Difference between revisions of "Team:HZAU-China/Modeling"
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<p>Our project aims to create a new kind of life form, mixed-reality cells, which are half-real and half-virtual. What should be mentioned is that mixed reality states occur only when a virtual and a real system are sufficiently similar.(Alfred Hübler, 2013). As two genetic oscillators built-in <em>E.coli</em> are alternative, we also simulate two e-oscillators in computer as virtual part corresponding to the genetic oscillators.</p> | <p>Our project aims to create a new kind of life form, mixed-reality cells, which are half-real and half-virtual. What should be mentioned is that mixed reality states occur only when a virtual and a real system are sufficiently similar.(Alfred Hübler, 2013). As two genetic oscillators built-in <em>E.coli</em> are alternative, we also simulate two e-oscillators in computer as virtual part corresponding to the genetic oscillators.</p> | ||
</br><p>To reach the mixed-reality state, the approach is separated into three stages. The first stage is virtual-virtual coupling. We use two e-oscillators of identical characteristics to simulate the mixed-reality process. They would transfer parameters and interact with each other to a coupled or synchronized state. Secondly, LED lamp is adopted to replace the fluorescence of real cell as the physical real part. It will connect with e-oscillator to compose a mixed-reality state of physical. On the other hand, it will show that our interface hardware could work as expected. At last, we wish to achieve our goal, mixed-reality state. The genetic oscillator in <em>E.coli</em> will interact with e-oscillator in a computer through our interface hardware and gradually they would be strongly coupled.</p> | </br><p>To reach the mixed-reality state, the approach is separated into three stages. The first stage is virtual-virtual coupling. We use two e-oscillators of identical characteristics to simulate the mixed-reality process. They would transfer parameters and interact with each other to a coupled or synchronized state. Secondly, LED lamp is adopted to replace the fluorescence of real cell as the physical real part. It will connect with e-oscillator to compose a mixed-reality state of physical. On the other hand, it will show that our interface hardware could work as expected. At last, we wish to achieve our goal, mixed-reality state. The genetic oscillator in <em>E.coli</em> will interact with e-oscillator in a computer through our interface hardware and gradually they would be strongly coupled.</p> |
Revision as of 08:12, 17 September 2015
Mixed-Reality CellBidirectinal coupling between real and virtual bio-oscillator
Overview
Our project aims to create a new kind of life form, mixed-reality cells, which are half-real and half-virtual. What should be mentioned is that mixed reality states occur only when a virtual and a real system are sufficiently similar.(Alfred Hübler, 2013). As two genetic oscillators built-in E.coli are alternative, we also simulate two e-oscillators in computer as virtual part corresponding to the genetic oscillators.
To reach the mixed-reality state, the approach is separated into three stages. The first stage is virtual-virtual coupling. We use two e-oscillators of identical characteristics to simulate the mixed-reality process. They would transfer parameters and interact with each other to a coupled or synchronized state. Secondly, LED lamp is adopted to replace the fluorescence of real cell as the physical real part. It will connect with e-oscillator to compose a mixed-reality state of physical. On the other hand, it will show that our interface hardware could work as expected. At last, we wish to achieve our goal, mixed-reality state. The genetic oscillator in E.coli will interact with e-oscillator in a computer through our interface hardware and gradually they would be strongly coupled.
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