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Carbon nanotube electron field emitters for x-ray imaging of human breast cancer

机译:用于人类乳腺癌X射线成像的碳纳米管电子场发射器

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For imaging human breast cancer, digital breast tomosynthesis (DBT) has been shown to improve image quality and breast cancer detection in comparison to two-dimensional (2D) mammography. Current DBT systems have limited spatial resolution and lengthy scan times. Stationary DBT (s-DBT), utilizing an array of carbon nanotube (CNT) field emission x-ray sources, provides increased spatial resolution and potentially faster imaging than current DBT systems. This study presents the results of detailed evaluations of CNT cathodes for x-ray breast imaging tasks. The following were investigated: high current, long-term stability of CNT cathodes for DBT; feasibility of using CNT cathodes to perform a 2D radiograph function; and cathode performance through several years of imaging. Results show that a breast tomosynthesis system using CNT cathodes could run far beyond the experimentally tested lifetime of one to two years. CNT cathodes were found capable of producing higher currents than typical DBT would require, indicating that the s-DBT imaging time can be further reduced. The feasibility of using a single cathode of the s-DBT tube to perform 2D mammography in 4 s was demonstrated. Over the lifetime of the prototype s-DBT system, it was found that both cathode performance and transmission rate were stable and consistent.
机译:为了对人类乳腺癌进行成像,与二维(2D)乳腺X线摄影术相比,数字乳房断层合成(DBT)已被证明可以改善图像质量和乳腺癌检测。当前的DBT系统具有有限的空间分辨率和漫长的扫描时间。固定式DBT(s-DBT)利用碳纳米管(CNT)场发射X射线源阵列,提供了比当前DBT系统更高的空间分辨率和更快的成像速度。这项研究提出了对x线乳房成像任务进行CNT阴极的详细评估的结果。研究了以下内容:用于DBT的CNT阴极的高电流,长期稳定性;使用CNT阴极执行2D射线照相功能的可行性;通过几年的成像获得阴极和阴极性能。结果表明,使用CNT阴极的乳房断层合成系统可以远远超过经过实验测试的一到两年的寿命。发现CNT阴极能够产生比典型DBT所需的电流更高的电流,这表明s-DBT成像时间可以进一步减少。演示了使用s-DBT管的单个阴极在4 s内进行2D乳腺摄影的可行性。在原型s-DBT系统的整个使用寿命中,发现阴极性能和传输速率均稳定且一致。

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