新西兰大白兔颞下颌关节自体肋软骨移植物生长潜力的实验研究

Jachmen Sultana, Quazi Billur Rahman, E. Chowdhury, Nasrin Sultana Juyena, Abul Bashar
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引用次数: 1

摘要

背景:在成长中的儿童中,肋软骨移植已被用作受损颞下颌关节(TMJ)生长中心的替代物。但由于移植物的吸收或过度生长,术后最常见的结果是颞下颌关节强直复发并伴有面部畸形。为了研究目的,自体肋软骨移植物重建后对人类颞下颌关节的探索似乎是不道德的,因此我们试图通过临床评估来确定移植物的生长潜力。材料与方法:以96只新西兰雄性白兔为实验对象,分批进行实验研究。每批(共2批)实验兔和对照兔各24只,已知年龄和品种;生长(3-4个月)和成人(12-18个月)。颞下颌关节置换术采用1mm或4mm厚度的软骨帽,适用于两个年龄组。与对照组相比,定期随访至手术第4周、第12周和第24周,以了解移植物的行为改变、临床表现和宏观生长的关系。结果:家兔的行为改变、临床表现和移植物生长中心的存在与移植物的生长有一定的关系。60%的病例有生长,40%在生长,20%在成人。结论:肋软骨移植具有60%的生长潜力。40%的故障率可能是由于一些未知的因素。与成年兔相比,移植物在生长期生长的数量更多。长时间随访对移植物生长有很强的促进作用。总之,兔模型的临床评价提供了对生长过程的公平估计。
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Clinical evaluation of growth potentiality of autogenous costochondral graft in Temporomandibular joint on New Zealand white rabbit- an experimental study
Background: Costochondral graft has been used as a substitute for a growth center in the damaged Temporomandibular joint (TMJ) in the growing children. But the relapse of the TMJ ankylosis along with facial deformity is the most common outcome after the surgery for the resorption or overgrowth of the graft. While an exploration of the human Temporomandibular joint seems to be unethical after reconstruction with an autogenous costochondral graft for study purposes, therefore we sought to determine the growth potential of the graft by clinical evaluation. Material and methods: An experimental study was done on 96 New Zealand white male rabbits, which were divided into batches. Each batch (total 2 batches) contained 24 experimental and 24 control rabbits of known ages and species; growing (3-4) and adult (12-18) months old. TMJ arthroplasty with a costochondral graft using either 1mm or 4 mm thickness of cartilaginous cap done in both age groups. Follow-up was done regularly in batches comparing with control up to 4th, 12th, and 24th weeks of surgery to find out any relationship of behavioral change, clinical presentation, and macroscopic growth of the graft. Results: There was a relationship among the rabbits with their behavioral change, clinical presentation, and presence of growth center in the graft. Growth was found in 60% cases, 40% was growing, and 20% in adults. Conclusions: Costochondral graft had a 60% growth potentiality. The failure rate of 40% may be due to some unknown factors. Grafts grew in a greater number of growing rabbits than adults. Long time follow-up had a strong role in the growth of the graft. In conclusion, clinical evaluation of the rabbit model provided a fair estimation of the growth process.
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