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Cited by in CrossRef
For: Amano H, Miyake K, Hinoki A, Yokota K, Kinoshita F, Nakazawa A, Tanaka Y, Seto Y, Uchida H. Novel zinc alloys for biodegradable surgical staples. World J Clin Cases 2020; 8(3): 504-516 [PMID: 32110659 DOI: 10.12998/wjcc.v8.i3.504]
URL: https://www.wjgnet.com/2307-8960/full/v8/i3/504.htm
Number Citing Articles
1
Nan Yang, Nagasivamuni Balasubramani, Jeffrey Venezuela, Sharifah Almathami, Cuie Wen, Matthew Dargusch. The influence of Ca and Cu additions on the microstructure, mechanical and degradation properties of Zn–Ca–Cu alloys for absorbable wound closure device applicationsBioactive Materials 2021; 6(5): 1436 doi: 10.1016/j.bioactmat.2020.10.015
2
Vito Burgio, Janira Bei, Mariana Rodriguez Reinoso, Marco Civera, Oliver Grimaldo Ruiz, Cecilia Surace, Nicola M. Pugno. Mechanical Stapling Devices for Soft Tissue Repair: A Review of Commercially Available Linear, Linear Cutting, and Circular StaplersApplied Sciences 2024; 14(6): 2486 doi: 10.3390/app14062486
3
Maria Roesner, Sergej Zankovic, Adalbert Kovacs, Moritz Benner, Roland Barkhoff, Michael Seidenstuecker. Biocompatibility Assessment of Zinc Alloys as a New Potential Material for Bioabsorbable Implants for OsteosynthesisMaterials 2023; 16(15): 5224 doi: 10.3390/ma16155224
4
Kunshan Yuan, Chengchen Deng, Lili Tan, Xiangxiu Wang, Wenhua Yan, Xiaozhen Dai, Ruolin Du, Yufeng Zheng, Haijun Zhang, Guixue Wang. Structural and temporal dynamics analysis of zinc-based biomaterials: History, research hotspots and emerging trendsBioactive Materials 2024; 35: 306 doi: 10.1016/j.bioactmat.2024.01.017
5
Research progress of biodegradable staples in gastrointestinal anastomosisProgress in Medical Devices 2024;  doi: 10.61189/390527zficik
6
Ehsan Farabi, Julie Sharp, Alireza Vahid, Jiangting Wang, Daniel M. Fabijanic, Matthew R. Barnett, Santiago Corujeira Gallo. Novel Biodegradable Zn Alloy with Exceptional Mechanical and In Vitro Corrosion Properties for Biomedical ApplicationsACS Biomaterials Science & Engineering 2021; 7(12): 5555 doi: 10.1021/acsbiomaterials.1c00763
7
Dinesh Rokaya, Smriti Bohara, Viritpon Srimaneepong, Suchada Kongkiatkamon, Zohaib Khurshid, Artak Heboyan, Muhammad Sohail Zafar, Janak Sapkota. Functional Biomaterials2022; : 503 doi: 10.1007/978-981-16-7152-4_18
8
Salome Hagelstein, Sergej Zankovic, Adalbert Kovacs, Roland Barkhoff, Michael Seidenstuecker. Mechanical Analysis and Corrosion Analysis of Zinc Alloys for Bioabsorbable Implants for OsteosynthesisMaterials 2022; 15(2): 421 doi: 10.3390/ma15020421
9
Xiaoru Zhuo, Yuna Wu, Jia Ju, Huan Liu, Jinghua Jiang, Zhichao Hu, Jing Bai, Feng Xue. Recent progress of novel biodegradable zinc alloys: from the perspective of strengthening and tougheningJournal of Materials Research and Technology 2022; 17: 244 doi: 10.1016/j.jmrt.2022.01.004
10
Nan Yang, Jeffrey Venezuela, Rachel Allavena, Cora Lau, Matthew Dargusch. Zinc-based subcuticular absorbable staples: An in vivo and in vitro studyActa Biomaterialia 2023; 167: 593 doi: 10.1016/j.actbio.2023.06.030
11
Humayun Kabir, Khurram Munir, Cuie Wen, Yuncang Li. Recent research and progress of biodegradable zinc alloys and composites for biomedical applications: Biomechanical and biocorrosion perspectivesBioactive Materials 2021; 6(3): 836 doi: 10.1016/j.bioactmat.2020.09.013
12
Jixing Lin, Xian Tong, Kun Wang, Zimu Shi, Yuncang Li, Matthew Dargusch, Cuie Wen. Biodegradable Zn–3Cu and Zn–3Cu–0.2Ti alloys with ultrahigh ductility and antibacterial ability for orthopedic applicationsJournal of Materials Science & Technology 2021; 68: 76 doi: 10.1016/j.jmst.2020.06.052
13
Nan Yang, Jeffrey Venezuela, Sharifah Almathami, Matthew Dargusch. Zinc-nutrient element based alloys for absorbable wound closure devices fabrication: Current status, challenges, and future prospectsBiomaterials 2022; 280: 121301 doi: 10.1016/j.biomaterials.2021.121301