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间歇性接触的牙科汞合金及其他金属修复体的体内电流

In vivo galvanic currents of intermittently contacting dental amalgam and other metallic restorations.

作者信息

Sutow Elliott J, Maillet Wayne A, Taylor James C, Hall Gordon C

机构信息

Department of Applied Oral Sciences, Faculty of Dentistry, Dalhousie University, Halifax, 5981 University Avenue, Nova Scotia, Canada B3H 3J5.

出版信息

Dent Mater. 2004 Nov;20(9):823-31. doi: 10.1016/j.dental.2003.10.012.

Abstract

OBJECTIVE

It was the objective of this study to determine the magnitude of in vivo galvanic currents produced by simulating electrical contact between occluding metallic restorations, and to examine the influence of restoration age, difference in pre-contact corrosion potentials, and surface area.

METHODS

A convenience sample of 106 human subjects was studied. A Ag/AgCl micro-reference electrode and a high impedance voltmeter were used to measure the pre-contact corrosion potentials. Galvanic couples (n = 194) were next formed by simultaneously contacting occluding restorations with gold-plated probe tips for 15 s. The resulting current-time transients were measured with a zero-resistance ammeter and recorded with an electronic data acquisition program. The vast majority of couples measured contained at least one dental amalgam restoration.

RESULTS

Galvanic current-time transients were typically characterized by an immediate and rapid rise to a peak current, followed by an exponential decay to a much lower value at 15 s. For couples with a restoration < or = 12 mo old, median peak current and median current at 15 s were 2.26 microA (range 0.24-13.06 microA) and 0.57 microA (range 0.03-6.47 microA), respectively. For couples with a restoration >12 mo old, median peak current and median current at 15 s were 1.40 microA (range 0.24-12.09 microA) and 0.37 microA (range 0.00-3.05 microA), respectively. Couples with fresh amalgams (< or = 6 mo) generally had elevated currents (range 2.56-102.54 microA).

SIGNIFICANCE

A wide range of galvanic currents resulted from electrical contact of restorations in vivo. These currents were influenced by restoration age and total surface area of the galvanic couple. For amalgam-amalgam couples, the difference in the pre-contact corrosion potentials may be useful in predicting galvanic currents, when the difference is at least 24 mV.

摘要

目的

本研究的目的是通过模拟咬合金属修复体之间的电接触来确定体内产生的电流大小,并研究修复体使用年限、接触前腐蚀电位差异和表面积的影响。

方法

对106名人类受试者进行便利抽样研究。使用银/氯化银微参比电极和高阻抗电压表测量接触前腐蚀电位。接下来,通过用镀金探针尖端同时接触咬合修复体15秒形成194对电偶。用零电阻电流表测量产生的电流-时间瞬变,并通过电子数据采集程序记录。绝大多数测量的电偶至少包含一个银汞合金修复体。

结果

电流-时间瞬变通常表现为立即快速上升至峰值电流,随后呈指数衰减至15秒时的低得多的值。对于使用年限≤12个月的修复体组成的电偶,15秒时的中位峰值电流和中位电流分别为2.26微安(范围0.24 - 13.06微安)和0.57微安(范围0.03 - 6.47微安)。对于使用年限>12个月的修复体组成的电偶,15秒时的中位峰值电流和中位电流分别为1.40微安(范围0.24 - 12.09微安)和0.37微安(范围0.00 - 3.05微安)。新银汞合金修复体(≤6个月)组成的电偶通常电流较高(范围2.56 - 102.54微安)。

意义

体内修复体电接触产生的电流范围很广。这些电流受修复体使用年限和电偶总表面积的影响。对于银汞合金-银汞合金电偶,当接触前腐蚀电位差异至少为24毫伏时,该差异可能有助于预测电流。

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