Comparison of micromorphological changes in enamel using SEM analysis after conventional and erbium, chromium:yttrium, scandium, gallium, and garnet hard-tissue laser fissurotomy: An in vitro study.

Priyanka Aggarwal, Pallavi Anand, Kopal Singh, Pulkit Jhingan, Manvi Malik, Shivani Mathur
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Abstract

Background: Well articulated by John Knowles - "Everything has to evolve or else it perishes." With the paradigm shift of emphasis toward the prevention of dental caries, it has been proven that laser irradiation protects against both caries initiation and caries progression.

Aim: The aim of the study was to evaluate and compare the micromorphology of caries-free extracted premolars using a Scanning electron microscope (SEM) after fissurotomy by conventional fissurotomy bur and erbium, chromium: yttrium, scandium, gallium, and garnet (ER, CR: YSGG) hard-tissue laser.

Methodology: Sixty caries-free premolars extracted atraumatically for orthodontic treatment were included in the study. The samples were divided into two groups randomly (Group 1: fissurotomy by bur, n = 30, and Group 2: fissurotomy by hard-tissue laser, n = 30). Each sample was further divided into halves from the occlusal surface wherein one-half of the occlusal surface received fissurotomy procedure and the other half was control. Samples were analyzed by scanning electron microscopy (SEM) for micromorphological changes.

Results: Profile image of control samples revealed the disorganization of enamel surface at the junction of fissures forming a heterogeneous tissue and agglomeration of enamel with deep pit and fissure. On the contrary, the image of experimented samples (with laser fissurotomy) showed smooth enamel surface and homogeneous enamel subsurface with wider pit and fissure owing to self-cleansing ability.

Conclusion: On the grounds of the present study results, it could be concluded that the intervention of ER, CR: YSGG hard-tissue laser possesses self-cleansable pit and fissures for caries prevention and has the potential to irradicate the smear layer entirely for superior attachment of remineralizing agents.

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在常规和铒、铬:钇、钪、镓和石榴石硬组织激光裂隙切开术后,使用SEM分析比较牙釉质的微观形态变化:一项体外研究。
背景:约翰·诺尔斯(John Knowles)阐述得很好——“一切都必须进化,否则就会灭亡。”随着重点转向预防龋齿,激光照射已被证明可以预防龋齿的发生和发展。目的:本研究的目的是用扫描电子显微镜(SEM)评估和比较常规裂隙切开术后无龋提取的前磨牙与铒、铬、钇、钪、镓和石榴石(ER,CR:YSGG)硬组织激光的微观形态。方法:本研究纳入了60颗无龋前磨牙,这些前磨牙是以无创方式提取用于正畸治疗的。将样本随机分为两组(第1组:bur裂隙切开术,n=30;第2组:硬组织激光裂隙切开术(n=30)。每个样本从咬合表面进一步分成两半,其中一半的咬合表面接受了裂隙切开术,另一半是对照。通过扫描电子显微镜(SEM)分析样品的微观形态变化。结果:对照样品的剖面图像显示,在裂隙交界处,釉质表面杂乱无章,形成不均匀组织,釉质结块,并伴有深坑和深裂隙。相反,实验样品(激光裂隙切开术)的图像显示,由于具有自清洁能力,釉质表面光滑,釉质亚表面均匀,凹坑和裂隙较宽。结论:根据目前的研究结果,可以得出结论,ER、CR:YSGG硬组织激光的干预具有自清洁的窝裂防龋作用,并且有可能完全冲洗涂抹层,以获得再矿化剂的良好附着。
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