Literature DB >> 31371870

Navigation-Assisted Orbital Trauma Reconstruction Using a Bioactive Osteoconductive/Bioresorbable u-HA/PLLA System.

Takahiro Kanno1, Shintaro Sukegawa2, Masaaki Karino1, Yoshihiko Furuki2.   

Abstract

Orbital fractures with orbital wall defects are common facial fractures encountered by oral-maxillofacial surgeons, because of the exposed position and thin bony walls of the midface. The primary goal of surgery is to restore the pre-injury anatomy and volume of hard tissue, and to free incarcerated or prolapsed orbital tissue from the fracture by bridging the bony defects with reconstructive implant material and restoring the maxillofacial-orbital skeleton. Numerous studies have reported orbital fracture repair with a wide variety of implant materials that offer various advantages and disadvantages. The ideal orbital implant material will allow conformation to individual patients' anatomical characteristics, remain stable over time, and are radiopaque, especially for the reconstruction of relatively large and/or complex bony walls. Based on these requirements, novel uncalcined and unsintered hydroxyapatite (u-HA) particles and poly-L-lactide (PLLA; u-HA/PLLA) composite sheets could be used as innovative, bioactive, and osteoconductive/bioresorbable implant materials for orbital reconstruction. In addition, intraoperative navigation is a powerful tool. Navigation- and computer-assisted surgeries have improved execution and predictability, allowing for greater precision, accuracy, and minimal invasiveness during orbital trauma reconstructive surgery of relatively complex and large orbital wall defects with ophthalmological malfunctions and deformities. This review presents an overview of navigation-assisted orbital trauma reconstruction using a bioactive, osteoconductive/bioresorbable u-HA/PLLA system.

Entities:  

Keywords:  Navigation; Orbital reconstruction; Orbital trauma; u-HA/PLLA

Year:  2019        PMID: 31371870      PMCID: PMC6639503          DOI: 10.1007/s12663-019-01207-y

Source DB:  PubMed          Journal:  J Maxillofac Oral Surg        ISSN: 0972-8270


  4 in total

1.  3D Printing of PLLA/Biomineral Composite Bone Tissue Engineering Scaffolds.

Authors:  Fangli Gang; Weilong Ye; Chunyang Ma; Wenting Wang; Yi Xiao; Chang Liu; Xiaodan Sun
Journal:  Materials (Basel)       Date:  2022-06-17       Impact factor: 3.748

2.  Bioactive Regeneration Potential of the Newly Developed Uncalcined/Unsintered Hydroxyapatite and Poly-l-Lactide-Co-Glycolide Biomaterial in Maxillofacial Reconstructive Surgery: An In Vivo Preliminary Study.

Authors:  Shinji Ishizuka; Quang Ngoc Dong; Huy Xuan Ngo; Yunpeng Bai; Jingjing Sha; Erina Toda; Tatsuo Okui; Takahiro Kanno
Journal:  Materials (Basel)       Date:  2021-05-10       Impact factor: 3.623

3.  A retrospective study to compare the treatment outcomes with and without surgical navigation for fracture of the orbital wall.

Authors:  Chun-Lin Zong; Yu-Lin Shi; Jun-Qi Jia; Ming-Chao Ding; Shi-Ping Chang; Jin-Biao Lu; Yuan-Li Chen; Lei Tian
Journal:  Chin J Traumatol       Date:  2020-11-17

Review 4.  Biocompatible Materials for Orbital Wall Reconstruction-An Overview.

Authors:  Victor A Vasile; Sinziana Istrate; Raluca C Iancu; Roxana M Piticescu; Laura M Cursaru; Leopold Schmetterer; Gerhard Garhöfer; Alina Popa Cherecheanu
Journal:  Materials (Basel)       Date:  2022-03-16       Impact factor: 3.623

  4 in total

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