Impedance characterization, degradation, and in vitro biocompatibility for platinum electrodes on BioMEMS
نویسندگان
چکیده
منابع مشابه
BioMEMS for medicine: On-chip cell characterization and implantable microelectrodes
This paper surveys a few of the emerging bioMEMS technologies at EPFL for improved, inexpensive health care. The lab-on-a-chip systems use dielectrophoretic forces to direct cell movement within microfluidic networks and impedance spectroscopy for label-free inflow characterization of living cells. The implantable microelectrodes for neural applications are based on thin-film polymer foils with...
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ساخت الکترودهاِی اصلاح شده ِیکِی از چالشهاِی همِیشگِی در دانش شیمِی بوِیژه شیمِی تجزیه مِی باشد ،که با در نظر گرفتن سادگِی ساخت، کاربردی بودن و ارزان بودن روش مِی توان به باارزش بودن چنِین سنسورهاِی پِی برد.آنچه که در ادامه آورده شده به ساخت و کاربرد الکترودهاِی اصلاح شده با استفاده از نانو ذرات در اندازه گِیرِی ولتامترِی آهن وکادمِیم اشاره دارد. کار اول اختصاص دارد به ساخت الکترود خمِیر کربن اصلاح شده با لِیگاند داِ...
15 صفحه اولElectrophoretic deposition of ligand-free platinum nanoparticles on neural electrodes affects their impedance in vitro and in vivo with no negative effect on reactive gliosis.
BACKGROUND Electrodes for neural stimulation and recording are used for the treatment of neurological disorders. Their features critically depend on impedance and interaction with brain tissue. The effect of surface modification on electrode impedance was examined in vitro and in vivo after intracranial implantation in rats. Electrodes coated by electrophoretic deposition with platinum nanopart...
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ژورنال
عنوان ژورنال: Biomedical Microdevices
سال: 2015
ISSN: 1387-2176,1572-8781
DOI: 10.1007/s10544-014-9909-6