Ceruti Paola, Bryant S Ross, Lee Jun-Ho, MacEntee Michael I
University of Torino, Torino, Italy.
J Can Dent Assoc. 2010;76:a52.
Open-field aluminum-nickle-cobalt magnets have been used in prosthodontics for many years, but success has been limited because these magnets are susceptible to corrosion by the saliva and because their retentive force is weak relative to the initial retention offered by mechanical attachments. More recently, magnets have been made from alloys of the rare earth elements samarium and neodymium, which provide stronger magnetic force per unit size. In addition, a new generation of laser-welded containers has improved protection from salivary corrosion. The current resurgence of interest in this type of attachment appears justified because, unlike mechanical attachments, magnets have potential for unlimited durability and might therefore be superior to mechanical ball or bar attachments for the retention of removable prostheses on implants. To date, no long-term prospective trials have been conducted to confirm the clinical durability of this new generation of magnets for retaining dentures on either teeth or implants. The aim of this study was to document initial clinical experiences and levels of satisfaction among edentulous patients treated with mandibular implant-supported overdentures retained using a new generation of rare-earth magnetic attachments. At the outset, all but one of the 17 patients had had several years of experience with implant-supported overdentures. During the first year, the mean overall satisfaction among these 17 patients increased from less than 70 to over 90 out of 100 (standardized visual analogue scale). No unusual difficulties were encountered in rendering the treatment or maintaining the attachments. This report offers preliminary evidence of the excellent potential of these magnets for retaining mandibular implant-supported overdentures.
开放式铝镍钴磁体已在口腔修复学中应用多年,但由于这些磁体易被唾液腐蚀,且相对于机械固位装置提供的初始固位力而言其固位力较弱,因此应用效果有限。最近,磁体由稀土元素钐和钕的合金制成,这种合金每单位尺寸能提供更强的磁力。此外,新一代激光焊接容器增强了对唾液腐蚀的防护。目前人们对这类固位装置重新产生兴趣似乎是合理的,因为与机械固位装置不同,磁体具有无限耐用性的潜力,因此在将可摘义齿固定在种植体上方面可能优于机械球或杆式固位装置。迄今为止,尚未进行长期前瞻性试验来证实这种新一代磁体在将假牙固定在牙齿或种植体上的临床耐用性。本研究的目的是记录使用新一代稀土磁体固位的下颌种植体支持覆盖义齿治疗无牙患者的初步临床经验和满意度水平。一开始,17名患者中除一人外,其余患者都有多年使用种植体支持覆盖义齿的经验。在第一年,这17名患者的平均总体满意度从低于70分(标准化视觉模拟量表)提高到了超过90分(满分100分)。在进行治疗或维护固位装置时未遇到异常困难。本报告提供了初步证据,证明这些磁体在固定下颌种植体支持覆盖义齿方面具有巨大潜力。