Ing-Ming
Ing-Ming Chiu, Miaoli County TW
Patent application number | Description | Published |
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20110081395 | ULTRA-NANOCRYSTALLINE DIAMOND AS A BIOMATERIAL FOR ENHANCING PROLIFERATION AND DIFFERENTIATION OF NEURAL STEM CELLS - Compositions for promoting growth and/or differentiation of a stem cell are disclosed. The composition comprises: a) a diamond film; b) a stem cell cultured on the diamond film; and c) a medium bathing the stem cell. The stem cell may be a mammalian neural stem cell and the diamond film may comprise a hydrogen-terminated or an oxygen-terminated surface. The hydrogen-terminated surface promotes proliferation and differentiation of a neural stem cell into neurons, and the oxygen-terminated surface promotes a neural stem cell to proliferate and differentiate into oligodendrocytes. | 04-07-2011 |
Ing-Ming Chiu, Miaoli TW
Patent application number | Description | Published |
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20100068240 | IMPLANTABLE NERVE REGENERATION CONDUIT - Implantable nerve regeneration conduits and methods of making the same are disclosed. The implantable nerve regeneration conduits mainly comprise a biodegradable polymer and a metal. Moreover, the conduits may also comprise one or more nerve regeneration enhancing elements, which comprise bioactive molecules or cells. The inner surface of the conduits may be micropatterned photolithographic processes to form microgrooves for facilitating cell alignment. | 03-18-2010 |
20110023136 | F1B-TMIR Plasmid Vector and Transgenic Mouse - A trifusion reporter plasmid is described that comprises a plasmid operably coupled to a mammalian FGF1B promoter that is operably coupled to a bioluminescence gene fused to a fluorescence gene fused to a nuclear medical imaging gene. The new reporter allows in vivo or ex vivo detection of gene expression in three different ways, in addition to traditional in vitro detection methods. Transgenic animals containing this new trifusion reporter and uses of same are described. | 01-27-2011 |
20120144507 | F1B-TMIR PLASMID VECTOR AND TRANSGENIC MOUSE - A trifusion reporter plasmid is described that comprises a plasmid operably coupled to a mammalian FGF1B promoter that is operably coupled to a bioluminescence gene fused to a fluorescence gene fused to a nuclear medical imaging gene. The new reporter allows in vivo or ex vivo detection of gene expression in three different ways, in addition to traditional in vitro detection methods. Transgenic animals containing this new trifusion reporter and uses of same are described. | 06-07-2012 |
Ing-Ming Lee, Hsinchu TW
Patent application number | Description | Published |
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20100315920 | EXTERNAL OPTICAL DISC DRIVE AND METHOD OF CONTROLLING THE SAME - An external optical disc drive, connected to a bus from which a supplying voltage and a supplying current are outputted, includes: a voltage detector connected to the bus for receiving and detecting the supplying voltage; a digital signal processor connected to the voltage detector; a motor driver connected to the digital signal processor; and a spindle motor connected to the motor driver; wherein a speed-control signal, for informing the digital signal processor to lower the speed of the spindle motor via the motor driver, is outputted to the digital signal processor from the voltage detector while the supplying voltage is detected lower than a threshold voltage. | 12-16-2010 |
20110298289 | ELECTRONIC APPARATUS WITH PROTECTION CIRCUIT - An electronic apparatus includes a first power source input terminal configured to receive a first driving voltage or a second driving voltage, wherein the second driving voltage is greater than the first driving voltage; a second power source input terminal configured to receive the first driving voltage or the second driving voltage; a protection circuit connected to the first power source input terminal; a first voltage circuit connected to the protection circuit and driven by the first driving voltage; and a second voltage circuit connected to the second power source input terminal and driven by the second driving voltage; wherein the second driving voltage is blocked by the protection circuit and not further transmitted to the first voltage circuit while the second driving voltage is inputted to the first power source input terminal. | 12-08-2011 |