For: | Huang PT, Chen CC, Aronow WS, Wang XT, Nair CK, Xue NY, Shen X, Li SY, Huang FG, Cosgrove D. Assessment of neovascularization within carotid plaques in patients with ischemic stroke. World J Cardiol 2010; 2(4): 89-97 [PMID: 21160703 DOI: 10.4330/wjc.v2.i4.89] |
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URL: | https://www.wjgnet.com/1949-8462/full/v2/i4/89.htm |
Number | Citing Articles |
1 |
Mahtab Zamani, Karolina Skagen, Helge Scott, Beate Lindberg, David Russell, Mona Skjelland. Carotid Plaque Neovascularization Detected With Superb Microvascular Imaging Ultrasound Without Using Contrast Media. Stroke 2019; 50(11): 3121 doi: 10.1161/STROKEAHA.119.025496
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2 |
Charlotte Schmidt, Thomas Fischer, Ralph-Ingo Rückert, Timm Oberwahrenbrock, Lutz Harms, Golo Kronenberg, Hagen Kunte, Christoph E. Hagemeyer. Identification of neovascularization by contrast–enhanced ultrasound to detect unstable carotid stenosis. PLOS ONE 2017; 12(4): e0175331 doi: 10.1371/journal.pone.0175331
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3 |
J.M. Baud, D. Stanciu, J. Yeung, A. Maurizot, S. Chabay, M. de Malherbe, M.-L. Chadenat, D. Bachelet, F. Pico. Contrast enhanced ultrasound of carotid plaque in acute ischemic stroke (CUSCAS study). Revue Neurologique 2021; 177(1-2): 115 doi: 10.1016/j.neurol.2020.03.023
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4 |
Yingwei Guo, Yingjian Yang, Fengqiu Cao, Yang Liu, Wei Li, Chaoran Yang, Mengting Feng, Yu Luo, Lei Cheng, Qiang Li, Xueqiang Zeng, Xiaoqiang Miao, Longyu Li, Weiyan Qiu, Yan Kang. Radiomics features of DSC-PWI in time dimension may provide a new chance to identify ischemic stroke. Frontiers in Neurology 2022; 13 doi: 10.3389/fneur.2022.889090
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5 |
Odysseas Kargiotis, Apostolos Safouris, Georgios Magoufis, Maria Georgala, Andromachi Roussopoulou, Eleftherios Stamboulis, Konstantinos G. Moulakakis, Andreas Lazaris, George Geroulakos, Spyros Vasdekis, Georgios Tsivgoulis. The Role of Neurosonology in the Diagnosis and Management of Patients with Carotid Artery Disease: A Review. Journal of Neuroimaging 2018; 28(3): 239 doi: 10.1111/jon.12495
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6 |
Runqing Huang, Sahar S. Abdelmoneim, Caroline A. Ball, Lara F. Nhola, Ann M. Farrell, Steven Feinstein, Sharon L. Mulvagh. Detection of Carotid Atherosclerotic Plaque Neovascularization Using Contrast Enhanced Ultrasound: A Systematic Review and Meta-Analysis of Diagnostic Accuracy Studies. Journal of the American Society of Echocardiography 2016; 29(6): 491 doi: 10.1016/j.echo.2016.02.012
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7 |
Hualin Yan, Xian Wu, Ying He, Daniel Staub, Xiaorong Wen, Yan Luo. Carotid Intraplaque Neovascularization on Contrast-Enhanced Ultrasound Correlates with Cardiovascular Events and Poor Prognosis: A Systematic Review and Meta-analysis. Ultrasound in Medicine & Biology 2021; 47(2): 167 doi: 10.1016/j.ultrasmedbio.2020.10.013
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8 |
Arend F.L. Schinkel, Johan G. Bosch, Daniel Staub, Dan Adam, Steven B. Feinstein. Contrast-Enhanced Ultrasound to Assess Carotid Intraplaque Neovascularization. Ultrasound in Medicine & Biology 2020; 46(3): 466 doi: 10.1016/j.ultrasmedbio.2019.10.020
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9 |
Sandeep A. Saha, Venu Gourineni, Steven B. Feinstein. The Use of Contrast-enhanced Ultrasonography for Imaging of Carotid Atherosclerotic Plaques. Neuroimaging Clinics of North America 2016; 26(1): 81 doi: 10.1016/j.nic.2015.09.007
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10 |
Shanshan Dong, Jianzhong Hou, Caiyun Zhang, Guilin Lu, Wenjuan Qin, Lei Huang, Guangqin Zhou, Min Tang. Diagnostic Performance of Atherosclerotic Carotid Plaque Neovascularization with Contrast-Enhanced Ultrasound: A Meta-Analysis. Computational and Mathematical Methods in Medicine 2022; 2022: 1 doi: 10.1155/2022/7531624
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11 |
Yangyang Zhou, Yingqi Xing, Yan Li, Yang Bai, Ying Chen, Xiaofeng Sun, Yingqiao Zhu, Jiang Wu. An assessment of the vulnerability of carotid plaques: a comparative study between intraplaque neovascularization and plaque echogenicity. BMC Medical Imaging 2013; 13(1) doi: 10.1186/1471-2342-13-13
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12 |
Jun Nakamura, Takamitsu Nakamura, Juntaro Deyama, Daisuke Fujioka, Ken-ichi Kawabata, Jun-ei Obata, Kazuhiro Watanabe, Yosuke Watanabe, Kiyotaka Kugiyama. Assessment of carotid plaque neovascularization using quantitative analysis of contrast-enhanced ultrasound imaging is useful for risk stratification in patients with coronary artery disease. International Journal of Cardiology 2015; 195: 113 doi: 10.1016/j.ijcard.2015.05.107
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13 |
S. Tellapuri, P.D. Sutphin, S.P. Kalva, R.F. Mattrey. Contrast-Enhanced Ultrasound in the Assessment of Carotid Atherosclerotic Disease: A Review. Neurographics 2021; 11(1): 38 doi: 10.3174/ng.2000026
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14 |
Masashi Hoshino, Takahiro Shimizu, Hana Ogura, Yuta Hagiwara, Naoki Takao, Kaima Soga, Noriko Usuki, Junji Moriya, Hisao Nakamura, Yasuhiro Hasegawa. Intraplaque Microvascular Flow Signal in Superb Microvascular Imaging and Magnetic Resonance Imaging Carotid Plaque Imaging in Patients with Atheromatous Carotid Artery Stenosis. Journal of Stroke and Cerebrovascular Diseases 2018; 27(12): 3529 doi: 10.1016/j.jstrokecerebrovasdis.2018.08.017
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15 |
Amer M. Johri, Julia E. Herr, Terry Y. Li, Olivia Yau, Vijay Nambi. Novel Ultrasound Methods to Investigate Carotid Artery Plaque Vulnerability. Journal of the American Society of Echocardiography 2017; 30(2): 139 doi: 10.1016/j.echo.2016.11.003
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16 |
Yu. V. Belov, G. V. Sinyavin, E. V. Barinov, A. M. Grabuzdov. Contrast-enhanced ultrasonography as the most perspective diagnostic method for unstable atherosclerotic plaque of carotid artery. Khirurgiya. Zhurnal im. N.I. Pirogova 2018; (9): 52 doi: 10.17116/hirurgia2018090152
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17 |
De-Bin Yang, Jie Zhou, Lan Feng, Rong Xu, Ying-Chun Wang. Value of superb micro-vascular imaging in predicting ischemic stroke in patients with carotid atherosclerotic plaques. World Journal of Clinical Cases 2019; 7(7): 839-848 doi: 10.12998/wjcc.v7.i7.839
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18 |
Georgios Tsivgoulis, Apostolos Safouris, Andrei V. Alexandrov. Stroke. 2022; : 641 doi: 10.1016/B978-0-323-69424-7.00046-6
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19 |
Christie A. Boswell-Patterson, Marie-France Hétu, Stephen C. Pang, Julia E. Herr, Jianhua Zhou, Shagun Jain, Alexander Bambokian, Amer M. Johri. Novel theranostic approaches to neovascularized atherosclerotic plaques. Atherosclerosis 2023; 374: 1 doi: 10.1016/j.atherosclerosis.2023.04.008
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20 |
Masatomo Miura, Shinichi Yoshimura, Kiyofumi Yamada, Takuya Kanamaru, Kazuma Matsumoto, Seigo Shindo, Kazutaka Uchida, Manabu Shirakawa, Masanori Kawasaki, Yukio Ando. Presence of Plaque Neovascularization on Optical Frequency Domain Imaging Predicts Progression of Carotid Artery Stenosis. World Neurosurgery 2019; 127: e330 doi: 10.1016/j.wneu.2019.02.249
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21 |
Christie A. Boswell-Patterson, Marie-France Hétu, Abigail Kearney, Stephen C. Pang, M. Yat Tse, Julia E. Herr, Michaela Spence, Jianhua Zhou, Amer M. Johri. Vascularized Carotid Atherosclerotic Plaque Models for the Validation of Novel Methods of Quantifying Intraplaque Neovascularization. Journal of the American Society of Echocardiography 2021; 34(11): 1184 doi: 10.1016/j.echo.2021.06.003
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22 |
Nao ONODERA, Kazumasa OURA, Tadayoshi KATO, Hideki OHBA, Masakazu KOBAYASHI, Kuniaki OGASAWARA, Jiro HITOMI, Akira SUWABE, Yasuo TERAYAMA. A case of internal carotid artery stenosis with massive influx of contrast material into carotid plaque on contrast-enhanced ultrasound. Neurosonology 2016; 29(3): 191 doi: 10.2301/neurosonology.29.191
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23 |
Man Zhao, Luni Zhang, Jing Chen, Shiyao Gu, Rong Wu, Caixia Jia. Associations between carotid plaque shape, biomechanical parameters, and ischemic stroke in mild carotid stenosis with a single plaque. Ultrasonography 2024; 43(3): 209 doi: 10.14366/usg.24019
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24 |
Joseph Kamtchum-Tatuene, Jean Jacques Noubiap, Alan H. Wilman, Maher Saqqur, Ashfaq Shuaib, Glen C. Jickling. Prevalence of High-risk Plaques and Risk of Stroke in Patients With Asymptomatic Carotid Stenosis. JAMA Neurology 2020; 77(12): 1524 doi: 10.1001/jamaneurol.2020.2658
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25 |
Umar Sadat, Farouc A. Jaffer, Marc A. M. J van Zandvoort, Stephen J. Nicholls, Domenico Ribatti, Jonathan H. Gillard. Inflammation and Neovascularization Intertwined in Atherosclerosis. Circulation 2014; 130(9): 786 doi: 10.1161/CIRCULATIONAHA.114.010369
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26 |
Yingwei Guo, Yingjian Yang, Fengqiu Cao, Wei Li, Mingming Wang, Yu Luo, Jia Guo, Asim Zaman, Xueqiang Zeng, Xiaoqiang Miu, Longyu Li, Weiyan Qiu, Yan Kang. Novel Survival Features Generated by Clinical Text Information and Radiomics Features May Improve the Prediction of Ischemic Stroke Outcome. Diagnostics 2022; 12(7): 1664 doi: 10.3390/diagnostics12071664
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27 |
Ankur Thapar, Joseph Shalhoub, Michalakis Averkiou, Christophoros Mannaris, Alun H. Davies, Edward L. S. Leen. Dose-Dependent Artifact in the Far Wall of the Carotid Artery at Dynamic Contrast-enhanced US. Radiology 2012; 262(2): 672 doi: 10.1148/radiol.11110968
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28 |
Zhaoliang Luo, Tingliang Gong, Weihong Li, Wenqiang Tao. LncRNA Meg3 promotes oxygen and glucose deprivation injury by decreasing angiogenesis in hBMECs by targeting the miR‑122‑5p/NDRG3 axis. Experimental and Therapeutic Medicine 2022; 24(4) doi: 10.3892/etm.2022.11559
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29 |
Andrejs Lioznovs, Maija Radzina, Laura Saule, Peteris Einars Grinbergs, Aigars Lacis. What Is the Added Value of Carotid CEUS in the Characterization of Atherosclerotic Plaque?. Medicina 2024; 60(3): 375 doi: 10.3390/medicina60030375
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30 |
Anwen Shao, Xiao Dong, Jingyi Zhou, Fuyi Liu, Yuan Hong, Jianmin Zhang. Comparison of Carotid Artery Endarterectomy and Carotid Artery Stenting in Patients With Atherosclerotic Carotid Stenosis. Journal of Craniofacial Surgery 2014; 25(4): 1441 doi: 10.1097/SCS.0000000000000791
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31 |
Kazumasa Oura, Tadayoshi Kato, Hideki Ohba, Yasuo Terayama. Evaluation of Intraplaque Neovascularization Using Superb Microvascular Imaging and Contrast-Enhanced Ultrasonography. Journal of Stroke and Cerebrovascular Diseases 2018; 27(9): 2348 doi: 10.1016/j.jstrokecerebrovasdis.2018.04.023
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32 |
Kui Tang, Minghui Liu, Yun Zhu, Ming Zhang, Chengcheng Niu. The clinical application of ultrasonography with superb microvascular imaging‐a review. Journal of Clinical Ultrasound 2022; 50(5): 721 doi: 10.1002/jcu.23210
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33 |
Konstantinos Filis, Levon Toufektzian, George Galyfos, Fragiska Sigala, Panagiota Kourkoveli, Sotirios Georgopoulos, Manolis Vavuranakis, Dimitrios Vrachatis, George Zografos. Assessment of the vulnerable carotid atherosclerotic plaque using contrast-enhanced ultrasonography. Vascular 2017; 25(3): 316 doi: 10.1177/1708538116665734
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34 |
Hubertus Fritz Georg Müller, Aurélien Viaccoz, Igor Kuzmanovic, Christophe Bonvin, Karim Burkhardt, Marie-Luce Bochaton-Piallat, Roman Sztajzel. Contrast-Enhanced Ultrasound Imaging of Carotid Plaque Neo-vascularization: Accuracy of Visual Analysis. Ultrasound in Medicine & Biology 2014; 40(1): 18 doi: 10.1016/j.ultrasmedbio.2013.08.012
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35 |
Chaolun Li, Wanyuan He, Daqiao Guo, Lingli Chen, Xuejuan Jin, Weiping Wang, Beijian Huang, Wenping Wang. Quantification of Carotid Plaque Neovascularization Using Contrast-Enhanced Ultrasound With Histopathologic Validation. Ultrasound in Medicine & Biology 2014; 40(8): 1827 doi: 10.1016/j.ultrasmedbio.2014.02.010
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36 |
J.M. Baud, S. Luong, O. Rouyer, A. Maurizot, C. Gautier. Apport de l’échographie de contraste dans la caractérisation des lésions carotidiennes. JMV-Journal de Médecine Vasculaire 2017; 42(5): 301 doi: 10.1016/j.jdmv.2017.06.003
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37 |
A.N. Evdokimenko, A.O. Chechetkin, L.D. Druina, M.M. Tanashyan. Contrast-enhanced ultrasonography for assessing neovascularization of carotid atherosclerotic plaque. Bulletin of Russian State Medical University 2019; (4): 24 doi: 10.24075/brsmu.2019.057
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38 |
Xiangdong You, Pintong Huang, Chao Zhang, Minghui Wang, Ying Zhang, Yurong Hong, Shumei Wei, Chunmei Liu, Zhaoxia Pu, Jianmin Zhang, Shuyuan Chen, Stefan Kiechl. Relationship between Enhanced Intensity of Contrast Enhanced Ultrasound and Microvessel Density of Aortic Atherosclerostic Plaque in Rabbit Model. PLoS ONE 2014; 9(4): e92445 doi: 10.1371/journal.pone.0092445
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