Difference between revisions of "Team:HUST-China"

Line 247: Line 247:
 
             <div class="work-header">
 
             <div class="work-header">
 
                 <h2 class="text-uppercase">
 
                 <h2 class="text-uppercase">
                     how does it <span>work ?</span>
+
                     What is <span>Signal Filter ?</span>
 
                 </h2>
 
                 </h2>
 
                 <p style="width:70%;margin-left:15%;font-size:17px;text-align:left;text-indent:34px;">
 
                 <p style="width:70%;margin-left:15%;font-size:17px;text-align:left;text-indent:34px;">
Line 315: Line 315:
 
             <div class="work-header">
 
             <div class="work-header">
 
                 <h2 class="text-uppercase">
 
                 <h2 class="text-uppercase">
                     how does it <span>work ?</span>
+
                     Why do we <span>use it ?</span>
 
                 </h2>
 
                 </h2>
 
                 <p style="width:70%;margin-left:15%;font-size:17px;text-align:left;text-indent:34px;">
 
                 <p style="width:70%;margin-left:15%;font-size:17px;text-align:left;text-indent:34px;">

Revision as of 03:34, 19 October 2016

Team:HUST-China

What is Signal Filter ?

This year, we, HUST-China, design a functional gene expression toolkit. The systems we design can not only be adaptable to any input and output, but also can change its threshold to meet the requirements from different project purposes.

Normally, gene expression level depends on the input signals' intensity but it always cna't be strong enough, so it may be hard for former expression systems to deal with realistic problems.

Our toolkit can sense even pulse signal to reach its stable expression state and with validly characterized circuits, it will definitely help new iGEMers.

how does it work ?

This year, we, HUST-China, design a functional gene expression toolkit. The systems we design can not only be adaptable to any input and output, but also can change its threshold to meet the requirements from different project purposes.

Normally, gene expression level depends on the input signals' intensity but it always cna't be strong enough, so it may be hard for former expression systems to deal with realistic problems.

Our toolkit can sense even pulse signal to reach its stable expression state and with validly characterized circuits, it will definitely help new iGEMers.

Why do we use it ?

This year, we, HUST-China, design a functional gene expression toolkit. The systems we design can not only be adaptable to any input and output, but also can change its threshold to meet the requirements from different project purposes.

Normally, gene expression level depends on the input signals' intensity but it always cna't be strong enough, so it may be hard for former expression systems to deal with realistic problems.

Our toolkit can sense even pulse signal to reach its stable expression state and with validly characterized circuits, it will definitely help new iGEMers.