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骨科脊柱固定用复合材料碳纤维基植入物的多模态成像。

Multimodal imaging of composite carbon fiber-based implants for orthopedic spinal fixation.

机构信息

Radiology Department, Mater Misericordiae University Hospital, Dublin, Ireland.

Trauma and Orthopaedic Surgery Department, Mater Misericordiae University Hospital, Dublin, Ireland.

出版信息

Skeletal Radiol. 2021 May;50(5):1039-1045. doi: 10.1007/s00256-020-03622-6. Epub 2020 Oct 17.

Abstract

OBJECTIVE

As cancer treatments continue to improve, the incidence of spinal metastases and the need for surgical management of these with fixation procedures are growing rapidly. Traditionally metallic implants, composed of titanium alloy, have been used in surgical fixation of unstable or symptomatic vertebral metastases or traumatic injuries. Metallic implants, however, cause significant artifact on post-operative imaging, degrading image quality and limiting interpretation, and can also impair the planning and delivery of radiotherapy. Composite carbon fiber-based materials, such as carbon fiber-reinforced polyetheretherketone (PEEK), have been developed to overcome these issues and are now available for spinal fixation procedures. We aimed to review the multimodal imaging features of these new implants.

MATERIALS AND METHODS

Current literature and a case example from our institution were used to describe the multimodal imaging characteristics and considerations of new carbon fiber-based spinal fixation implants.

RESULTS

New carbon fiber-based spinal implants allow far greater visualization of surrounding structures on post-operative cross-sectional imaging, significantly improving diagnostic accuracy and precision of radiotherapy planning, and do not significantly absorb or scatter X-ray photons during radiotherapy delivery. There are, however, important surgical and radiologic considerations associated with the use of carbon fiber-based implants which radiologists must be aware of, such as implications for surgical planning and intra-operative fluoroscopic and post-operative plain radiographic imaging.

CONCLUSION

The use of carbon fiber-based implants, rather than traditional metallic implants, for spinal fixation offers significant advantages for post-operative diagnostic imaging and radiotherapy planning and delivery.

摘要

目的

随着癌症治疗的不断进步,脊柱转移瘤的发病率以及对这些肿瘤进行固定手术治疗的需求迅速增加。传统上,钛合金制成的金属植入物一直用于不稳定或有症状的脊柱转移瘤或外伤性损伤的手术固定。然而,金属植入物在术后影像学检查中会产生明显的伪影,降低图像质量并限制解读,还可能影响放疗的计划和实施。为了解决这些问题,已经开发出了基于复合材料的碳纤维材料,如碳纤维增强聚醚醚酮(PEEK),并可用于脊柱固定手术。我们旨在回顾这些新型植入物的多模态影像学特征。

材料与方法

使用当前的文献和我们机构的一个病例示例来描述新型碳纤维脊柱固定植入物的多模态影像学特征和注意事项。

结果

新型碳纤维脊柱植入物在术后横断面成像上能更好地显示周围结构,显著提高了放疗计划的准确性和精度,并且在放疗实施过程中不会显著吸收或散射 X 射线光子。然而,使用碳纤维植入物存在重要的手术和放射学注意事项,放射科医生必须了解这些注意事项,例如对手术计划、术中荧光透视和术后平片影像学的影响。

结论

与传统的金属植入物相比,碳纤维植入物在脊柱固定方面具有明显的优势,可为术后诊断成像和放疗计划及实施提供更好的效果。

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