For: | Khara HS, Diehl DL, Gross SA. Esophageal stent fracture: Case report and review of the literature. World J Gastroenterol 2014; 20(10): 2715-2720 [PMID: 24627608 DOI: 10.3748/wjg.v20.i10.2715] |
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URL: | https://www.wjgnet.com/1007-9327/full/v20/i10/2715.htm |
Number | Citing Articles |
1 |
Yazan Abboud, Mohamad Othman El Helou, Joseph Meza, Jamil S. Samaan, Liliana Bancila, Navkiran Randhawa, Kenneth H. Park, Shahab Mehdizadeh, Srinivas Gaddam, Simon K. Lo. Esophageal Self-Expandable Metal Stents Can Fracture in the Distal Third When Used for Post-Bariatric Surgery Complications: A Single Center Experience and Review of the Literature with Video. Journal of Clinical Medicine 2024; 13(12): 3419 doi: 10.3390/jcm13123419
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2 |
Marlene Abreu, Isabel Nunes, Susana Corujeira, Marta Tavares, Eunice Trindade, Jorge Amil Dias. Caustic Esophageal Stenosis: A Case Report of Endoscopic Dilation With a Dynamic Stent. GE Portuguese Journal of Gastroenterology 2016; 23(4): 218 doi: 10.1016/j.jpge.2015.12.006
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3 |
B. O’Brien, F.M. Weafer, M.S. Bruzzi. Comprehensive Biomaterials II. 2017; : 50 doi: 10.1016/B978-0-12-803581-8.10084-0
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4 |
Jan Racek, Petr Šittner. Environmental fatigue of superelastic NiTi wire with two surface finishes. Journal of the Mechanical Behavior of Biomedical Materials 2020; 111: 104028 doi: 10.1016/j.jmbbm.2020.104028
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5 |
Jaroslav Fojt, Dino Alferi, Vojtech Hybasek, Derek W. Edwards, Hans-Ulrich Laasch. Corrosion failure of nitinol stents in the upper gastrointestinal tract: The role of surface finishes and the importance of an appropriate test environment. Materials Chemistry and Physics 2023; 309: 128390 doi: 10.1016/j.matchemphys.2023.128390
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6 |
Zoha Zahid Fazal, Muhammad Bilal Ibrahim, Muhammad Ibrahim Saeed, Syedda Ayesha, Atif Majeed. Spontaneous Endoscopic Esophageal Stent Fracture Post-endoscopic Placement: A Case Report. Cureus 2023; doi: 10.7759/cureus.49406
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7 |
Karel Volenec, Ivan Pohl. The challenges: Stent materials from the perspective of the manufacturer. International Journal of Gastrointestinal Intervention 2016; 5(2): 98 doi: 10.18528/gii160008
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8 |
Paulina Chytrosz, Monika Golda-Cepa, Janusz Wlodarczyk, Jarosław Kuzdzal, Miroslawa El Fray, Andrzej Kotarba. Characterization of Partially Covered Self-Expandable Metallic Stents for Esophageal Cancer Treatment: In Vivo Degradation. ACS Biomaterials Science & Engineering 2021; 7(4): 1403 doi: 10.1021/acsbiomaterials.0c01773
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9 |
Daniel Michael Berger, Jan T. Sehrt, Thomas Brinkmann, Niclas Norman Henrichs, Oguzhan Bilec, Karl-Hermann Fuchs, Alexander Meining. The Development of a Novel Peristaltic Test Stand “Swallow-Sim” for the Mechanical Evaluation of Esophageal Stents. Journal of Medical Devices 2024; 18(3) doi: 10.1115/1.4065906
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10 |
Chuanguo Zhou, Baojie Wei, Jianfeng Wang, Qiang Huang, Hui Li, Kun Gao. Self-Expanding Metallic Stent Fracture in the Treatment of Malignant Biliary Obstruction. Gastroenterology Research and Practice 2018; 2018: 1 doi: 10.1155/2018/6527879
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11 |
Ákos Balázs, Tamás Vass, István Hritz, Miklós Horváth, Veronika Papp, Attila Szijártó. A malignus eredetű dysphagia palliatív kezelésére használt merev és öntáguló sztentek eredményeinek összehasonlító vizsgálata. Orvosi Hetilap 2022; 163(49): 1952 doi: 10.1556/650.2022.32653
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12 |
Dino Alferi, Jaroslav Fojt, Eva Kristianova, Derek W. Edwards, Hans-Ulrich Laasch. Influence of the Manufacturing Process on the Corrosion and Mechanical Behavior of Esophageal Stents. Metals 2023; 13(9): 1542 doi: 10.3390/met13091542
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13 |
Yousif Abdallah Adam, Sean-Tee J.M. Lim, Fionnuala Redmond, Eanna J. Ryan, Sean Johnston. Small Bowel Obstruction Secondary to Migration of a Fractured Esophageal Stent. Cureus 2022; doi: 10.7759/cureus.30802
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14 |
Tianyu Yuan, Dongdong Liu, Qian Li, Meng Wei, Yingbao Sun, Hua Xie, Lina Du, Bochuan Yuan, Pei Deng, Yanli Guo, Yiguang Jin. 3D printing of melatonin-loaded esophageal stents for treatment of corrosive esophagitis. Applied Materials Today 2024; 37: 102161 doi: 10.1016/j.apmt.2024.102161
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15 |
Meipan Yin, Shuai Wang, Meng Wang, Yalin Tong, Yaozhen Ma, Yue Zhao, Xiaobing Li, Pengfei Xie, Gang Wu. Inversion technique under fluoroscopy for removal of self-expanding nitinol esophageal stent after long-term placement: review of 107 consecutive cases. Surgical Endoscopy 2022; 36(8): 5692 doi: 10.1007/s00464-022-09238-2
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16 |
E. A. Drobyazgin, Yu. V. Chikinev, I. E. Sudovykh, A. S. Kudryavtsev, S. V. Yarmoschuk, A. A. Zheravin. Complications of application of metal self-expandable stents for esophageal tumors and tumors of esophageal anastomoses. Endoskopicheskaya khirurgiya 2018; 24(4): 45 doi: 10.17116/endoskop20182404145
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17 |
Caitlin E. Jackson, Liam S. J. Johnson, Dominic A. Williams, Hans-Ulrich Laasch, Derek W. Edwards, Alison G. Harvey. A viewpoint on material and design considerations for oesophageal stents with extended lifetime. Journal of Materials Science 2022; 57(1): 3 doi: 10.1007/s10853-021-06700-9
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18 |
Douglas G. Adler, Ali A. Siddiqui. Endoscopic management of esophageal strictures. Gastrointestinal Endoscopy 2017; 86(1): 35 doi: 10.1016/j.gie.2017.03.004
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19 |
Derek William Edwards, Hans-Ulrich Laasch. Esophageal stents: Beyond the simple stricture. International Journal of Gastrointestinal Intervention 2015; 4(2): 76 doi: 10.18528/gii150021
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20 |
Masaaki Urade, Daiki Kimura, Toshifumi Shinbo, Shinichiro Hirokawa. Fracture of self-expandable metallic stent inserted for unresectable gastric cancer at the esophagogastric junction: successful retrieval of distal fragment by gastrotomy. Clinical Journal of Gastroenterology 2022; 15(2): 351 doi: 10.1007/s12328-021-01586-1
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21 |
Sarah Williams, Quinn M. Halverson, Dalton T. Patterson, Kim Styrvoky, Cristhiaan D. Ochoa. Successful Removal of a Fractured Self-expanding Metallic Airway Stent Via Flexible Bronchoscopy. Journal of Bronchology & Interventional Pulmonology 2022; 29(3): e43 doi: 10.1097/LBR.0000000000000775
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22 |
Bahman Nasiri-Tabrizi, Wan Jefrey Basirun, Rashmi Walvekar, Chai Hong Yeong, Siew Wei Phang. Exploring the potential of intermetallic alloys as implantable biomaterials: A comprehensive review. Biomaterials Advances 2024; 161: 213854 doi: 10.1016/j.bioadv.2024.213854
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