期刊文献+

失下牙槽神经支配与拔牙窝新骨形成及骨量保持

Denervation of the inferior alveolar nerve is associated with bone formation and bone mass maintenance in extraction sockets
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摘要 背景:牙齿拔除后拔牙窝内新骨形成及改建与神经支配密切相关。目的:探讨失神经支配对拔牙窝新骨形成和骨量保持的可能调节作用。方法:切除犬一侧下牙槽神经建立失神经支配动物模型,失神经支配侧为实验组,以未切除侧为对照组,组织学染色检测术后2,4,8,12周时间点拔牙窝新骨形成和骨量保持。结果与结论:实验组拔牙窝骨缺损区的新生骨量面积百分比在术后2,4,8周明显低于对照组(P<0.01);术后2,4,8,12周,实验组颊舌侧牙槽嵴高度差明显高于对照组(P<0.05或P<0.01)。说明失神经支配与拔牙窝新骨形成和骨量保持存在密切相关性。 BACKGROUND: There is a close relationship between innervations and bone formation and bone mass maintenance in the extraction sockets. OBJECTIVE:To study the possible effect of denervations on the regulation of new bone formation and bone mass maintenance in the extraction sockets. METHODS:The unilateral inferior nerve of dogs was sectioned to establish an animal denervation model. The normal side was used as control. After model establishment, the premolars of denervated side and normal side were extracted. Histological method was used to test new bone formation and bone mass maintenance in the extraction sockets at the 2nd, 4th, 8th and 12th weeks after tooth extraction. RESULTS AND CONCLUSION:The percentage of new bone areas in the extraction sockets was significantly lower in the experiment group than the control group at weeks 2, 4, 8 after tooth extraction (P &lt; 0.01). The height difference between the buccal and lingual alveolar ridge was higher in the experimental group than the control group at weeks 2, 4, 8, 12 after tooth extraction (P &lt; 0.05 or P &lt; 0.01). These findings indicate that denervation is closely related with new bone formation and bone mass maintenance in the extraction sockets.
出处 《中国组织工程研究》 CAS 北大核心 2015年第42期6740-6745,共6页 Chinese Journal of Tissue Engineering Research
基金 国家自然科学基金(31070838) 福建省自然科学基金杰出青年项目(2012J06017) 福建省卫生厅青年基金(2012-1-20)~~
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  • 1Wiesen M, Kitzis R. Preservation of the alveolar ridge at implant sites. Periodontal Clin Investiq. 1998;20(2):17-20.
  • 2Jones KB, Mollano AV, Morcuende JA, et al. Bone and brain: a review of neural, hormonal, and musculoskeletal connections. Iowa Orthop J. 2004;24:123-132.
  • 3Togari A, Arai M, Kondo A. The role of the sympathetic nervous system in controlling bone metabolism. Expert Opin Ther Targets. 2005;9:931-940.
  • 4Togari A, Arai M. Pharmacological topics of bone metabolism the physiological function of the sympathetic nervous system in modulating bone resorption. J Pharmacol Sci. 2008;106: 542-546.
  • 5王承勇,陈伟辉,林海,曲延征.神经支配与种植体骨结合和骨感知的相关性[J].中国组织工程研究与临床康复,2010,14(4):684-688. 被引量:5
  • 6陈伟辉.应力作用下生长因子对成骨细胞增殖和分化的调节[J].国外医学(口腔医学分册),1999,26(6):347-350. 被引量:3
  • 7Ransjo M, lie A, Mukohyama H, et al. Miroisolated mouse osteoclasts express VIP-1 and PACAP receptors. Biochem Biophys Res Commun. 2000;274:400.
  • 8Boggio V, Ladizesky MG, Cutrera RA, et al. Autonomic neura signals in bone: physiological implications for mandible and dental growth. Life Sci. 2004;75:383-395.
  • 9Sherman BE, Chole RA. Effects of catecholamines on ' calvarial bone resportion in vitro. Ann Otol Rhinol Laryngol. 2001:110:682-689.
  • 10林海,王承勇,王锦,卢萌,陈伟辉.神经支配与拔牙窝的骨愈合[J].中国组织工程研究,2012,16(7):1141-1144. 被引量:1

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