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Aug 31, 2026
El Observatorio es una iniciativa de articulación del sistema científico-técnico y el sector público provincial, cuyo propósito es relevar, sistematizar y producir información georreferenciada de valores inmobiliarios y promover el desarrollo de instrumentos de gestión de suelo u... |
Aug 28, 2026 - Facultad de Ciencias Médicas
Mattiazzi, Alicia; Alejandra Cely-Ortiz; Juan Ignacion Felice; Elena Catalina Lascano; Carlos Alfredo Valverde; Luis Alberto Gonano; María Matilde Said; Cecilia Mundiña-Weilenmann, 2026, "Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model", https://datos.unlp.edu.ar/citation?persistentId=perma:10915dataset9XAGC5, Universidad Nacional de La Plata, V1, UNF:6:4Pjk1b/xfyT9Wa7JvC2RSw== [fileUNF]
Cardiac alternans is a beat-to-beat oscillation in action potential duration and intracellular Ca²⁺ transients that develops at rapid heart rates and is associated with electrical instability and an increased risk of ventricular arrhythmias. The study uses a validated mathematica... |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Markdown Text - 18.9 KB -
MD5: 4dc84b226051d323a5142cd9eda8197f
Documento explicativo sobre lo que contiene este conjunto de datos. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Markdown Text - 17.2 KB -
MD5: 115a67b7b73d79c671654fdde7f50f9d
Explanatory document on what this dataset contains. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
Adobe PDF - 763.2 KB -
MD5: ed77cc111d1a130f50cb043e1c25cfa5
Compiled PDF containing all supplemental figures S1-S8. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
MS Word - 21.5 KB -
MD5: 6a6ad4bfc29d2d0db100dc70e57778e0
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
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MD5: c16252f14684aa4b0b3be8892cf08727
Four-state Markov model of the RyR2. Modified from Shannon et al. (8). The channel can be found in 4 states: resting or closed (R), open (O), inactivated (I) and resting inactivated (RI). R, I, and RI are non-conducting states while O is the conducting state. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
PNG Image - 224.7 KB -
MD5: 9ac51fea99ce7cbfe3af143fac3c9b6d
Increasing stimulation rate to 150 bpm does not evoke alternans. Increasing stimulation frequency up to 150 beats/min failed to produce Ca²⁺ alternans at 1.2 mM [Ca²⁺]ₒ. Only a few irregular beats are observed immediately after the frequency change. |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
PNG Image - 118.8 KB -
MD5: b97d39db1f9d38dafa3571fb966d2e95
Experimental results obtained by Picht et al. (10) in a rabbit myocyte stimulated at 2.0 Hz after complete depletion of SR with caffeine. The authors described a first phase without alternans (equivalent to our second phase), a third phase with alternans in which myocytes relaxed... |
Aug 28, 2026 -
Mechanisms underlying cardiac alternans in a human ventricular myocyte mathematical model
PNG Image - 237.9 KB -
MD5: 8689e3e02959f350ae1cc884dc22a476
APD restitution and incomplete ICaL recovery support a predominantly voltage-driven mechanism during P1. (A) APD restitution curve as a function of the preceding diastolic interval (DI). Red symbols indicate the beats corresponding to the early alternating phase after the abrupt... |


