Wachowiak Roman, Strach Bogna
Z Katedry i Zakladu Medycyny Sadowej Uniwersytetu Medycznego im. K. Marcinkowskiego w Poznaniu.
Arch Med Sadowej Kryminol. 2007 Jul-Sep;57(3):271-6.
The potential for a release of dental restoration material or a spontaneous loss of a tooth structure fragment in the course of mastication frequently requires a reliable identification of the lost fragment in order to confirm its origin. The consequences of incidental mechanical injuries -- in view of the presence of dangerous solid fragments -- become particularly important in cases of using a chewing gum. The problem involves distinguishing between the structure of a fragment of restoration or a broken tooth structure and incidental contaminants of chewing gum produced in the process of gum manufacturing. The consequences of mechanical injuries or exposure to potential structural tooth damage in the course of gum chewing provide a subject for numerous litigations against manufacturer of chewing gum and require appropriate identification of the material. The studies were conducted using solid phase infrared spectroscopy in the range of 500-4000 wavelength (cm(-1)) for a quick identification of dental materials used in the dental practice. A database of infrared transmission spectra characteristic of commonly employed dental filling materials was prepared to provide a systemic reference system, useful in controversial interpretation cases.
在咀嚼过程中,牙科修复材料有可能释放出来,或者牙齿结构碎片可能会自发脱落,这种情况下通常需要可靠地识别丢失的碎片,以确认其来源。考虑到存在危险的固体碎片,意外机械损伤的后果在食用口香糖的情况下尤为重要。这个问题涉及区分修复体碎片或牙齿结构破损部分的结构与口香糖制造过程中产生的口香糖偶然污染物。在咀嚼口香糖过程中机械损伤或潜在牙齿结构损伤暴露的后果引发了众多针对口香糖制造商的诉讼,这需要对材料进行适当识别。本研究使用波长范围为500 - 4000(cm⁻¹)的固相红外光谱法,以便快速识别牙科实践中使用的牙科材料。制备了常用牙科填充材料的红外透射光谱特征数据库,以提供一个系统的参考系统,这在有争议的解释案例中很有用。