Carlos M Ardila, Annie M Vivares-Builes, Eliana Pineda-Vélez
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引用次数: 0
摘要
射线照相设施面临着数字射线照相探测器定位的挑战。本研究评估了数字放射摄影中与无线传感器相关的图像质量、辐射剂量和患者舒适度。我们在 PubMed/MEDLINE、EMBASE、SCOPUS、Web of Science 和 SCIELO 上进行了系统性检索。有 9 篇论文符合资格标准,包括 3 项针对 111 名患者的观察性研究、4 项针对 258 颗拔出的人类牙齿的体外实验,以及 2 项针对 16 颗尸体下颌骨的体外研究。所有研究都一致报告了无线传感器生成的高质量图像。其中两项研究表明无线传感器更胜一筹,一项研究发现无线传感器的精确度与传统放射摄影技术相当,另一项研究表明不同传感器的图像质量相似。与传统 X 射线相比,无线和有线传感器都大大降低了辐射剂量。视觉模拟量表(VAS)并未显示无线传感器明显优于有线传感器,尽管两者的舒适度普遍低于传统胶片。无线传感器始终能生成高质量的图像,可与其他数字设备媲美或更胜一筹。与传统 X 射线相比,无线和有线传感器都能大大降低辐射剂量,强调了其安全性和有效性。患者的舒适度各不相同,两种传感器都没有明显的优越性,都不如传统胶片舒适。
Image Quality, Radiation Dose, and Patient Comfort Associated with Wireless Sensors in Digital Radiography: A Systematic Review.
Radiography facilities face challenges with the positioning of digital radiography detectors. This study evaluates the image quality, radiation dose, and patient comfort associated with wireless sensors in digital radiography. A systematic exploration was performed across PubMed/MEDLINE, EMBASE, SCOPUS, Web of Science, and SCIELO. Nine papers met the eligibility criteria, including three observational studies with 111 patients, four in vitro experiments with 258 extracted human teeth, and two ex vivo investigations with 16 cadaver mandibles. All studies consistently reported high-quality images produced by wireless sensors. Two studies demonstrated the superiority of wireless sensors, one found comparable accuracy with conventional radiography, and another indicated similar image quality among the sensors. Both wireless and wired sensors significantly reduced radiation doses compared to conventional X-rays. The Visual Analog Scale (VAS) did not reveal a clear superiority of wireless over wired sensors, though both were generally less comfortable than traditional film. The wireless sensors consistently produce high-quality images, comparable to or superior to other digital devices. Both wireless and wired sensors significantly reduce radiation doses compared to conventional X-rays, emphasizing their safety and efficacy. Patient comfort levels vary, with neither sensor type showing clear superiority over the other, and both being less comfortable than traditional film.