Department of Opthalmology, Ulm University Medical School, Ulm, Germany; and.
Viselle Augenzentren Wangen, Wangen im Allgäu, Germany.
Retina. 2023 Aug 1;43(8):1393-1398. doi: 10.1097/IAE.0000000000003825.
To verify whether disposable microforceps can be magnetized to atraumatically attract and then grasp intraocular foreign bodies. An effective magnetization protocol was developed. The clinical relevance was tested, and a first practical application was performed.
The magnetic flux density (MFD) of a bar magnet and an electromagnet was measured. Steel screws were used to determine the magnetization protocol. Disposable microforceps was magnetized, MFD generated at the tip was measured, and the weight that can be lifted was tested. Foreign body removal with such forceps was performed.
The electromagnet MFD was much higher than the bar magnet. The most effective magnetization protocol was to pass the screw from the end along the shaft and back over the electromagnet. Magnetized microforceps had a 7.12 mT change in MFD at the tip. Steel balls up to 87 mg could be lifted in buffered saline solution. In clinical use, the intraocular foreign body could be attracted and grasped safely.
Disposable microforceps can be easily and inexpensively magnetized. The achievable MFD is clinically relevant to attract typical intraocular foreign bodies. An electromagnet is best suited for this purpose. With such prepared forceps, foreign bodies can be attracted atraumatically and grasped securely.
验证一次性微夹是否可以磁化,以无创地吸引和抓取眼内异物。开发了一种有效的磁化方案。测试了其临床相关性,并进行了首次实际应用。
测量条形磁铁和电磁铁的磁通量密度(MFD)。使用钢螺丝确定磁化方案。对一次性微夹进行磁化,测量尖端产生的 MFD,并测试可提升的重量。用这种夹钳进行异物去除。
电磁铁的 MFD 远高于条形磁铁。最有效的磁化方案是将螺丝从末端沿着轴穿过并在电磁铁上返回。磁化后的微夹在尖端的 MFD 变化为 7.12 mT。在缓冲盐溶液中可以提起重达 87 毫克的钢球。在临床应用中,可以安全地吸引和抓取眼内异物。
一次性微夹可以轻松且经济地磁化。可实现的 MFD 与吸引典型眼内异物具有临床相关性。电磁铁最适合此用途。使用这种准备好的夹钳,可以安全地无创吸引和抓取异物。