Human Sweat Can Automatically Enhance The Permeability Of Biological Material Clothing Or Will Be Widely Applied.
Over the past century, people have made great progress in the utilization of electronics.
But in biology, our pace seems a little slow.
BioLogic is a new project launched by the visible media team of the media lab of Massachusetts Institute of Technology (MIT). The team is exploring interesting aspects of biology.
Yao Lining, of Massachusetts Institute of Technology, chaired the project.
She and her team try to use certain microorganisms instead of motors to achieve certain functions.
Yao Lining's team made natto cells into biofilms and was then printed on polyurethane fabric.
Printing different patterns on biofilms can produce different results.
For example, printing the biofilm evenly on the fabric can make the fabric roll up softly.
If the lines are printed,
Textile
It can be bent more sharply.
Yao Lining explained that cells can respond to all kinds of humidity, and in 100% humidity, it is completely open to achieve the greatest degree of permeability.
Yao Lining said: for designers, biology is a promising new discipline, because its adaptability is very strong.
"In biology, you can imagine some.
Electronic product
The function that can't be realized, "she said.
Unlike electronic products, living matter can grow, evolve, reproduce, split and die.
If you can control it, you will have tremendous power.
BioLogic used Bacillus subtilis natto, a commonly used bacteria in Japanese cuisine, that responds to atmospheric water.
Like pine nuts, these natto cells can also expand and contract automatically according to the humidity of the air.
The greater the humidity, the bigger the expansion (the size of a single cell can change by 50%).
Yao Lining worked with designers to create a new garment called Second Skin, which can now become more breathable as the temperature and humidity of the wearer increase.
The BioLogic research team used natural natto cells, that is to say, the expansion and contraction ability of these cells was natural, without any modification to enhance their ability.
But Yao Lining said, in the future,
Designer
It may modify the DNA structure of cells to achieve more complex functions.
For example, add bioluminescent substances, let fabrics or plants shine, or add bacteria that consume pollutants, and create fabrics that can clean the air.
"We are just beginning," she admits. But there are many possibilities to be imagined in the future.
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