2022
DOI: 10.1177/09544119221078102
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CPG-based generation strategy of variable rhythmic chewing movements for a dental testing chewing robot

Abstract: The rhythmic chewing movement pattern is dynamically reshaped to adapt to a variable chewing environment. The variance affects the wear performance of dental prostheses. This study was aimed to generate these variable rhythmic chewing movements for dental testing equipment. A six-axis parallel chewing robot DUT-2 was adopted as the dental testing equipment. Four variances were extracted from the rhythmic movement, including period, offset, amplitude, and mode. The relevant movement cases, including gradually a… Show more

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Cited by 2 publications
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