Universidade de São Paulo, Faculdade de Odontologia de Bauru (Bauru/SP, Brazil).
Universidade de São Paulo, Faculdade de Odontologia de Ribeirão Preto, Programa de Pós-graduação em Odontopediatria (Ribeirão Preto/SP, Brazil).
Dental Press J Orthod. 2022 Jul 4;27(3):e22ins3. doi: 10.1590/2177-6709.27.3.e22ins3. eCollection 2022.
Induced tooth-bone movement occurs by a synchronicity of dental and bone phenomena, thanks to the osteocytic network, which is a three-dimensional network that controls the bone shape or design.
To describe the tooth-bone movement induced by enhanced anchorage, divided into three distinct moments: zero, start and stop.
From this description, the main question arises: with the use of mini-implants/miniplates, what changes in the biology of induced tooth-bone movement? The answer is: nothing changes, either biologically or microscopically.
This technique optimizes the treatment time, and the range of therapeutic possibilities is broadened, thanks to the synchronicity of phenomena - which remain the same, in all teeth and bones, yet in a synchronized manner. Bone anchorage represents synchronicity in induced tooth-bone movement.
诱导牙骨移动是通过牙和骨现象的同步性发生的,这要归功于骨细胞网络,它是一种控制骨形状或设计的三维网络。
描述增强锚固引起的牙骨移动,分为三个不同的时刻:零时刻、开始时刻和停止时刻。
从这个描述中,主要的问题出现了:使用微型种植体/微型板,诱导牙骨移动的生物学会有什么变化?答案是:无论从生物学还是显微镜下观察,都没有变化。
该技术优化了治疗时间,治疗的可能性范围也扩大了,这要归功于现象的同步性——在所有的牙齿和骨骼中,这种同步性是相同的,但以同步的方式发生。骨锚固代表了诱导牙骨移动中的同步性。