2017Journal of Craniofacial SurgeryRequires access

Analysis of Stress Trajectories in Human Adult Cleft Skull

Pandurangan Harikrishnan, V. Balakumaran

Open publisher page 12 citations

Abstract

The craniofacial skeleton is designed to withstand the functional forces during mastication. Distribution of these forces is along the stress trajectories that can vary in a cleft skull compared with a normal skull. In this study, the authors constructed finite element models of cleft and normal skull and subjected them for occlusal loading in the posterior teeth. The results showed variation in the trajectories between the models and between the cleft and noncleft sides within the cleft model.

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What this paper is about

The craniofacial skeleton is designed to withstand the functional forces during mastication. Distribution of these forces is along the stress trajectories that can vary in a cleft skull compared with a normal skull. In this study, the authors constructed finite element models of cleft and normal skull and subjected them for occlusal loading in the posterior teeth. The results showed variation in the trajectories between the models and between the cleft and noncleft sides within the cleft model.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The craniofacial skeleton is designed to withstand the functional forces during mastication. Distribution of these forces is along the stress trajectories that can vary in a cleft skull compared with a normal skull. In this study, the authors constructed finite element models of cleft and normal skull and subjected them for occlusal loading in the posterior teeth. The results showed variation in the trajectories between the models and between the cleft and noncleft sides within the cleft model.

Key concepts: Skull, Medicine, Human skull, Craniofacial, Mastication, Orthodontics, Stress (linguistics), Biomechanics

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