|
- 2017
双源CT Flash扫描在心血管源性气道狭窄患儿诊断中的临床应用
|
Abstract:
[1] | McLaren CA, Elliott MJ, Roebuck DJ. Vascular compression of the airway in children[J]. Paediatr Respir Rev, 2008, 9(2): 85-94. |
[2] | Jiao H, Xu Z, Wu L, et al. Detection of airway anomalies in pediatric patients with cardiovascular anomalies with low dose prospective ECG-gated dual-source CT[J]. PLoS One, 2013, 8(12): 82826. |
[3] | AI-Mousily F, Shifrin RY, Fricker FJ, et al. Use of 320-detector computed tomographic angiography for infants and young children with congenital heart disease[J]. Pediatr Cardiol, 2011, 32(4): 426-432. |
[4] | Goetti R, Feuchtner G, Stolzmann P, et al. High-pitch dual-source CT coronary angiography: systolic data acquisition at high heart rates[J]. Eur Radiol, 2010, 20(11): 2565-2571. |
[5] | McElhinney DB, Reddy VM, Pian MS, et al. Compression of the central airways by a dilated aorta in infants and children with congenital heart disease[J]. Ann Thorac Surg, 1999, 67(4): 1130-1136. |
[6] | Brenner D, Elliston C, Hall E, et al. Estimated risks of radiation-induced fatal cancer from pediatric CT[J]. AJR Am J Roentgenol, 2001, 176(2): 289-296. |
[7] | Patent A, Frush DP. Dose reduction in paediatric MDCT: general principles[J]. Clinical Radiology, 2007, 62(6): 507-517. |
[8] | Singhal M, Gupta P, Singh RS, et al. Cardiovascular causes of pediatric airway compression: A Pictorial Review[J]. Curr Probl Diagn Radiol, 2015, 44(6): 505-510. |
[9] | Xue B, Xu Z, Liang B, et al. One stage surgical correction of congenital tracheal stenosis complicated with congenital heart disease in infants and young children[J]. J Card Surg, 2015, 30(1): 97-103. |
[10] | Healy F, Hanna BD, Zinman R. Pulmonary complications of congenital heart disease[J]. Paediatr Respir Re, 2012, 13(1): 10-15. |
[11] | Lell MM, May M, Deak P, et al. High-pitch spiral computed tomography: effect on image quality and radiation dose in pediatric chest computed tomography[J]. Invest Radiol, 2011, 46(2): 116-123. |
[12] | Burckel LA, Defez D, Chaillot PF, et al. Use of an automatic recording system for CT doses: evaluation of the impact of iterative reconstruction on radiation exposure in clinical practice[J]. Diagn Interv Imaging, 2015, 96(3): 265-272. |
[13] | Greffier J, Macri F, Larbi A, et al. Dose reduction with iterative reconstruction: Optimization of CT protocols in clinical practice[J]. Diagn Interv Imaging, 2015, 96(5): 477-486. |
[14] | Wang CC, Chen SJ, Wu ET, et al. Lower airway anomalies in children with CATCH 22 syndrome and congenital heart disease[J]. Pediatr Pulmonol, 2013, 48(6): 587-591. |
[15] | Duan Y, Wang X, Yang X, et al. Diagnostic efficiency of low-dose CT angiography compared with conventional angiography in peripheral arterial occlusions[J]. AJR Am J Roentgenol, 2013, 201(6): 906-914. |
[16] | 王荣品, 梁长虹, 黄美萍, 等. 64层螺旋CT在先天性心脏病伴气道狭窄手术前后的应用价值[J].临床放射学杂志, 2010, 29(5): 660-664. |
[17] | Nie P, Wang X, Cheng Z, et al. Accuracy, image quality and radiation dose comparison of high-pitch spiral and sequential acquisition on 128-slice dual-source CT angiography in children with congenital heart disease[J]. Eur Radiol, 2012, 22(10): 2057-2066. |
[18] | 孙凯, 韩瑞娟, 赵瑞平, 等. 不同心率患者采用大螺距双源CT冠状动脉成像的图像质量及影响因素分析[J]. 中华放射学杂志, 2012, 46(9): 773-778. |
[19] | Han BK, Lindberg J, Grant K, et al. Accuracy and safety of high pitch computed tomography imaging in young children with complex congenital heart disease[J]. Am J Cardiol, 2011, 107(10): 1541-1546. |
[20] | Tann OR, Muthurangu V, Young C, et al. Cardiovascular CT imaging in congenital heart disease[J]. Progress in Pediatric Cardiology, 2010, 28: 21-27. |