Biomedical Engineering Reference
In-Depth Information
Release, 2009, 134(2), 81-90, DOI: 10.1016/jjconrel200810021, Epub
2008 Nov 17.
156. K. Kim, J. Lam, S. Lu, P. P. Spicer, A. Lueckgen, Y. Tabata, et al.,
Osteochondral tissue regeneration using a bilayered composite
hydrogel with modulating dual growth factor release kinetics in a
rabbit model, J. Controlled Release, 2013, 168(2), 166-178.
157. H. R. Lee, K. M. Park, Y. K. Joung, K. D. Park and S. H. Do, Platelet-rich
plasma loaded hydrogel scaffold enhances chondrogenic differen-
tiation and maturation with up-regulation of CB1 and CB2, J. Controlled
Release, 2012, 159(3), 332-337, DOI: 10.1016/jjconrel201202008, Epub
2012 Feb 15.
158. A. Marmotti, M. Bruzzone, D. E. Bonasia, F. Castoldi, R. Rossi, L. Piras,
et al., One-step osteochondral repair with cartilage fragments in a
composite scaffold, Knee Surg. Sports Traumatol. Arthrosc., 2012, 20(12),
2590-2601, DOI: 10.1007/s00167-012-1920-y, Epub 2012 Feb 21.
159. C.-B. James and T. L. Uh, A review of articular cartilage pathology and
the use of glucosamine sulfate, J. Athl. Train., 2001, 36(4), 413-419.
160. G. M. Clark, The multiple-channel cochlear implant: the interface be-
tween sound and the central nervous system for hearing, speech, and
language in deaf people-a personal perspective, Philos. Trans. R. Soc.
London, Ser. B, 2006, 361(1469), 791-810.
161. M. Schaldach, New aspects in electrostimulation of the heart, Med.
Prog. Technol., 1995, 21(1), 1-16.
162. E. Jan, J. L. Hendricks, V. Husaini, S. M. Richardson-Burns, A. Sereno,
D. C. Martin, et al., Layered carbon nanotube-polyelectrolyte electrodes
outperform traditional neural interface materials, Nano Lett., 2009,
9(12), 4012-4018, DOI: 10.1021/nl902187z.
163. G. Baranauskas, E. Maggiolini, E. Castagnola, A. Ansaldo, A. Mazzoni,
G. N. Angotzi, et al., Carbon nanotube composite coating of neural
microelectrodes preferentially improves the multiunit signal-to-noise
ratio, J. Neural Eng., 2011, 8(6), 066013, DOI: 10.1088/1741-2560/8/6/
066013, Epub 2011 Nov 8.
164. Y. Lu, T. Li, X. Zhao, M. Li, Y. Cao, H. Yang, et al., Electrodeposited
polypyrrole/carbon nanotubes composite films electrodes for neural
interfaces, Biomaterials, 2010, 31(19), 5169-5181, DOI: 10.1016/jbio-
materials201003022, Epub 2010 Apr 10.
165. F. Zhang, M. Aghagolzadeh and K. Oweiss, A Fully Implantable, Pro-
grammable and Multimodal Neuroprocessor for Wireless, Cortically
Controlled Brain-Machine Interface Applications, J. Signal. Process.
Syst., 2012, 69(3), 351-361, Epub 2011 Jun 15.
166. J. Ushiba, Brain-machine interface-current status and future prospects,
Brain Nerve, 2010, 62(2), 101-111.
167. T. D. Kozai, N. B. Langhals, P. R. Patel, X. Deng, H. Zhang, K. L. Smith,
et al., Ultrasmall implantable composite microelectrodes with bioactive
surfaces for chronic neural interfaces, Nat. Mater., 2012, 11(12),
1065-1073, DOI: 10.1038/nmat3468, Epub 2012 Nov 11.
d n 3 r 4 n g | 1
.
 
Search WWH ::




Custom Search