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논문 기본 정보

자료유형
학술저널
저자정보
Min-Keun Kim (Department of Oral and Maxillofacial Surgery College of Dentistry Gangneung-Wonju National Universi) Jin-Woo Han (Department of Oral and Maxillofacial Radiology College of Dentistry Gangneung-Wonju National Univer) Kwang-Jun Kwon (Department of Oral and Maxillofacial Surgery College of Dentistry Gangneung-Wonju National Universi) Young-Wook Park (Department of Oral and Maxillofacial Surgery College of Dentistry Gangneung-Wonju National Universi) Jin-Hyung Shim (Research Institute T&R Biofab Co. Ltd. Siheung Republic of Korea)
저널정보
조선대학교 치의학연구원 Oral Biology Research Oral Biology Research 제45권 제3호
발행연도
2021.9
수록면
143 - 149 (7page)
DOI
10.21851/obr.45.03.202109.143

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초록· 키워드

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Facial asymmetry is difficult to correct mainly because of the large volume of implant required for reconstruction, which is hard to estimate. Computer-aided surgical planning using three-dimensional (3D)-printed implants is developing rapidly, with promising clinical results being reported in reconstructive, orthognathic, and other surgical fields. A 54-year-old male patient presented with facial asymmetry caused by fibular free flap displacement. This was surgically corrected using a customized, 3D-printed polycarprolactone/ beta tricalcium phosphate scaffold. The implant fit well and was easily fixed to the right mandibular angle area, resulting in an improvement in the facial contour of the patient. Throughout the follow-up period, the PCL/β-TCP implant was detected using an ultrasonic device and remained without volumetric change. There was also no wound dehiscence or implant displacement. Thus, a patient-specific 3D-printed biodegradable scaffold can effectively facilitate surgical correction of facial asymmetry. However, facial contour sequelae, stability, and resorption must be assessed over a long-term follow-up period.

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