分散注意力
3d打印
脚手架
材料科学
医学
3D打印
生物医学工程
心理学
复合材料
神经科学
作者
Yingjie Yan,Byeong Seop Kim,Xiaojun Chen,Wenyi Huang,Li Lin,Wenqing Han,Ziwei Zhang,Yan Zhang,Guangdong Zhou,Dong Lei,Gang CHAI
标识
DOI:10.1002/adhm.202405193
摘要
Mandibular distraction osteogenesis (MDO) is a widely recognized surgical method for treating mandibular hypoplasia. However, it still presents some limitations, including multiple hospital visits required by the long distraction period, and previous studies show that a shortened distraction period will easily lead to a non-union gap and suboptimal quality of the new bone. In this research, a 3D-printed customized PGS scaffold is constructed and combined it with rapid MDO to repair mandible defects. It not only accommodates the dynamically changing distraction gap but also meets the mandibular distraction model's high morphological requirements. The BMSCs-loaded PGS scaffolds also provide favorable osteogenic microenvironments. This approach helps shorten the distraction period and accelerates bone regeneration and osseointegration in the rapid distraction model of rabbit mandibles, showing promise for future clinical advancements in large-scale mandibular defect repair.
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