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1.
Comput Methods Biomech Biomed Engin ; 25(3): 247-256, 2022 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-34320889

RESUMEN

Commotio cordis is a sudden death mechanism that occurs when the heart is impacted during the repolarization phase of the cardiac cycle. This study aimed to investigate commotio cordis injury metrics by correlating chest force and rib deformation to left ventricle strain and pressure. We simulated 128 chest impacts using a simulation matrix which included two initial velocities, 16 impact locations spread across the transverse and sagittal plane, and four baseball stiffness levels. Results showed that an initial velocity of 17.88 m/s and an impact location over the left ventricle was the most damaging setting across all possible settings, causing the most considerable left ventricle strain and pressure increases. The impact force metric did not correlate with left ventricle strain and pressure, while rib deformations located over the left ventricle were strongly correlated to left ventricle strain and pressure. These results lead us to the recommendation of exploring new injury metrics such as the rib deformations we have highlighted for future commotio cordis safety regulations.


Asunto(s)
Traumatismos en Atletas , Béisbol , Commotio Cordis , Heridas no Penetrantes , Béisbol/lesiones , Benchmarking , Commotio Cordis/complicaciones , Ventrículos Cardíacos , Humanos , Costillas , Fibrilación Ventricular/etiología
2.
J Biomech Eng ; 144(5)2022 05 01.
Artículo en Inglés | MEDLINE | ID: mdl-34729591

RESUMEN

Commotio cordis is the second leading cause of sudden cardiac death in young athletes. Currently available chest protectors on the market are ineffective in preventing cases of commotio cordis in young athletes who play baseball. This study focused on using contour maps to identify specific baseball impact locations to the chest that may result in instances of commotio cordis to children during baseball games. By identifying these vulnerable locations, we may design and develop chest protectors that can provide maximum protection to prevent commotio cordis in young athletes. Simulation cases were run using the validated CHARM-10 chest model, a detailed finite element model representing an average 10-year-old child's chest. A baseball model was developed in company with the chest model, and then used to impact the chest at different locations. A 7 × 8 impact location matrix was designed with 56 unique baseball impact simulations. Left ventricle strain and pressure, reaction force between the baseball and chest, and rib deformations were analyzed. Left ventricle strain was highest from baseball impacts directly over the left ventricle (0.34) as well as impacts slightly lateral and superior to the cardiac silhouette (0.34). Left ventricle pressure was highest with impacts directly over the left ventricle (82.94 kPa). We have identified the most dangerous impact locations resulting in high left ventricle strain and pressure. This novel study provided evidence of where to emphasize protective materials for establishing effective chest protectors that will minimize instances of commotio cordis in young athletes.


Asunto(s)
Traumatismos en Atletas , Béisbol , Commotio Cordis , Traumatismos en Atletas/complicaciones , Traumatismos en Atletas/prevención & control , Niño , Commotio Cordis/complicaciones , Muerte Súbita Cardíaca/epidemiología , Muerte Súbita Cardíaca/etiología , Muerte Súbita Cardíaca/prevención & control , Humanos , Fibrilación Ventricular/complicaciones , Fibrilación Ventricular/prevención & control
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