Silva Fernanda de Melo, Macedo Isabella Figueiredo Assis, Resende Pedro Damas, Tavares Warley Luciano Fonseca, Buono Vicente Tadeu Lopes, Santos Leandro de Arruda, Peixoto Isabella Faria da Cunha, Viana Ana Cecília Diniz
Department of Restorative Dentistry, Faculty of Dentistry, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.
Department of Metallurgical and Materials Engineering, School of Engineering, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.
Int Endod J. 2025 Jan;58(1):141-149. doi: 10.1111/iej.14146. Epub 2024 Sep 12.
To evaluate the behaviour of the XP-Endo Finisher and the variation in the intracanal temperature of the irrigant at rest and when activated over time.
Differential scanning calorimetry (DSC) determined the transformation temperatures of XP-Endo Finisher instruments. A digital thermocouple was used to measure the temperature of the irrigant inside the pulp chamber. Two measurements were performed for each tooth (n = 12): with the irrigant at rest and during XP-Endo agitation for 60 s to observe the temperature evolution. The data were statistically analysed using a t-test with a confidence level of 95%.
DSC results suggested that the XP-Endo Finisher had a mixed R-phase and austenitic structure at room temperature. The temperature values at predetermined time points (0, 10, 40, 70, 120 and 240 s) were measured, and no statistical difference was observed between the values of the resting and activated solutions at any of the selected points (p > .05). For the protocol performed with the XP-Endo file, the mean irrigant temperature observed at instrument insertion inside the root canal was 28.65°C. After 60 s of agitation, the temperature was 34.02°C. The solution temperature stabilized inside the canal only after 211 s at 35.5°C. The mean maximum irrigation solution temperature recorded inside the canal was 35.5°C without agitation and after XP-endo agitation (p > .05).
Although the XP-Endo Finisher system does not promote heating of the irrigation solution, file expansion responsible for improved instrument cleaning starts at a temperature below the expected value.
评估XP-Endo Finisher的性能以及冲洗液在静止状态和随着时间激活时根管内温度的变化。
差示扫描量热法(DSC)测定XP-Endo Finisher器械的转变温度。使用数字热电偶测量髓腔内冲洗液的温度。对每颗牙齿(n = 12)进行两次测量:一次是冲洗液处于静止状态时,另一次是在XP-Endo搅拌60秒期间,以观察温度变化。使用置信水平为95%的t检验对数据进行统计学分析。
DSC结果表明,XP-Endo Finisher在室温下具有混合的R相和奥氏体结构。测量了预定时间点(0、10、40、70、120和240秒)的温度值,在任何选定时间点,静止和激活溶液的温度值之间均未观察到统计学差异(p > 0.05)。对于使用XP-Endo锉进行的操作流程,在根管器械插入时观察到的冲洗液平均温度为28.65°C。搅拌60秒后,温度为34.02°C。仅在211秒后,根管内溶液温度稳定在35.5°C。在根管内记录的冲洗液平均最高温度在无搅拌和XP-endo搅拌后均为35.5°C(p > 0.05)。
尽管XP-Endo Finisher系统不会促使冲洗液升温,但负责改善器械清洁效果的锉扩张在低于预期值的温度下就已开始。