参考文献/References:
[1] Dewey M. Coronary CT versus MR angiography:pro CT —The role of CT angiography[J]. Radiology,2011,258(2):329-339.
[2] 刘强,杨小梅,韩乾国.冠状动脉钙化研究进展[J].心血管病学进展,2015,36(5):651-654.
[3] Yoshioka K,Tanaka R,Muranaka K. Subtraction coronary CT angiography for calcified lesions[J]. Cardiol Clin,2012,30(1):93-102.
[4] Yoshioka K,Tanaka R,Muranaka K,et al.Subtraction coronary CT angiography using second-generation 320-detector row CT[J]. Int J Cardiovasc Imaging,2015,31(suppl1):51-58.
[5] Vliegenthart R,Pelgrim GJ,Ebersberger U,et al.Dual-energy CT of the heart[J]. Am J Roentgenol,2012,199(5):S54-S63.
[6] Schwarz F,Ruzsics B,Schoepf UJ,et al. Dual-energy CT of the heart—Principles and protocols[J]. Eur J Radiol,2008,68(3):423-433.
[7] Johnson TR,Krauss B,Sedlmair M, et al. Material differentiation by dual energy CT:initial experience[J]. Eur Radiol,2007,17(6):1510-1517.
[8] Schwarz F,Nance JW Jr,Ruzsics B,et al. Quantification of coronary artery calcium on the basis of dual-energy coronary CT angiography[J]. Radiology,2012,264(3):700-707.
[9] Kaemmerer N,Brand M,Hammon M,et al. Dual-energy computed tomography angiography of the head and neck with single-source computed tomography:a new technical (split filter) approach for bone removal[J]. Invest Radiol,2016,51(10):618-623.
[10]Tran DN,Straka M,Roos JE,et al. Dual-energy CT discrimination of iodine and calcium: experimental results and implications for lower extremity CT angiography[J]. Acad Radiol,2009,16(2):160-171.
[11] Meyer BC,Werncke T,Hopfenmuller W,et al.Dual-energy CT of peripheral arteries:effect of automatic bone and plaque removal on image quality and grading of stenoses[J]. Eur J Radiol,2008,68(3):414-422.
[12] Korn A,Bender B,Thomas C,et al. Dual energy CTA of the carotid bifurcation:advantage of plaque subtraction for assessment of grade of the stenosis and morphology[J]. Eur J Radiol,2011,80(2):120-125.
[13] de Santis D,Jin KN,Schoepf UJ,et al. Heavily calcified coronary arteries:advanced calcium subtraction improves luminal visualiz ation and diagnostic confidence in dual-energy coronary computed tomography angiography[J]. Invest Radiol,2017,53(2):103-109.
[14] Qin L,Gu S,Chen C,et al. Initial exploration of coronary stent image subtraction using dual-layer spectral CT[J]. Eur Radiol,2019,29(8):4239-4248.
[15] Albrecht MH,Trommer J,Wichmann JL,et al. Comprehensive comparison of virtual monoenergetic and linearly blended reconstruction techniques in third-generation dual-source dual-energy computed tomography angiography of the thorax and abdomen[J]. Invest Radiol, 2016,51(9):582-590.
[16] Yoshioka K,Tanaka R,Nagata K,et al. Modified subtraction coronary CT angiography method for patients unable to perform long breath-holds[J]. Acad Radiol,2016,23(9):1170-1175.
[17] Yoshioka K,Tanaka R,Takagi H,et al. Diagnostic accuracy of a modified subtraction coronary CT angiography method with short breath-holding time:a feasibility study[J]. Br J Radiol,2016,89(1066):20160489.
[18] Yamaguchi T,Ichikawa K,Takahashi D,et al. A new contrast enhancement protocol for subtraction coronary computed tomography requiring a short breath-holding time[J]. Acad Radiol,2017,24(1):38-44.
[19] Fuchs A, Kühl JT ,Chen MY,et al. Subtraction CT angiography improves evaluation of significant coronary artery disease in patients with severe calcifications or stents—the C-Sub 320 multicenter trial[J]. Eur Radiol,2018,28(10):4077-4085.
[20] Razeto M,Matthews J,Masood S,et al. Accurate registration of coronary arteries for volumetric CT digital subtraction angiography[C]. International Conference on Graphic & Image Processing. International Society for Optics and Photonics,2013.
[21]Takamura K,Fujimoto S,Kawaguchi Y,et al. The usefulness of low radiation dose subtraction coronary computed tomography angiography for patients with calcification using 320-row area detector CT[J]. J Cardiol ,2019,73 (1):58-64.
[22] Einstein AJ,Ellistion CD,Arai AE,et al. Radiation dose from single-heartbeat coronary CT angiography performed with a 320-detector row volume scanner[J]. Radiology,2010,254(3):698-706.
[23] Hoe J,Toh KH. First experience with 320-row multidetector CT coronary angiography scanning with prospective electrocardiogram gating to reduce radiation dose[J]. J Cardiovasc Comput Tomogr,2009,3(4):257-261.
[24] Leipsic J,Labounty TM,Heilbron B,et al. Estimated radiation dose reduction using adaptive statistical iterative reconstruction in coronary CT angiography:the ERASIR study[J]. AJR Am J Roentgenol,2010,195(3):655-660.
[25] Kawaguchi Y,Fujimoto S,Takamura K,et al. Submillisievert imaging protocol using full reconstruction and advanced patient motion correction in 320-row area detector coronary CT angiography[J]. Int J Cardiovasc Imaging,2018,34(3):465-474.
[26] Amanuma M,Kondo T,Sano T,et al. Subtraction coronary computed tomography in patients with severe calcification[J]. Int J Cardiovasc Imaging,2015,31(8):1635-1642.
[27] Fuchs A,Kühl JT,Chen MY,et al.Feasibility of coronary calcium and stent image subtraction using 320-detector row CT angiography[J]. J Cardiovasc Comput Tomogr,2015,9(5):393-398.
[28] Amanuma M,Kondo T,Sano T,et al. Assessment of coronary in-stent restenosis:value of subtraction coronary computed tomography angiography[J]. Int J Cardiovasc Imaging,2016,32(4):661-670.