells
Burša, J.
;
Lebiš, R.
The paper deals with problems related to computational modelling of stress-strain states in vascular smooth muscle cells (SMCs). Problems of their structure, geometry, co [...]
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3.
(78)
Original version of the author's contribution as presented on CD, . :
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Influence of cell components´ stiffness on the results of the simulated indentation test ..
Lebiš, R.
;
Burša, J.
Mechanical stimuli represent a very important factor influencing cellular processes and functions. The knowledge about mechanical properties of cells is necessary for und [...]
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4.
(78)
Original version of the author's contribution as presented on CD, BIO. :
PDF
Simple model of the smooth muscle isotonic contraction as a dynamical system
Rosenberg, J.
;
Svobodová, M.
The paper discusses a mathematical model of the isotonic smooth muscle contraction considering the influence of the excitation processes on the sarcolemma and inside the [...]
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5.
(81)
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Analysis of restitution processes of cardiac cells on changes of gating parameters
Šlichta, J.
;
Brožková, K.
Abstrakt:
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6.
(83)
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Computer modelling of effect of transversal tubules on excitation-contraction coupling in cardiac cells (basic study)
Pásek, M.
;
Šimurda, J.
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7.
(90)
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USE OF QUANTITATIVE MODEL TO ASSESS THE FRACTIONAL AREA OF T-TUBULAR MEMBRANE IN VENTRICULAR CARDIOMYOCYTE
Pásek, M.
;
Šimurda, J.
The transverse (T-) tubules of cardiac ventricular myocytes create a complex network of membrane invaginations. Many of the key proteins involved in excitation-contractio [...]
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8.
(90)
Original version of the author's contribution as presented on book, page 451. :
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A NEW QUANTITATIVE DESCRIPTION OF INTRACELLULAR CA2+ DYNAMICS IN THE MODEL OF RAT VENTRICULAR MYOCYTE
Pásek, M.
;
Šimurda, J.
In this paper, a new description of intracellular Ca2+ dynamics in the model of rat ventricular cardiomyocyte is presented. The principal modifications based on the recen [...]
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9.
(92)
Original version of the author's contribution as presented on CD, . :
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A novel quantitative description of electrophysiological processes in guinea pig ventricular cardiomyocytes
Pásek, M.
;
Šimurda, J.
A novel quantitative model of a guin ea-pig ventricular myocyte has been designed with transverse-axial tubular system (TATS) included. This model displays long-term stab [...]
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10.
(93)
Original version of the author's contribution as presented on CD, BIO. :
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Quantitative modelling of effect of transverse-axial tubular system on electrical activity of cardiac cells: development of model II
Pásek, M.
;
Šimurda, J.
In this work, we present a new version of cardiac ventricular cell model incorporating the transverse - axial tubular system. The improvements include reformulated descri [...]
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11.
(100)
Original version of the author's contribution as presented on CD, . :
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QUANTITATIVE MODELLING OF EFFECT OF TRANSVERSE-AXIAL TUBULAR SYSTEM ON ELECTRICAL ACTIVITY OF CARDIAC CELLS: DEVELOPMENT OF MODEL
Pásek, M.
;
Šimurda, J.
Abstrakt: The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid propagation of excitation into the cell interior. As suggest [...]
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