在接受透明对齐器治疗的患者中,牙旋转的可预测性
Vincenzo D'Antò1, Roberto Rongo2, Sossio Dario Casaburo2
1Department of Neurosciences, Reproductive Sciences and Oral Sciences, School of Orthodontics, University of Naples Federico II, Via Pansini, 5, 80131, Naples, Italy. vincenzo.danto@unina.it.
Scientific reports
|May 18, 2024
概括
清晰对齐器在纠正牙旋转方面表现出适度的可预测性,在下弓中达到78.6%,在上弓中达到75.0%. 准确性是第二牙的最低,表明精确的旋转控制的局限性.
科学领域:
- 矯正牙科 矯正牙科是一種矯正牙科.
- 牙科技术 牙科技术
背景情况:
- 透明对齐器被广泛用于缺陷治疗.
- 以前的研究表明,用清晰对齐器纠正牙旋转的准确性有限.
研究的目的:
- 为了评估牙旋转运动的可预测性和准确性,用清晰的对齐器实现.
- 为了比较计划与实际旋转校正在下和大弓.
主要方法:
- 使用3D计量软件 (Geomagic Control X) 来测量角旋转.
- 分析了45名参与者的治疗前 (T0),虚拟计划 (T1) 和治疗后 (T2) 数字牙科模型.
- 计算了390颗牙的规定的和实现的旋转,比较了计划和实际结果.
主要成果:
- 轮转运动的总体可预测性为下弓的78.6%,大弓的75.0%.
- 准确性在两个门的第二关节显著较低.
- 清晰对齐器没有实现100%的计划旋转移动.
结论:
- 清晰对齐器显示牙旋转校正的适度可预测性,具有显著的可变性.
- 对于使用透明调整器进行精确的旋转控制来说,第二牙具有特殊的挑战.
- 需要进一步的进展,以提高复杂的牙旋转清晰对齐器治疗的精度.
相关概念视频
Teeth
387
The formation of teeth, also known as odontogenesis, is a complex process that begins in utero, around the sixth week of embryonic development. There are three stages to this process: the bud stage, the cap stage, and the bell stage.
In the bud stage, the tooth germ (an aggregation of cells) starts to form in the developing jawbone. During the cap stage, the tooth germ differentiates into enamel organ, dental papilla, and dental sac, which will later develop into the tooth's enamel, dentin...
In the bud stage, the tooth germ (an aggregation of cells) starts to form in the developing jawbone. During the cap stage, the tooth germ differentiates into enamel organ, dental papilla, and dental sac, which will later develop into the tooth's enamel, dentin...
387
Tooth Anatomy
439
The human tooth enables us to eat a variety of foods, speak clearly, and even aid in shaping our faces. Teeth are composed of various elements that work together. Here's a detailed look at the anatomy of a human tooth.
The Crown, Neck, and Root
The visible part of the tooth is referred to as the crown. It's covered by enamel, the hardest substance in the human body. The crown is uniquely shaped for each type of tooth, allowing for different functions such as cutting, tearing, or...
The Crown, Neck, and Root
The visible part of the tooth is referred to as the crown. It's covered by enamel, the hardest substance in the human body. The crown is uniquely shaped for each type of tooth, allowing for different functions such as cutting, tearing, or...
439
Angle of Twist: Problem Solving
271
An electric motor applies a torque of 700 N·m to an aluminum shaft, triggering a stable rotation. Two pulleys, B and C, are subjected to torques of 300 N·m and 400 N·m, respectively. The modulus of rigidity is provided as 25 GPa. With the knowledge of the length and diameter of each segment, the twist angle between the two pulleys can be computed. First, a section cut is made between pulleys B and C, and the cut cross-section is analyzed using a free-body diagram. Given that the...
271
Rotation with Constant Angular Acceleration - I
6.7K
If angular acceleration is constant, then we can simplify equations of rotational kinematics, similar to the equations of linear kinematics. This simplified set of equations can be used to describe many applications in physics and engineering where the angular acceleration of a system is constant.
Using our intuition, we can begin to see how rotational quantities such as angular displacement, angular velocity, angular acceleration, and time are related to one another. For example, if a flywheel...
Using our intuition, we can begin to see how rotational quantities such as angular displacement, angular velocity, angular acceleration, and time are related to one another. For example, if a flywheel...
6.7K
Rotation with Constant Angular Acceleration - II
6.0K
Kinematics is the description of motion. The kinematics of rotational motion discusses the relationships between rotation angle, angular velocity, angular acceleration, and time. One can describe many things with great precision using kinematics, but kinematics does not consider causes. For example, a large angular acceleration describes a very rapid change in angular velocity without any consideration of its cause. Thus, rotational kinematics does not represent the laws of nature.
The first...
The first...
6.0K


