Team:NYMU-Taipei/chassis

From 2011.igem.org

(Difference between revisions)
(GROUNDBREAKING NEWS (!): So we've decided to call it an......Opto-Magnetic Revolution)
Line 4: Line 4:
-
==='''GROUNDBREAKING NEWS (<font color=red>!</font>): <font color=gray>So we've decided to call it an......Opto-Magnetic Revolution</font>'''===
+
===Why choose AMB-1?(<font color=red>!</font>): <font color=gray>So we've decided to call it an......Opto-Magnetic Revolution</font>'''===
This year, NYMU-Taipei goes beyond the current realm of mainstream synthetic biology, developing a <font color=blue>'''opto-magnetic probing platform'''</font> on ''Magnetospirillum magneticum'' AMB-1 which functionally couples to channelrhodopsins (opsins that are ultra-rapidly reactive to light beams of certain wavelengths) to enable activation of neuronal circuitry in a <font color=red>'''totally wireless'''</font>, <font color=red>'''spatially and temporarily accurate'''</font>, <font color=red>'''minimally invasive'''</font>, <font color=red>'''3-dimensional multi-site stimulation enabling'''</font> fasion.
This year, NYMU-Taipei goes beyond the current realm of mainstream synthetic biology, developing a <font color=blue>'''opto-magnetic probing platform'''</font> on ''Magnetospirillum magneticum'' AMB-1 which functionally couples to channelrhodopsins (opsins that are ultra-rapidly reactive to light beams of certain wavelengths) to enable activation of neuronal circuitry in a <font color=red>'''totally wireless'''</font>, <font color=red>'''spatially and temporarily accurate'''</font>, <font color=red>'''minimally invasive'''</font>, <font color=red>'''3-dimensional multi-site stimulation enabling'''</font> fasion.

Revision as of 14:24, 4 October 2011

Horizontal Slide Menu



Why choose AMB-1?(!): So we've decided to call it an......Opto-Magnetic Revolution

This year, NYMU-Taipei goes beyond the current realm of mainstream synthetic biology, developing a opto-magnetic probing platform on Magnetospirillum magneticum AMB-1 which functionally couples to channelrhodopsins (opsins that are ultra-rapidly reactive to light beams of certain wavelengths) to enable activation of neuronal circuitry in a totally wireless, spatially and temporarily accurate, minimally invasive, 3-dimensional multi-site stimulation enabling fasion.