Smit A, Pollard M, Cleaton-Jones P, Preston A
Department of Anaesthesia, University of the Witwatersrand, Johannesburg, South Africa.
Caries Res. 1997;31(1):55-9. doi: 10.1159/000262375.
An ion-sensitive field effect transistor (ISFET, Sentron, Sentron, Inc.) electrode was compared with a glass combination micro-electrode (MI-410, Micro-electrodes, Inc.) and a solid-state metal wire oxide pH sensor (Beetrode, World Precision Instruments, Inc.) with a liquid junction reference electrode (MERE1, World Precision Instruments, Inc.). The electrodes were assessed for linearity, reproducibility, accuracy, drift from the initial calibration between pH 4 and pH 7 and the time taken to record a stable reading. The ISFET was used to determine the pH in dental plaque samples (1 mg suspended in 20 microliters). The pH values correlated with the hydrogen ion concentration for all the electrodes (r = 0.98). The MI-410 fractured before this evaluation was completed. Coefficients of variation were 0.65% (pH 4) and 0.08% (pH 7) for the ISFET and 4.69% (pH 4) and 3.46% (pH 7) for the Beetrode. Both electrodes gave readings that differed significantly from the initial calibration, but the drift was greater for the Beetrode (F = 7.93; p = 0.0005) than the ISFET (F = 1.89; p = 0.1519). However, this drift was smaller than the change in pH as measured in dental plaque samples. The Beetrode gave a stable reading after 3.39 +/- 0.83 s and the ISFET after 2.2 +/- 0.76 s, while the MI-410 required at least 20 s. The ISFET type electrode is suitable for use in small volumes such as plaque suspensions, is easier to operate and yields results closer to the initial calibration than the Beetrode and is more robust than the MI-410 and the Beetrode.
将离子敏感场效应晶体管(ISFET,Sentron公司,Sentron)电极与玻璃复合微电极(MI - 410,微电极公司)以及带有液接参比电极(MERE1,世界精密仪器公司)的固态金属丝氧化物pH传感器(Beetrode,世界精密仪器公司)进行了比较。对这些电极的线性、可重复性、准确性、在pH 4至pH 7之间与初始校准相比的漂移以及记录稳定读数所需的时间进行了评估。使用ISFET测定牙菌斑样本(1毫克悬浮于20微升中)的pH值。所有电极的pH值均与氢离子浓度相关(r = 0.98)。在该评估完成之前,MI - 410发生了断裂。ISFET在pH 4时的变异系数为0.65%,在pH 7时为0.08%;Beetrode在pH 4时为4.69%,在pH 7时为3.46%。两种电极给出的读数与初始校准均有显著差异,但Beetrode的漂移(F = 7.93;p = 0.0005)大于ISFET(F = 1.89;p = 0.1519)。然而,这种漂移小于在牙菌斑样本中测得的pH变化。Beetrode在3.39±0.83秒后给出稳定读数,ISFET在2.2±0.76秒后给出稳定读数,而MI - 410至少需要20秒。ISFET型电极适用于小体积样本,如菌斑悬液,操作更简便,与Beetrode相比,其结果更接近初始校准,且比MI - 410和Beetrode更耐用。