51 to 60 of 933 Results
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
PNG Image - 613.7 KB -
MD5: d5b6f3f4581911701ee09d0cc41d9b2c
Increase in SR Ca²⁺ uptake velocity. SR Ca²⁺ uptake was increased by 50% at the beginning of P4 (arrow). |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
PNG Image - 64.4 KB -
MD5: 1b1449309ac5d5ceb49cc60a9f953285
Effect of increasing SR Ca²⁺ uptake velocity on the Fractional Ca²⁺release (FCR). A. When Iup was enhanced 1.5 times (ocher triangles), shift SR Ca²⁺ content into a highly sensitive region of the FCR–load relation and alternans were exacerbated. Numbers indicate successive beats.... |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Adobe PDF - 105.6 KB -
MD5: 7343bfd5fce53766a7eba857dca3d45c
Detailed methodological description of the human ventricular myocyte mathematical model used in this study, including model structure (four compartments: cytoplasm, SR, DC1, DC2), ionic currents, Ca²⁺ handling mechanisms (RyR2 release, CICR, CaMKII regulation), and model equation... |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 1.9 KB - 15 Variables, 18 Observations - UNF:6:iIQ6xF4IA0gZROsoFfUZ6w==
Values of different ECC parameters in the first phase (P1) when SR Ca²⁺ release is abolished by blocking RyR2 channels. Under this condition the first phase extends from beat 4 to beat 18. Abbreviations as in Table 1. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 2.8 KB - 9 Variables, 15 Observations - UNF:6:lR40/z/fK2hjROwz5/cgBA==
Data dictionary describing each variable in the table `table_ECC_params_RyR2_blocked`. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 1.0 MB - 4 Variables, 35142 Observations - UNF:6:DLG4hZCDKBTDkGEq1dI79A==
Data from the simulation at 150 bpm that does not evoke alternans. Contains the temporal evolution of membrane potential (Vₘ), intracellular calcium ([Ca²⁺]ᵢ), and sarcoplasmic reticulum calcium ([Ca²⁺]ₛᵣ). |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 397 B - 9 Variables, 4 Observations - UNF:6:vY5esTE5WJG9EJoQD26k+Q==
Data dictionary describing each variable in the table `table_s2_150bpm_no_alt`. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 246 B - 1 Variables, 18 Observations - UNF:6:ooH0QZhyNZsegrEu2Vfrmw==
APD restitution curve (APD₉₀) as a function of the diastolic interval (DI). |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 255 B - 9 Variables, 2 Observations - UNF:6:Sq52Q2gli3Ayt0/ZcjSLKQ==
Data dictionary describing each variable in the table `table_s4a_APD_ICaL_recovery`. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Tabular Data - 233 B - 1 Variables, 17 Observations - UNF:6:cJSV9dzKVsf7awqsynsQ7g==
Recovery of ICaL current as a function of DI. |


