The recruitment of patients for rare or complex cardiovascular diseases is a bottleneck for clinical trials and digital twins of the human heart have recently been proposed as a viable alternative. In this paper we present an unprecedented cardiovascular computer model which, relying on the latest GPU-acceleration technologies, replicates the full multi-physics dynamics of the human heart within a few hours per heartbeat. This opens the way to extensive simulation campaigns to study the response of synthetic cohorts of patients to cardiovascular disorders, novel prosthetic devices or surgical procedures. As a proof-of-concept we show the results obtained for left bundle branch block disorder and the subsequent cardiac resynchronization obtained by pacemaker implantation. The in-silico results closely match those obtained in clinical practice, confirming the reliability of the method. This innovative approach makes possible a systematic use of digital twins in cardiovascular research, thus reducing the need of real patients with their economical and ethical implications. This study is a major step towards in-silico clinical trials in the era of digital medicine.

Viola (Del Corso), F., (De Paulis), G., Ruggero, ., Verzicco, R. (2023). GPU accelerated digital twins of the human heart open new routes for cardiovascular research. SCIENTIFIC REPORTS, 13(1) [10.1038/s41598-023-34098-8].

GPU accelerated digital twins of the human heart open new routes for cardiovascular research

Roberto Verzicco
2023-01-01

Abstract

The recruitment of patients for rare or complex cardiovascular diseases is a bottleneck for clinical trials and digital twins of the human heart have recently been proposed as a viable alternative. In this paper we present an unprecedented cardiovascular computer model which, relying on the latest GPU-acceleration technologies, replicates the full multi-physics dynamics of the human heart within a few hours per heartbeat. This opens the way to extensive simulation campaigns to study the response of synthetic cohorts of patients to cardiovascular disorders, novel prosthetic devices or surgical procedures. As a proof-of-concept we show the results obtained for left bundle branch block disorder and the subsequent cardiac resynchronization obtained by pacemaker implantation. The in-silico results closely match those obtained in clinical practice, confirming the reliability of the method. This innovative approach makes possible a systematic use of digital twins in cardiovascular research, thus reducing the need of real patients with their economical and ethical implications. This study is a major step towards in-silico clinical trials in the era of digital medicine.
2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/06
English
Viola (Del Corso), F., (De Paulis), G., Ruggero, ., Verzicco, R. (2023). GPU accelerated digital twins of the human heart open new routes for cardiovascular research. SCIENTIFIC REPORTS, 13(1) [10.1038/s41598-023-34098-8].
Viola (Del Corso), F; (De Paulis), G; Ruggero, ; Verzicco, R
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/361703
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