完全根形成与不完全根形成的第三的自生性移植:一项前性临床研究
Ankita Dixit1, Rajbir K Randhawa2, Gagandeep S Randhawa2
1Department of Pedodontics and Preventive Dentistry, Goenka Research Institute of Dental Science, India.
Journal of pharmacy & bioallied sciences
|September 30, 2024
概括
牙自移植是一种可行的选择,用于替换不可恢复的牙,无论根的发育阶段如何. 这种手术的成功率很高,为牙置换提供了有利的替代方案.
科学领域:
- 在口腔外科手术中.
- 牙科植入学 牙科植入学
- 复原牙科是复原牙科的一种.
背景情况:
- 无法恢复的牙通常需要提取,导致功能和美学缺陷.
- 自体移植为传统的假肢或植入物康复提供了一个生物替代方案.
研究的目的:
- 评估和比较对有完全和不完全根形成的牙进行自移植的疗效.
- 评估使用自体移植替换不可恢复的牙的成功率.
主要方法:
- 20名患有无法恢复的牙的患者接受了第三牙的自体移植.
- 根据移植牙完全或不完全的根形成,患者被分为两组.
- 进行了手术提取和无创性重新植入到提取插座中.
主要成果:
- 在6个月的随访后,在20个自移植的牙中,在19个中观察到95%的成功率.
- 一次移植由于移动性而失败,导致5%的失败率.
- 临床和放射评估证实了移植牙的生存能力.
结论:
- 自体移植是一种非常有效的程序,用于替换不可恢复的牙.
- 摩拉自身移植的成功不受根形成的程度 (完全或不完全) 的影响.
- 自体移植与替代治疗方式相比,有许多好处.
更多相关视频
相关概念视频
Forced Transdifferentiation
Transdifferentiation, also known as lineage reprogramming, was first discovered by Selman and Kafatos in 1974 in silkmoths. They observed that the moths’ cuticle-producing cells transformed into salt-producing cells. Many such cases of natural transdifferentiation occur in organisms. In humans, pancreatic alpha cells can become beta cells. In newts, the loss of the eye’s lens causes the pigmented epithelial cells to transdifferentiate into the lens cells.
Artificial transdifferentiation occurs...
Artificial transdifferentiation occurs...
Tissue Transplantation
Tissue transplantation is a significant medical procedure involving the transfer of cells, tissues, or organs from a donor to a recipient, with the primary aim of restoring lost functions. This procedure is crucial in treating a broad spectrum of diseases, including kidney diseases, liver failure, heart disease, and certain types of cancers.
The Biology of Tissue Transplantation
The biology of tissue transplantation hinges on the Major Histocompatibility Complex (MHC) molecules. These molecules...
The Biology of Tissue Transplantation
The biology of tissue transplantation hinges on the Major Histocompatibility Complex (MHC) molecules. These molecules...
Development of the Sexual Organs in the Embryo and Fetus
Development of the reproductive organs in an embryo starts from a bipotential state. This means the early embryo can develop either male or female reproductive organs. The formation of these organs begins with the growth of gonadal ridges that arise from the intermediate mesoderm during the fifth week of development.
Near the gonadal ridges, two duct systems are present: the mesonephric ducts (Wolffian ducts) and paramesonephric ducts (Müllerian ducts). These ducts form the basis for the male...
Near the gonadal ridges, two duct systems are present: the mesonephric ducts (Wolffian ducts) and paramesonephric ducts (Müllerian ducts). These ducts form the basis for the male...


