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Assessment of MRI issues at 3-Tesla for metallic surgical implants: findings applied to 61 additional skin closure staples and vessel ligation clips

机译:在3-Tesla进行的金属外科植入物的MRI问题评估:将发现应用于61种其他皮肤闭合吻合钉和血管结扎夹

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PurposeMetallic skin closure staples and vessel ligation clips should be tested at 3-Tesla to characterize MRI issues in order to ensure patient safety. Therefore, metallic surgical implants were assessed at 3-Tesla for magnetic field interactions, MRI-related heating, and artifacts.MethodsA skin closure staple (Visistat Skin Stapler, staple, Polytetrafluoroethylene, PTFE, coated 316L/316LVM stainless steel; Teleflex Medical, Durham, NC) and a vessel ligation clip (Hemoclip Traditional, stainless steel; Teleflex Medical, Durham, NC) that represented the largest metallic sizes made from materials with the highest magnetic susceptibilities (i.e., based on material information) among 61 other surgical implants (52 metallic implants, 9 nonmetallic implants) underwent evaluation for magnetic field interactions, MRI-related heating, and artifacts using standardized techniques. MRI-related heating was assessed by placing each implant in a gelled-saline-filled phantom with MRI performed using a transmit/receive RF body coil at an MR system reported, whole body averaged SAR of 2.9-W/kg for 15-min. Artifacts were characterized using T1-weighted, SE and GRE pulse sequences.ResultsEach surgical implant showed minor magnetic field interactions (20- and 27-degrees, which is acceptable from a safety consideration). Heating was not substantial (highest temperature change, ≤ 1.6°C). Artifacts may create issues if the area of interest is in the same area or close to the respective surgical implant.ConclusionsThe results demonstrated that it would be acceptable for patients with these metallic surgical implants to undergo MRI at 3-Tesla or less. Because of the materials and dimensions of the surgical implants that underwent testing, these findings pertain to 61 additional similar implants.
机译:目的应在3-Tesla上测试金属皮肤缝合钉和血管结扎夹,以表征MRI问题,以确保患者安全。因此,在3-Tesla评估了金属手术植入物的磁场相互作用,与MRI相关的加热和伪影。方法:皮肤闭合钉(Visistat皮肤吻合器,钉,聚四氟乙烯,PTFE,涂层316L / 316LVM不锈钢; Teleflex Medical,Durham )和血管结扎夹(Hemoclip Traditional,不锈钢; Teleflex Medical,达勒姆,北卡罗来纳州),代表了其他61种外科手术植入物中最大的金属尺寸,这些材料由具有最高磁化率(即基于材料信息)的材料制成(使用标准技术对52个金属植入物,9个非金属植入物进行了磁场相互作用,MRI相关加热和伪影的评估。通过将每个植入物放在凝胶状的充满盐的模腔中,并使用已报告的MR系统上的发射/接收RF人体线圈进行MRI进行MRI,评估了MRI相关的加热,全身平均SAR为2.9 W / kg,持续15分钟。结果使用T1加权,SE和GRE脉冲序列对伪像进行了表征。结果每个手术植入物均显示出较小的磁场相互作用(20度和27度,从安全角度考虑是可以接受的)。加热不充分(最高温度变化,≤1.6°C)。如果感兴趣的区域在同一区域或与各自的手术植入物相近,则工件可能会产生问题。结论结果表明,使用这些金属手术植入物的患者在3-Tesla或以下进行MRI是可以接受的。由于接受测试的外科植入物的材料和尺寸,这些发现与61种其他类似植入物有关。

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