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Biological engineering

Channel | updated April 01, 2013

Advances in basic biology at the molecular and cellular levels during recent decades have dramatically increased the foundational information available on mechanistic underpinnings of biological systems. Indeed, the genomics revolution has accelerated the pace at which reductionist data is being generated. It is widely agreed that a crucial challenge for the coming decades is how to integrate information from the genomic level to higher levels of system organization, for both fundamental scientific understanding and development of innovative biotechnologies. Engineering disciplines are predicated on the complementary principles of analysis and synthesis, combining to elucidate quantitative "design principles" for the dependence of system behavior on component properties. The "measurement, modeling, and manipulation" approach that has characterized engineering disciplines based on the sciences of physics and chemistry is now finding the molecular and cellular life sciences accessible and amenable as well. Thus, a new discipline of biological engineering is emerging, directed toward analysis of biological systems in terms of key component properties and consequently toward synthesis of technologies that can beneficially modify and control such systems for societal benefit across many, diverse application areas including human and environmental health.

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Endometriosis 2 Design Pitch 2/4
  • Biological engineering,
  • Feature
Endometriosis 2 Design Pitch 2/4

Design pitch presentation from Endometriosis 2 team in 20.380, Spring 2011

Endometriosis 2 Design Pitch 1/4
  • Biological engineering,
  • Feature
Endometriosis 2 Design Pitch 1/4

Design pitch presentation from Endometriosis 2 team in 20.380, Spring 2011

Endometriosis 1 Design Pitch 3/3
  • Biological engineering,
  • Feature
Endometriosis 1 Design Pitch 3/3

Q&A for design pitch presentation from Endometriosis 1 team in 20.380, Spring 2011

Endometriosis 1 Design Pitch 2/3
  • Biological engineering,
  • Feature
Endometriosis 1 Design Pitch 2/3

Design pitch presentation from Endometriosis 1 team in 20.380, Spring 2011

Cancer 1 Design Pitch 3/4
  • Biological engineering,
  • Feature
Cancer 1 Design Pitch 3/4

Q&A

Cancer 1 Design Pitch 2/4
  • Biological engineering,
  • Feature
Cancer 1 Design Pitch 2/4

Cancer 1 Design Pitch 1/4
  • Biological engineering,
  • Feature
Cancer 1 Design Pitch 1/4

Biofilms 2 Design Pitch 3/4
  • Biological engineering,
  • Feature
Biofilms 2 Design Pitch 3/4

Q&A

Biofilms 2 Design Pitch 2/4
  • Biological engineering,
  • Feature
Biofilms 2 Design Pitch 2/4

Biofilms 2 Design Pitch 1/4
  • Biological engineering,
  • Feature
Biofilms 2 Design Pitch 1/4

Biofilms 1 Design Pitch 3/4
  • Biological engineering,
  • Feature
Biofilms 1 Design Pitch 3/4

Q&A of design pitch presentation from Biofilms 1 team in 20.380, Spring 2011

Biofilms 1 Design Pitch 2/4
  • Biological engineering,
  • Feature
Biofilms 1 Design Pitch 2/4

Design pitch presentation from Biofilms 1 team in 20.380, Spring 2011

Biofilms 1 Design Pitch 1/4
  • Biological engineering,
  • Feature
Biofilms 1 Design Pitch 1/4

Design pitch presentation from Biofilms 1 team in 20.380, Spring 2011

Cancer 2 Design Pitch 4/4
  • Biological engineering,
  • Feature
Cancer 2 Design Pitch 4/4

Q&A of design pitch presentation from Cancer 2 team in 20.380, Spring 2011

Cancer 2 Design Pitch 3/4
  • Biological engineering,
  • Feature
Cancer 2 Design Pitch 3/4

Q&A of design pitch presentation from Cancer 2 team in 20.380, Spring 2011

Cancer 2 Design Pitch 2/4
  • Biological engineering,
  • Feature
Cancer 2 Design Pitch 2/4

Design pitch presentation from Cancer 2 team in 20.380, Spring 2011

Cancer 2 Design Pitch 1/4
  • Biological engineering,
  • Feature
Cancer 2 Design Pitch 1/4

Design pitch presentation from Cancer 2 team in 20.380, Spring 2011

Cells in Living Color
  • Biology,
  • Demonstration
Cells in Living Color

The two upper panels of this video show different views of a cell while the lower left shows the presence of bubbles, called vesicles, within it. On the lower right, the thin petals can be see in cross-section as they form, ripple over the cell, and subside. Built from 40,000 images, this ...

HIV 2 Tech Paper Presentation 4/4
  • Biological engineering,
  • Feature
HIV 2 Tech Paper Presentation 4/4

Yao et al., 2010: paper presented by HIV 2 team in 20.380, Spring 2011 (Q&A)

HIV 2 Tech Paper Presentation 3/4
  • Biological engineering,
  • Feature
HIV 2 Tech Paper Presentation 3/4

Yao et al., 2010: paper presented by HIV 2 team in 20.380, Spring 2011

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