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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Predicting tooth-size discrepancy: A new formula utilizing revised landmarks and 3-dimensional laser scanning technology
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Predicting tooth-size discrepancy: A new formula utilizing revised landmarks and 3-dimensional laser scanning technology

机译:预测牙齿大小差异:利用修正的界标和3维激光扫描技术的新公式

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摘要

Introduction: The goal of this study was to develop a more accurate formula to forecast tooth-size discrepancies in patients based on not only the size of the whole teeth but also functional arch components derived from normal cusp-fossa interdigitation that should be obtained as the final treatment goal. Methods: A total of 141 dental casts from Dr Larry Andrews' collection of "normal occlusions" that never received orthodontic treatment were scanned with an Ortho Insight 3D Laser Scanner (Motion View Software, Chattanooga, Tenn). Individual tooth sizes and portions of tooth sizes were measured with the Motion View Software. For each set of models, potential tooth-size discrepancies were calculated by using both the original Bolton analysis and the new Johnson/Bailey analysis developed by this team at the University of California at San Francisco (UCSF). Six tooth-size discrepancy ratios were computed and included the Bolton (2) and the new (4) Johnson/Bailey analysis ratios for the anterior arch component, posterior arch component, and overall ratio of the maxillary and mandibular arches. The Johnson/Bailey analysis utilized different landmarks and groups of teeth. It consequently divided the maxillary segment by the mandibular segment, in contrast to the Bolton ratios, which divided the mandibular sums by the maxillary totals. Results: The Bolton anterior segment ratio ranged from 70.68 to 84.81, with a mean of 77.91 (SD, 2.43) (3.1%). The Bolton overall ratio ranged from 86.19 to 96.62, with a mean of 91.64 (SD, ±1.74) (1.8%). The Johnson/Bailey posterior discrepancy ratio ranged from 0.98 to 1.23, with a mean of 1.10 (SD, ±0.04) (3.6%). Its anterior discrepancy ratio ranged from 0.91 to 1.14, with a mean of 1.03 (SD, ±0.04) (3.9%). The Johnson/Bailey overall discrepancy ratio ranged from 0.98 to 1.15, with a mean of 1.06 (SD, ±0.03) (2.8%). Conclusions: Two methods were used to forecast tooth-size discrepancies between opposing arches in a sample with clinically acceptable occlusions. The new approach provided more specific ratios utilizing more clinically relevant functional arch components derived from dental cusp-fossa interdigitation.
机译:简介:这项研究的目的是开发一种更准确的公式,以不仅根据整颗牙齿的大小,而且还应根据源自正常牙尖窝交指的功能性足弓组件来预测患者的牙齿大小差异,以作为参考。最终治疗目标。方法:使用Ortho Insight 3D激光扫描仪(Motion View Software,查塔努加,田纳西州)对从未接受过正畸治疗的Larry Andrews博士的“正常咬合”合集中的141个牙齿模型进行了扫描。使用Motion View软件测量单个牙齿的大小和部分牙齿的大小。对于每组模型,均使用该团队在加利福尼亚大学旧金山分校(UCSF)开发的原始Bolton分析和新的Johnson / Bailey分析来计算潜在的牙齿大小差异。计算了六个牙齿大小差异率,其中包括前牙弓成分,后牙弓成分以及上颌和下颌牙弓的总比例的Bolton(2)和新的(4)Johnson / Bailey分析率。 Johnson / Bailey分析使用了不同的界标和牙齿组。因此,与Bolton比率将下颌总和除以上颌骨总数的Bolton比率相反,它用上颌骨除以下颌骨。结果:博尔顿前节段的比率为70.68至84.81,平均值为77.91(SD,2.43)(3.1%)。博尔顿总比率在86.19至96.62之间,平均值为91.64(SD,±1.74)(1.8%)。 Johnson / Bailey后验差异率在0.98至1.23之间,平均值为1.10(SD,±0.04)(3.6%)。其前差异率在0.91至1.14之间,平均值为1.03(SD,±0.04)(3.9%)。 Johnson / Bailey总体差异率为0.98至1.15,平均值为1.06(SD,±0.03)(2.8%)。结论:两种方法被用于预测具有临床上可接受的咬合的样本中相对弓之间的牙齿大小差异。这种新方法利用了更多的临床相关功能性弓形成分,这些成分来自牙尖窝交叉指形,从而提供了更具体的比例。

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