71
Views
7
CrossRef citations to date
0
Altmetric
Original Research

Anodized 20 nm diameter nanotubular titanium for improved bladder stent applications

, &
Pages 219-225 | Published online: 25 Jan 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Dennis Mathew, Garima Bhardwaj, Qi Wang, Linlin Sun, Batur Ercan, Manisavagam Geetha & Thomas J Webster. (2014) Decreased Staphylococcus aureus and increased osteoblast density on nanostructured electrophoretic-deposited hydroxyapatite on titanium without the use of pharmaceuticals. International Journal of Nanomedicine 9, pages 1775-1781.
Read now
Ece Alpaslan & Thomas J Webster. (2014) Nanotechnology and picotechnology to increase tissue growth: a summary of in vivo studies. International Journal of Nanomedicine 9:sup1, pages 7-12.
Read now
Jara Crear, Kim M Kummer & Thomas J Webster. (2013) Decreased cervical cancer cell adhesion on nanotubular titanium for the treatment of cervical cancer. International Journal of Nanomedicine 8, pages 995-1001.
Read now
Moom Sinn Aw, Kamarul A Khalid, Karan Gulati, Gerald J Atkins, Peter Pivonka, David M Findlay & Dusan Losic. (2012) Characterization of drug-release kinetics in trabecular bone from titania nanotube implants. International Journal of Nanomedicine 7, pages 4883-4892.
Read now

Articles from other publishers (3)

Cagatay Yelkarasi, Nina Recek, Kursat Kazmanli, Janez Kovač, Miran Mozetič, Mustafa Urgen & Ita Junkar. (2022) Biocompatibility and Mechanical Stability of Nanopatterned Titanium Films on Stainless Steel Vascular Stents. International Journal of Molecular Sciences 23:9, pages 4595.
Crossref
Ziao Shen, Si Wang, Zhenyu Shen, Yufei Tang, Junbin Xu, Changjian Lin, Xun Chen & Qiaoling Huang. (2021) Deciphering controversial results of cell proliferation on TiO2 nanotubes using machine learning. Regenerative Biomaterials 8:4.
Crossref
Jun Bai, Xingang Zuo, Xue Feng, Yunfeng Sun, Qunzi Ge, Xuemei Wang & Changyou Gao. (2019) Dynamic Titania Nanotube Surface Achieves UV-Triggered Charge Reversal and Enhances Cell Differentiation. ACS Applied Materials & Interfaces 11:40, pages 36939-36948.
Crossref