首页> 外文期刊>BMC Veterinary Research >Intra-pulp temperature increase of equine cheek teeth during treatment with motorized grinding systems: influence of grinding head position and rotational speed
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Intra-pulp temperature increase of equine cheek teeth during treatment with motorized grinding systems: influence of grinding head position and rotational speed

机译:电动研磨系统治疗过程中马颊骨的牙髓温度升高:研磨头位置和转速的影响

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Background In equine practice, teeth corrections by means of motorized grinding systems are standard procedure. The heat resulting from that treatment may cause irreparable damage to the dental pulp. It has been shown that a 5.5°C temperature rise may cause severe destruction in pulp cells. Hence, the capability to continuously form secondary dentine is lost, and may lead, due to equine-typical occlusal tooth abrasion, to an opening of the pulp cavity. To obtain reliable data on the intra-pulp increase in temperature during corrective treatments, equine cheek teeth (CT) were modified in a way (occlusal surface smoothed, apical parts detached, pulp horns standardized) that had been qualified in own former published studies. All parameters influencing the grinding process were standardized (force applied, initial temperatures, dimensions of pulp horns, positioning of grinding disk, rotational speed). During grinding experiments, imitating real dental treatments, the time span for an intra-pulp temperature increase of 5.5°C was determined. Results The minimum time recorded for an intra-pulp temperature increase of 5.5°C was 38?s in mandibular CT (buccal grinding, 12,000?rpm) and 70?s in maxillary CT (flat occlusal grinding, 12,000?rpm). The data obtained showed that doubling the rotational speed of the disk results in halving the time span after which the critical intra-pulp temperature increase in maxillary CT is reached. For mandibular CT, the time span even drops by two thirds. Conclusion The use of standardized hypsodont CT enabled comparative studies of intra-pulp heating during the grinding of occlusal tooth surfaces using different tools and techniques. The anatomical structure of the natural vital hypsodont tooth must be kept in mind, so that the findings of this study do not create a deceptive sense of security with regard to the time-dependent heating of the native pulp.
机译:背景技术在马术中,通过电动磨削系统进行牙齿矫正是标准程序。该处理产生的热量可能会对牙髓造成无法弥补的损害。已经表明,温度升高5.5°C可能导致果肉细胞严重破坏。因此,失去了连续形成次生牙本质的能力,并且由于马蹄型典型的咬合牙齿磨损而可能导致牙髓腔的开口。为了获得矫正治疗期间牙髓内部温度升高的可靠数据,对马脸颊牙齿(CT)进行了某种方式修改(咬合面光滑,根尖分离,牙髓角标准化),该方法在自己以前发表的研究中已经过验证。所有影响磨削过程的参数均已标准化(施加的力,初始温度,纸浆角的尺寸,磨盘的位置,转速)。在模仿真实牙科治疗的研磨实验过程中,确定了纸浆内温度升高5.5°C的时间跨度。结果记录的牙髓内温度升高的最短时间在下颌CT(颊磨,12,000 rpm)中为38?s,在上颌CT(平咬合磨,12,000 rpm)中为70?s。所获得的数据表明,将椎间盘的旋转速度加倍导致时间跨度减半,此后达到上颌CT的临界髓内温度升高。对于下颌CT,时间跨度甚至减少了三分之二。结论使用标准化的假牙CT可以对使用不同工具和技术磨合咬合牙齿表面时牙髓内部的加热进行比较研究。必须牢记天然重要的假牙的牙齿的解剖结构,以便本研究的结果不会对天然牙髓的时间依赖性加热产生欺骗性的安全感。

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