首页> 外文期刊>International endodontic journal >Influence of refreshment/activation cycles and temperature rise on the reaction rate of sodium hypochlorite with bovine dentine during ultrasonic activated irrigation
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Influence of refreshment/activation cycles and temperature rise on the reaction rate of sodium hypochlorite with bovine dentine during ultrasonic activated irrigation

机译:刷新/激活周期和温度升高对次氯酸钠与牛牙本质超声冲洗反应速率的影响

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摘要

Aim: To evaluate the effect of multiple refreshment/activation cycles and temperature on the reaction rate of sodium hypochlorite (NaOCl) with bovine dentine during ultrasonic activated irrigation (UAI) under laboratory conditions. Methodology: The root canal walls of 24 standardized root canals in bovine incisors were exposed to a standardized volume of NaOCl at different temperatures (24 °C and 38 °C) and exposure times (20, 60 and 180 s). The irrigant was refreshed and ultrasonically activated four times for 20 s followed by a 40 s rest interval, with no refreshment and no activation as the controls. The reaction rate was determined by measuring the amount of active chlorine in the NaOCl solution before and after being exposed to dentine during the specific experimental conditions. Calorimetry was used to measure the electrical-to-sonochemical conversion efficiency during ultrasonic activation. Results: Refreshment, activation and exposure time all increased the reaction rate of NaOCl (P < 0.05). During activation, the temperature of the irrigant increased up to 10 °C. Such temperature rise was insufficient to enhance the reaction rate of NaOCl (P > 0.125). Conclusions: The reaction rate of NaOCl with dentine is enhanced by refreshment, ultrasonic activation and exposure time. Temperature rise of irrigant during ultrasonic activation was not sufficient to alter the reaction rate.
机译:目的:在实验室条件下,在超声激活灌溉(UAI)期间,评估多个刷新/激活周期和温度对次氯酸钠(NaOCl)与牛牙本质反应速率的影响。方法:在不同温度(24°C和38°C)和暴露时间(20、60和180 s)下,将牛切牙中24条标准化根管的根管壁暴露于标准体积的NaOCl中。刷新冲洗液,并在20 s内超声激活四次,然后间隔40 s,没有刷新,也没有激活作为对照。通过测量在特定实验条件下暴露于牙本质之前和之后的NaOCl溶液中活性氯的含量来确定反应速率。量热法用于测量超声活化过程中的电-声化学转化效率。结果:茶点,活化和暴露时间均增加了NaOCl的反应速率(P <0.05)。在激活期间,冲洗液的温度升高到10°C。这种温度升高不足以提高NaOCl的反应速率(P> 0.125)。结论:NaOCl与牙本质的反应速率通过刷新,超声活化和暴露时间得以提高。超声活化过程中冲洗液的温度升高不足以改变反应速率。

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