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快速四维肺部断层合成的模型评估

Model evaluation of rapid 4-dimensional lung tomosynthesis.

作者信息

Rakowski Joseph T

机构信息

Karmanos Cancer Institute, Wayne State University School of Medicine, Department of Oncology, Division of Radiation Oncology, Detroit, Michigan.

出版信息

Adv Radiat Oncol. 2018 Mar 8;3(3):431-438. doi: 10.1016/j.adro.2018.03.001. eCollection 2018 Jul-Sep.

Abstract

PURPOSE

This is an investigation of a lung motion digital tomosynthesis (DTS) model using combined stationary detector and stationary cold cathode x-ray sources at projection acquisition rates that exceed the present norms. The intent is to reduce anatomical uncertainties from artifacts inherent in thoracic 4-dimensional computed tomography (CT).

METHODS AND MATERIALS

Parameters necessary to perform rapid lung 4-dimensional DTS were studied using a conventional radiographic system with linear motion of the x-ray source and a simple hypothetical hardware performance model. Hypothetical rapid imaging parameters of sweep duration, projections per second, pulse duration, and tube current (mA) were derived on the basis of 0.5 mm and 1 mm motion captures per phase, 10 and 15 breaths per minute (bpm), 10 to 40 mm breathing amplitude, and 2 signal-to-noise ratio (SNR) levels. Anterior-posterior and lateral projection images of a normal size anthropomorphic thorax phantom with iodine contrast inserts were collected and reconstructed with an algebraic algorithm to study the effects of reduced x-ray output associated with field emission cold cathodes composed of carbon nanotubes or metal Spindt-type. Radiographic projections were collected at 3 SNR levels that were set at standard clinical DTS milliampere-seconds (mAs) and reduced corresponding to 50% and 25% standard DTS mAs to simulate a reduced x-ray output.

RESULTS

The DTS SNR of the inserts was superior in all reconstructions at clinical mAs versus automatic exposure-control radiographs and superior in 3 of 4 at the 50% and 25% mAs levels. The most demanding performance parameters corresponding to 40 mm amplitude, 15 bpm, 0.5 mm motion capture limit, and 61 projections were sweep duration (10.4 msec), projection rate (5862 projections per second), pulse duration (0.161 msec), current 189 mA anterior-posterior, and 653 mA lateral.

CONCLUSIONS

Feasibility depends on the output performance of stationary cold cathode hardware being developed for DTS. Present image receptor technology can accommodate frame acquisition rates.

摘要

目的

本研究旨在探讨一种肺部运动数字断层合成(DTS)模型,该模型使用组合式固定探测器和固定冷阴极X射线源,其投影采集速率超过当前标准。目的是减少胸部四维计算机断层扫描(CT)中固有伪影所带来的解剖学不确定性。

方法与材料

使用具有X射线源线性运动的传统射线照相系统和一个简单的假设硬件性能模型,研究进行快速肺部四维DTS所需的参数。基于每个相位0.5毫米和1毫米的运动捕捉、每分钟10次和15次呼吸(bpm)、10至40毫米的呼吸幅度以及2个信噪比(SNR)水平,得出了扫描持续时间、每秒投影数、脉冲持续时间和管电流(mA)等假设快速成像参数。收集了带有碘对比剂插入物的正常尺寸人体胸部模型的前后位和侧位投影图像,并使用代数算法进行重建,以研究与由碳纳米管或金属斯平特型组成的场发射冷阴极相关的X射线输出减少的影响。在3个SNR水平下收集射线照相投影,这些水平设定为标准临床DTS毫安秒(mAs),并分别降低至标准DTS mAs的50%和25%,以模拟X射线输出减少的情况。

结果

在临床mAs时,插入物的DTS SNR在所有重建中均优于自动曝光控制射线照片,在50%和25% mAs水平时,在4次中有3次优于自动曝光控制射线照片。对应于40毫米幅度、15 bpm、0.5毫米运动捕捉极限和61次投影的最苛刻性能参数为:扫描持续时间(10.4毫秒)、投影速率(每秒5862次投影)、脉冲持续时间(0.161毫秒)、前后位电流189 mA以及侧位电流653 mA。

结论

可行性取决于为DTS开发的固定冷阴极硬件的输出性能。当前的图像受体技术能够适应帧采集速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aec8/6128102/16a3fe1c10e4/adro180-fig-0001.jpg

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