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Application of IoT image detection and DWI combined with serum PCT detection in bone infection

机译:IOT图像检测和DWI结合血清PCT检测在骨感染中的应用

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IOT and DWI based image processing have been independently used for various purposes. The application field of agriculture exists and has achieved some success, but no combination of these two technologies still exists. For example, conventional biological markers such as C-reactive protein, white blood cells, the decision sensitive, sufficient heat treatment of the infection in the guide, without erythrocyte sedimentation rate, or specific clinical symptoms and signs. Procalcitonin (PCT) comprises several large invasive pathogenic bacteria, fungi, and the response of synthetic tissues and organs of the parasite. They are expanding proof backings the utilization of PCT as a marker to improve the determination of bacterial contaminations, prompting anti-infection treatment. Clinically, PCT levels and empiric anti-microbial treatment and the wellspring of the disease require anti-toxin treatment. The reason for the evaluation is, to sum up, the ebb and flow proof PCT assortment of irresistible illnesses clinical climate, and the unwavering quality of denoting an outline of the direction of a specialist with helpful likely anti-toxins.
机译:基于IOT和DWI的图像处理已独立用于各种目的。农业应用领域存在并取得了一些成功,但没有这两种技术的组合仍然存在。例如,常规生物标志物如C-反应蛋白,白细胞,决策敏感,引导中感染的判定敏感,充分的热处理,没有红细胞沉降率,或特定的临床症状和标志。 ProCalcitonin(PCT)包含几种大型侵入性致病细菌,真菌和寄生虫合成组织和器官的反应。它们正在扩展证明支持PCT作为标记以改善细菌污染的测定,促使抗感染治疗。临床上,PCT水平和经验抗微生物治疗和疾病的井代需要抗毒素治疗。评估的原因是总结,eBB和流动证明PCT各种各样的不可抗拒的疾病临床气候,以及表示具有助人的抗毒素的专家方向概要的坚定性质量。

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