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Targeted Imaging of Damaged Bone in Vivo with Gemstone Spectral Computed Tomography

机译:宝石光谱计算机断层扫描对体内受损骨进行靶向成像

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摘要

Achieving high-resolution imaging of bone-cracks and even monitoring them in live organisms are of great significance for understanding their extreme biological effects but remain quite challenging, especially for adopting commercial imaging systems. Herein, we explore the use of the clinical gemstone spectral computed tomography (GSCT) technique as a powerful tool for targeted imaging of bone-cracks in rats via intramuscularly administrating crack-targeted ytterbium-based contrast agents (CAs). Material density images of GSCT reveal that bone-cracks targeted with CAs can be successfully differentiated from healthy bone based on their different X-ray attenuation characteristics, giving GSCT a distinct advantage over conventional CT. More importantly, the superior imaging capability of GSCT allows us to real-time monitor the targeting and accumulation of CAs toward bone-crack in vivo. These results highlight that clinical GSCT, combined with ytterbium-based CAs, provides a promising opportunity for understanding bone-related diseases in the future.
机译:实现骨骼裂纹的高分辨率成像,甚至在活生物体中对其进行监视,对于理解其极端的生物学效应都具有重要意义,但仍然非常具有挑战性,特别是对于采用商业成像系统而言。在这里,我们探索使用临床宝石光谱计算机断层扫描(GSCT)技术作为通过肌肉内施用以裂纹为目标的contrast基造影剂(CAs)进行肌肉注射的大鼠骨裂纹的有力工具。 GSCT的材料密度图像显示,基于CAs的骨裂纹可以基于其不同的X射线衰减特性而成功地与健康的骨骼区分开,从而使GSCT相对于传统CT具有明显的优势。更重要的是,GSCT的卓越成像能力使我们能够实时监控CA在体内对骨裂的靶向和积累。这些结果表明,临床GSCT与基于CA的CA结合在一起,为将来了解骨相关疾病提供了一个有希望的机会。

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