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pro vyhledávání: '"Bahareh Ghane-Motlagh"'
Autor:
Bahareh Ghane Motlagh, May Choueib, Alireza Hajhosseini Mesgar, Md. Hasanuzzaman, Mohamad Sawan
Publikováno v:
Micromachines, Vol 7, Iss 9, p 163 (2016)
Silicon micromachined, high-density, pyramid-shaped neural microelectrode arrays (MEAs) have been designed and fabricated for intracortical 3D recording and stimulation. The novel architecture of this MEA has made it unique among the currently availa
Externí odkaz:
https://doaj.org/article/472d79010e95470282312133dec46aea
Publikováno v:
IEEE Transactions on Very Large Scale Integration (VLSI) Systems. 26:878-891
We present, in this paper, a new multichip system aimed toward building an implantable visual intracortical stimulation device. The objective is to deliver energy-optimum pulse patterns to neural sites with needed compliance voltage across high elect
Publikováno v:
Microelectronic Engineering. 229:111305
In this paper, the antibiofilm activity of microelectrode arrays (MEAs) related to their physicochemical properties was studied. Our objective was to determine whether any of the MEAs in contact with the biofilms elicit a considerable antibiofilm act
Autor:
Mohamad Sawan, Bahareh Ghane-Motlagh
Publikováno v:
Materials Sciences and Applications. :483-495
The emerging field of neuroprosthetics is focused on design and implementation of neural prostheses to restore some of the lost neural functions. Remarkable progress has been reported at most bioelectronic levels—particularly the various brain-mach
Autor:
Richard Martel, Kevin J. Wilkinson, Bahareh Ghane-Motlagh, Mohamad Sawan, Fatemeh Shoghi, Taraneh Javanbakht
Publikováno v:
Materials scienceengineering. C, Materials for biological applications. 68
Silicon micromachined neural electrode arrays, which act as an interface between bioelectronic devices and neural tissues, play an important role in chronic implants, in vivo. The biological compatibility of chronic microelectrode arrays (MEA) is an
Autor:
Bahareh Ghane-Motlagh, Mohamad Sawan
Publikováno v:
Advances in Science and Technology.
Microelectrode arrays (MEAs) act as an interface between electronic circuits and neural tissues of implantable devices. Biological response to chronic implantation of MEAs is an essential factor in determining a successful electrode design. Finding a
Autor:
Bahareh Ghane Motlagh, Mohamad Sawan
Publikováno v:
BioCAS
RESUME Les dispositifs medicaux dedies aux enregistrements des activites neuronales et a la stimulation de tissus nerveux sont appeles interfaces cerveau-machines. Ils offrent un potentiel important pour restaurer diverses fonctions neurologiques per
Autor:
Mohamad Sawan, Bahareh Ghane-Motlagh
Publikováno v:
2013 2nd International Conference on Advances in Biomedical Engineering.
The emerging field of neuroprosthetics is focused on design and implementation of neural prostheses to restore some of the lost neural functions. Remarkable progress has been reported in the various brain-machine interfaces (BMIs) but the electrode-t