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Morphometric, Densitométrie, and Mechanical Properties of Maxillary Teeth in 5-Month-Old Polish Merino Sheep

机译:5个月大的波兰美奴羊上颌牙齿的形态学,Densitométrie和力学性能

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This study was performed to determine morphological, densitométrie, mechanical, and elemental characteristics of maxillary teeth in 5-month-old Polish Merino sheep. The total tooth volume (Tvol) was determined using quantitative computed tomography. Micro-computed tomography was used to determine the total enamel volume (Evol), volumetric enamel mineral density, total dentine volume (Dvol), volumetric dentine mineral density, and total tooth enamel and dentine volume (EDvol). Compression testing was used to determine the ultimate force of teeth. Microhardness of enamel and dentine was evaluated using Vicker's test. Elemental analysis of enamel and dentine was performed using a scanning electron microscopy technique. Tooth weight, length, Tvol, Evol, Dvol, and EDvol increased consequently from the lowest values for p2, then for p3 and p4, to the highest values obtained for M1 (all p < 0.05). Ultimate force reached the lowest value for p2 compared with the other teeth (p < 0.05). The comparison of left and right teeth did not reveal significant differences for all the evaluated param eters (p > 0.05). Volumetric mineral density, calcium and phosphorus content, and microhardness were higher in enamel than in dentine, while the opposite results were obtained for magnesium and oxygen (all p < 0.05). Significantly higher enamel microhardness was found in mandibular i1 compared with maxillary and mandibular premolars (p < 0.05). The elaborated experimental model of the determination of maxillary deciduous teeth traits may serve for further studies on the effects of physiological, pathological, environmental, nutritional, pharmacological, and toxicological factors affecting tooth development and mineralized tissue properties.
机译:本研究旨在测定5个月龄波兰美利奴羊上颌牙齿的形态、密度、力学和元素特征。使用定量计算机断层扫描确定牙齿总体积(Tvol)。显微计算机断层扫描用于测定牙釉质总体积(Evol)、牙釉质体积密度、牙本质总体积(Dvol)、牙本质体积密度以及牙釉质和牙本质总体积(EDvol)。压缩试验用于确定牙齿的极限力。釉质和牙本质的显微硬度采用维氏硬度试验进行评估。使用扫描电子显微镜技术对牙釉质和牙本质进行元素分析。因此,牙齿重量、长度、Tvol、Evol、Dvol和EDvol从p2的最低值,然后是p3和p4,增加到M1的最高值(均p<0.05)。与其他牙齿相比,p2的极限力达到最低值(p<0.05)。左、右牙的比较并未显示所有评估参数的显著差异(p>0.05)。牙釉质的体积密度、钙和磷含量以及显微硬度均高于牙本质,而镁和氧的结果则相反(均p<0.05)。与上颌和下颌前磨牙相比,下颌i1牙釉质显微硬度显著升高(p<0.05)。确定上颌乳牙性状的详细实验模型可用于进一步研究影响牙齿发育和矿化组织特性的生理、病理、环境、营养、药理学和毒理学因素的影响。

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