Al-bulushi A, Levinkind M, Flanagan M, Ng Y-L, Gulabivala K
UCL Eastman Dental Institute, University College London, London, UK.
Int Endod J. 2008 Oct;41(10):892-904. doi: 10.1111/j.1365-2591.2008.01450.x.
To investigate the effect of root canal preparation and residual root filling material on the impedance characteristics of extracted human roots.
Thirty extracted, human single-rooted teeth were mounted in a custom-made apparatus that allowed strict temperature control. Impedance measurements of the roots were made with a file acting as the internal electrode, using a frequency response analyser. The measurements were made under three canal conditions: (i) before chemo-mechanical preparation; (ii) after chemo-mechanical preparation; (iii) after root filling removal to re-establish patency (following placement of root filling). The measurements were taken at 0, 0.5, 1, 2, 3, 4, 5, 6, 7, 8, 9 and 10 mm coronal to the apical terminus and also at 0.5 and 1 mm past the apical terminus. Impedance values were viewed using Nyquist plots and comparisons made within each tooth, between measurement points along the length of the canal, as well as under the different canal conditions. Equivalent circuits were modelled for different test conditions.
The impedance decreased from the coronal to the apical levels in all canal conditions in a characteristic way, with an exaggerated drop at the apical terminus. Impedance decreased after chemo-mechanical preparation, but gave higher values compared with before or after instrumentation, once canal filling had been removed. Equivalent circuits remained consistent at the tested positions within the canal, regardless of canal condition, but the circuit component values changed with the impedance.
Impedance was influenced by corono-apical position, chemo-mechanical preparation and residual root canal filling material.
研究根管预备和根管内残留充填材料对拔除的人牙根阻抗特性的影响。
将30颗拔除的人单根牙安装在一个可严格控制温度的特制装置中。使用频率响应分析仪,以锉作为内部电极对牙根进行阻抗测量。测量在三种根管状态下进行:(i)化学机械预备前;(ii)化学机械预备后;(iii)去除根管充填物以重新建立通畅性后(根管充填后)。在距根尖孔冠方0、0.5、1、2、3、4、5、6、7、8、9和10 mm处以及根尖孔以外0.5和1 mm处进行测量。使用奈奎斯特图观察阻抗值,并在每颗牙齿内部、沿根管长度的测量点之间以及不同根管状态下进行比较。针对不同测试条件建立等效电路模型。
在所有根管状态下,阻抗从冠方到根尖方以一种特征性方式降低,在根尖孔处有一个夸张的下降。化学机械预备后阻抗降低,但在去除根管充填物后,与预备前或预备后相比,阻抗值更高。无论根管状态如何,等效电路在根管内的测试位置保持一致,但电路元件值随阻抗而变化。
阻抗受冠根位置、化学机械预备和根管内残留充填材料的影响。