Cugini MaryAnn, Warren Paul R
Oral-B Laboratories, a division of The Gillette Company, Prudential Tower Building, Boston, Massachusetts, USA.
J Can Dent Assoc. 2006 May;72(4):323.
The design of the modern conventional manual toothbrush can be attributed to Dr. Robert Hutson, a Californian periodontist, who in the early 1950s developed the multitufted, flattrimmed, end-rounded nylon filament brush that became known as the Oral-B manual toothbrush. The trademark Oral-B emphasized that this was an oral brush, designed to clean all parts of the oral cavity, not merely a toothbrush. Flat-trimmed conventional toothbrushes based on the original Oral-B design have good plaque-removing capability when used carefully. However, limitations in terms of patients" brushing technique and brushing time necessitated a radical change in bristle pattern to improve performance, especially at approximal sites and along the gumline.
Detailed studies of the tooth-brushing process, using advanced scientific and ergonomic research methods, led to new toothbrush designs intended to maximize the efficacy of brushing efforts. These studies showed that the point of greatest interproximal penetration occurs when the direction of brushing changes; bristles angle back into the interproximal space, moving down and back up the adjoining approximal surface. These mechanics were further optimized on the basis of standardized evaluations of brush-design characteristics, including combinations of tuft lengths, insertion angles and tuft layout. With conventional vertical bristles these improvements yield limited benefits because only a few bristles are correctly positioned at the interproximal junction when the brush changes direction. Ultimately, a design with bristle tufts arranged at 16 masculine from vertical along the horizontal brush head axis was identified, in which the maximum number of bristles operated at the optimum angle throughout the brushing cycle. This design was significantly more effective (p < 0.001) than others in terms of penetration (by 9.6%) and cleaning effectiveness per brush stroke (by 15.5%).
This discovery paved the way for a new toothbrush design with a unique patented array of tufts, which became known as the Oral-B CrossAction brush. This design was selected for extensive independent studies designed to evaluate plaque removal at the gingival margins and in the approximal areas and longer-term control of gingivitis, relative to current standard designs. In a series of studies (published in 2000), 14 single-brushing comparisons and 2 longer-term studies demonstrated the consistent superiority of the Oral-B CrossAction brush over the equivalent commercial standards. Since then, several additional studies have contributed further positive performance data for the CrossAction brush. Two of the studies demonstrated that plaque removal by this brush was superior to that of 15 other manual toothbrushes, and further investigations contributed similarly positive data. Longer-term data have confirmed superior CrossAction performance and the long-term benefits of improved efficacy, particularly for gingivitis.
Novel approaches to toothbrush design have produced a toothbrush that, when tested in a large number of clinical studies, has consistently met or exceeded established standards of efficacy. The literature contains a wealth of performance data on various toothbrush designs, but none of these designs shows the year-on-year consistency and reproducibility of the Oral-B CrossAction.
现代传统手动牙刷的设计可归功于加利福尼亚州的牙周病学家罗伯特·赫特森博士,他在20世纪50年代初开发了多束、平头、末端圆润的尼龙丝牙刷,即后来闻名的欧乐-B手动牙刷。“欧乐-B”这一商标强调这是一款口腔刷,旨在清洁口腔的所有部位,而不仅仅是牙刷。基于原始欧乐-B设计的平头传统牙刷在小心使用时具有良好的牙菌斑清除能力。然而,患者刷牙技巧和刷牙时间方面的限制使得刷毛排列模式需要进行彻底改变以提高性能,尤其是在邻面部位和牙龈线处。
使用先进的科学和人体工程学研究方法对刷牙过程进行的详细研究,催生了旨在使刷牙效果最大化的新型牙刷设计。这些研究表明,当刷牙方向改变时,邻面最大穿透点出现;刷毛向后倾斜进入邻间隙,沿着相邻邻面上下移动。基于对牙刷设计特征的标准化评估,包括刷毛束长度、插入角度和刷毛束布局的组合,对这些力学原理进行了进一步优化。对于传统的垂直刷毛,这些改进带来的益处有限,因为当牙刷改变方向时,只有少数刷毛能正确定位在邻面交界处。最终,确定了一种设计,即刷毛束沿着水平刷头轴线与垂直方向呈16°排列,在整个刷牙周期中,最大数量的刷毛以最佳角度工作。在穿透方面(提高9.6%)和每次刷动的清洁效果方面(提高15.5%),这种设计比其他设计显著更有效(p<0.001)。
这一发现为一种新型牙刷设计铺平了道路,这种设计拥有独特的专利刷毛束排列,即后来闻名的欧乐-B交叉动作牙刷。相对于当前的标准设计,这种设计被选用于广泛的独立研究,旨在评估牙龈边缘和邻面区域的牙菌斑清除情况以及牙龈炎的长期控制效果。在一系列研究(2000年发表)中,14次单刷比较和2次长期研究证明了欧乐-B交叉动作牙刷相对于同等商业标准的持续优越性。从那时起,多项其他研究为交叉动作牙刷提供了更多积极的性能数据。其中两项研究表明,这款牙刷的牙菌斑清除效果优于其他15种手动牙刷,进一步的调查也得出了类似的积极数据。长期数据证实了交叉动作牙刷的卓越性能以及提高功效带来的长期益处,尤其是对牙龈炎的益处。
牙刷设计的新方法产生了一种牙刷,在大量临床研究中进行测试时,其性能始终达到或超过既定的功效标准。文献中包含了各种牙刷设计的大量性能数据,但这些设计中没有一种能像欧乐-B交叉动作牙刷那样具有逐年的一致性和可重复性。