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静磁场对早期骨结合的影响:一项犬类的初步研究。

Impact of a Static Magnetic Field on Early Osseointegration: A Pilot Study in Canines.

作者信息

Michels Roberta, Kampleitner Carina, Dobsak Toni, Doppelmayer Kevin, Heimel Patrick, Lettner Stefan, Tangl Stefan, Gruber Reinhard, Benfatti César Augusto Magalhães

机构信息

Center for Research on Dental Implants (CEPID), School of Dentistry (ODT), Universidade Federal de Santa Catarina (UFSC), Florianópolis 88036-020, Brazil.

Robert K. Schenk Laboratory of Oral Histology, Department of Periodontology, School of Dental Medicine, University of Bern, 3010 Bern, Switzerland.

出版信息

Materials (Basel). 2023 Feb 23;16(5):1846. doi: 10.3390/ma16051846.

Abstract

A static magnetic field generated by neodymium-iron-boron (NdFeB) magnets placed in the inner cavity of dental implants can enhance bone regeneration in rabbits. It is, however, unknown whether static magnetic fields support osseointegration in a canine model. We therefore determined the potential osteogenic effect of implants carrying NdFeB magnets inserted in the tibia of six adult canines in the early stages of osseointegration. Here, we report that after 15 days of healing, magnetic and regular implants showed a high variation with a median new bone-to-implant contact (nBIC) in the cortical (41.3% and 7.3%) and the medullary (28.6% and 44.8%) region, respectively. Consistently, the median new bone volume/tissue volume (nBV/TV) in the cortical (14.9% and 5.4%) and the medullary (22.2% and 22.4%) region were not significantly different. One week of healing only resulted in negligible bone formation. These findings suggest that considering the large variation and the pilot nature of this study, magnetic implants failed to support peri-implant bone formation in a canine model.

摘要

置于牙种植体内腔的钕铁硼(NdFeB)磁体产生的静磁场可促进兔骨再生。然而,静磁场是否支持犬类模型中的骨整合尚不清楚。因此,我们确定了在骨整合早期阶段植入携带NdFeB磁体的种植体对6只成年犬胫骨的潜在成骨作用。在此,我们报告,愈合15天后,磁性种植体和普通种植体表现出高度差异,皮质区域(分别为41.3%和7.3%)和髓质区域(分别为28.6%和44.8%)的中位新骨与种植体接触率(nBIC)不同。同样,皮质区域(分别为14.9%和5.4%)和髓质区域(分别为22.2%和22.4%)的中位新骨体积/组织体积(nBV/TV)无显著差异。愈合一周仅导致可忽略不计的骨形成。这些发现表明,考虑到本研究的较大变异性和探索性质,磁性种植体未能在犬类模型中支持种植体周围骨形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9818/10003792/fedca6ea7421/materials-16-01846-g001.jpg

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