首页> 外文期刊>Journal of neurosurgery. >Cerebral aneurysm clips in the 3-tesla magnetic field. Laboratory investigation.
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Cerebral aneurysm clips in the 3-tesla magnetic field. Laboratory investigation.

机译:脑动脉瘤夹在3特斯拉磁场中。实验室调查。

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OBJECT: The aim of this study was to evaluate cerebral aneurysm clips, and to know in more detail the characteristics of currently available clips in the 3-T magnetic field. METHODS: According to the protocol recommended by the American Society for Testing and Materials (ASTM), the authors conducted quantitative evaluation for displacement force and qualitative evaluation for torque in 52 aneurysm clips and 48 samples of raw materials in the 3-T environment. RESULTS: The largest displacement force occurred near the bore opening, and the force was directed to the isocenter. Deflection angles of all objects in this study were within 45 degrees . The translational force in the peripheral position in the bore was larger than that in the center, and the translational force in the magnetic field was proportional to the weight of the objects. The proportion coefficients varied depending on the metallic materials. In the titanium alloy, the deflection angle was also detected to be approximately 2 degrees , although no response was observed in titanium in a previous report. This behavior was similar to that of the Elgiloy and Phynox materials in the 1.5-T environment. No difference was observed among the groups of shapes (straight, bent, and fenestrated). The amount of torque that occurred was dependent on the clip's or material's loop and bent shape. The torque on the titanium was perpendicular to the torque on the other materials (which was perpendicular to the magnetic field). CONCLUSIONS: Care must be taken with patients near the bore opening while moving them to the center of the magnet's bore on the MR imaging table. Although all the clips examined in this study met the ASTM requirements, the titanium alloy clips are preferable in the 3-T environment for safety's sake. Suitably sized clips should be selected for the aneurysm size, because the translational force increases proportionally to the object's weight.
机译:目的:本研究的目的是评估脑动脉瘤夹,并更详细地了解3-T磁场中当前可用夹的特征。方法:根据美国材料试验学会(ASTM)推荐的方案,作者在3-T环境中对52个动脉瘤夹和48个原材料样品中的位移力进行了定量评估,并对扭矩进行了定性评估。结果:最大的位移力发生在孔口附近,并且该力被引向等中心点。本研究中所有物体的偏转角均在45度以内。孔的圆周位置的平移力大于中心的平移力,磁场中的平移力与物体的重量成正比。比例系数根据金属材料而变化。在钛合金中,虽然在以前的报告中没有观察到钛的响应,但也检测到了大约2度的偏转角。此行为类似于1.5-T环境中Elgiloy和Phynox材料的行为。在形状的各组(笔直,弯曲和有孔)之间没有观察到差异。发生的扭矩量取决于夹子或材料的环和弯曲形状。钛上的扭矩垂直于其他材料上的扭矩(垂直于磁场)。结论:将患者移至MR成像台上磁体孔中心的位置时,必须小心谨慎。尽管本研究中检查的所有夹子均符合ASTM要求,但出于安全考虑,钛合金夹子在3-T环境中更可取。应选择合适尺寸的夹子作为动脉瘤的大小,因为平移力与对象的重量成比例地增加。

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