Abstract
Vitreoretinal traction (VRT) may plays a major role in Retinal Hemorrhage (RH) in Abusive head trauma (AHT). Combining computer simulation and animal models, we tested the hypothesis that VRT during forcible shaking can exceed vitreoretinal adhesion from rotational and translational forces. We also studied the distribution of the forces in different layers and locations of the retina to explain the patterns of RH seen in AHT
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