Rizoiu I, Kohanghadosh F, Kimmel A I, Eversole L R
UCLA School of Dentistry, USA.
Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1998 Aug;86(2):220-3. doi: 10.1016/s1079-2104(98)90128-7.
Laser systems are known to raise pulpal temperatures when applied to tooth surfaces. Dental biocalcified tissues can be cut with an erbium,chromium:yttrium-scandium-gallium-garnet laser-powered hydrokinetic system. This device is effective for caries removal and cavity preparation in vitro. Pulpal monitoring of temperature changes during hard tissue cutting by a hydrokinetic system have not been reported.
This study compared the effects of hydrokinetic system, dry bur, and wet bur tooth cutting on pulpal temperature.
In vivo thermocouple intrapulpal measurements were made on cuspid teeth in anesthetized beagle dogs. In vitro measurements were made on extracted human molar teeth preserved in high-salt solution and later rinsed in phosphate-buffered saline (pH 7.4) to simulate in vivo conditions. The hydrokinetic system was compared with conventional air-turbine-powered bur cutting. The hydrokinetic system cuts and bur preparations were randomly made on the buccal surfaces at the cervical one third of the crown and extended until exposure of the pulp was confirmed clinically.
Pulpal temperatures associated with the hydrokinetic system either showed no change or decreased by up to 2 degrees C. Wet bur preparations resulted in a 3 degrees to 4 degrees C rise. With dry bur preparations, a 14 degrees C rise in temperature was recorded.
Under the conditions of this study, the erbium,chromium:yttrium-scandium-gallium-garnet laser-powered hydrokinetic system, when used for cavity preparation, had no apparent adverse thermal effect as measured in the pulp space.
已知激光系统应用于牙齿表面时会升高牙髓温度。牙科生物钙化组织可用铒铬:钇钪镓石榴石激光驱动的流体动力系统切割。该设备在体外对龋齿去除和窝洞预备有效。尚未有关于流体动力系统在硬组织切割过程中牙髓温度变化监测的报道。
本研究比较了流体动力系统、干钻和湿钻切割牙齿对牙髓温度的影响。
在麻醉的比格犬的尖牙上进行体内牙髓内热电偶测量。对保存在高盐溶液中、随后用磷酸盐缓冲盐水(pH 7.4)冲洗以模拟体内条件的拔除人类磨牙进行体外测量。将流体动力系统与传统的气动涡轮钻切割进行比较。在牙冠颈三分之一的颊面随机进行流体动力系统切割和钻预备,直至临床上确认牙髓暴露。
与流体动力系统相关的牙髓温度要么没有变化,要么下降高达2摄氏度。湿钻预备导致温度升高3至4摄氏度。干钻预备时,记录到温度升高14摄氏度。
在本研究条件下,铒铬:钇钪镓石榴石激光驱动的流体动力系统用于窝洞预备时,在牙髓腔中测量未显示出明显的不良热效应。