Hammesfahr Paul D, O'Connor Michael T, Wang Xiuling
DENTSPLY International, Caulk Division, Milford, Delaware, USA.
Compend Contin Educ Dent. 2002 Sep;23(9 Suppl 1):18-24.
The availability of light-curable resin systems has led to the development of a variety of technologies for producing the light necessary to cure them. Light, being electromagnetic radiation, is comprised of a wide spectrum of energies including ultraviolet, visible, and infrared. Each wavelength region of light has different characteristics in terms of chemical reactions, most notably polymerization of dental materials. Quartz tungsten halogen, plasma arc curing, laser, and, recently, light-emitting diode have all been important technologies used to produce light through dental curing units. Each technology has unique advantages and disadvantages. Thus, it is important for dental professionals to understand the polymerization processes and the ways in which these processes are affected by light energy.
光固化树脂体系的出现促使了多种用于产生固化所需光线的技术的发展。光作为电磁辐射,由包括紫外线、可见光和红外线在内的广泛能量光谱组成。就化学反应而言,光的每个波长区域都有不同的特性,在牙科材料聚合方面尤为显著。石英钨卤素灯、等离子弧固化、激光以及最近的发光二极管,都是通过牙科固化单元产生光的重要技术。每种技术都有其独特的优缺点。因此,牙科专业人员了解聚合过程以及这些过程受光能影响的方式非常重要。