Thomas Webster, an associate engineering professor at Brown University, and Brown researcher Dongwoo Khang, along with Grace Park, a research scientist (and one of Webster's former PhD students) at Becton, Dickinson and Company, a Franklin Lakes, N.J.–medical technology firm, say they grew cartilage cells by placing chondrocytes (cartilage-forming cells) and carbon nanotubes together on a polycarbonate urethane surface. As expected, cartilage cells grew around the nanotubes, which are so strong that scientists now use them to reinforce plastic. Researchers say they hastened new cell production by sending electrical surges through the nanotubes, which are also excellent conductors of electricity
Archived news and event highlights from the Brown School of Engineering.
Wednesday, July 16, 2008
Nanotech to regrow cartilage
Thomas Webster, an associate engineering professor at Brown University, and Brown researcher Dongwoo Khang, along with Grace Park, a research scientist (and one of Webster's former PhD students) at Becton, Dickinson and Company, a Franklin Lakes, N.J.–medical technology firm, say they grew cartilage cells by placing chondrocytes (cartilage-forming cells) and carbon nanotubes together on a polycarbonate urethane surface. As expected, cartilage cells grew around the nanotubes, which are so strong that scientists now use them to reinforce plastic. Researchers say they hastened new cell production by sending electrical surges through the nanotubes, which are also excellent conductors of electricity
Monday, July 14, 2008
Engineering course develops toys for rehabilitation
"Crisco was teaching an engineering course that combined industrial science students from Rhode Island School of Design (RISD) and engineering studies students at Brown University. The pair believed this was a perfect forum to bring creative minds together to create some prototypes for new therapeutic toys. Thus, Toys and Technology for Rehabilitation was formed."News story link here:
http://www.lifespan.org/news/2008/07/01/toys-and-technology-for-rehabilitation/
Tuesday, July 8, 2008
NYT highlights CFL tech

The technology developed by Bob Hurt and his student Natalie Johnson in Engineering along with Steve Hamburg in Environmental Studies was written up in today's Science Times in the NY Times. In the print version it is on page D3.
The on-line NYT link here: http://www.nytimes.com/2008/07/08/science/08obcfl.html?ex=1216180800&en= 0d75d9294da22dfd&ei=5070&emc=eta1
The Brown press release here: http://news.brown.edu/pressreleases/2008/06/mercurycloth08jun
They have developed a material that can capture the mercury in compact fluorescent bulbs which goes into the environment if they are broken. I think this could be a very important technology and the inventors are getting a lot of interest in the IP.
Congratulations to Bob, Natalie, and Steve.
Saturday, June 28, 2008
Major NIH Grant awarded

Associate Professor Diane Hoffman-Kim and Professor Tayhas Palmore earned a major NIH grant together.
Project Title: Quantifying Axon Growth in Complex Environments
Nerves fail to regenerate after injury and current medical practice is unable to manipulate effectively the process of nerve regeneration. The proposed research seeks to solve this problem by quantifying how guidance cues, both individually and in combination, promote axon growth in an inhibitory environment such as a nerve injury site.
Monday, June 23, 2008
Sirinrath Sirivisoot Highlighted
Engineering graduate student: Sirinrath Sirivisoot (advisor: Thomas J. Webster) was highlighted for her talk “Controlled Release of Antibiotics from Conductive Polymers for Improving Bone Implants” at the Materials Research Society International Materials Research Conference in Chongqing, China, Wednesday, June 11, 2008. Sirinrath gave a talk concerning the development of intelligent in situ orthopedic implant sensors that can sense the type of new tissue that is growing and respond accordingly. For example, if new bone growth is not occurring, this sensor can release bone growth factors to increase bone growth. As another example, if infection is sitting in, the sensor can release antibiotics.
http://www.mrs.org/s_mrs/doc.asp?CID=14934&DID=212426
Monday, April 7, 2008
Brown hosts regional bioengineering conference
Highlights included: Arto Nurmikko, the L. Herbert Ballou University Professor of Engineering and Physics at Brown, spoke about new implantable brain sensors being developed at the university.
In addition, there were dozens of short presentations on research being conducted at universities across the Northeast, and there were poster displays highlighting other projects, as well as opportunities for students in these fields to get together.
Read the Providence Business News coverage here.
Saturday, February 17, 2007
Freewheeling transport nations on the move
Excerpt of article:
In the summer of 2004, the two RISD professors teamed up with Chris Bull at Brown। Bull, whose paper- and book-laden office is in Brown's Prince Laboratory, said he had been working on transportation projects, in particular human powered and bio-diesel powered. For the past year, the team has been joined by Matt Forkin, a senior at Brown who is concentrating in engineering and visual technology.
While RISD has a workshop, Nichols said working with Bull at Brown's Prince Lab has allowed the group to "test ideas right away" on full-size prototypes. "We're used to sketching our ideas and working with small hand-held models," he said. The current vehicle is the third version the group has produced -- Prototypes 1 and 2 have since been disassembled with some parts incorporated into Number 3. "They're getting more sophisticated," said Bull. "The power train is pretty well developed." The motorcycle bench gives the vehicle the look of a snowmobile on wheels. Being electric, the engine was silent as the four sat in a row grinning and took a spin around the lab with Lye at the controls. They said they have taken it out on the streets around Brown, attracting bemused attention as they zip silently along. The vehicle is battery powered and can reach 40 miles per hour with a range of 40 miles on one charge. Bull said the batteries need to charge overnight if the onboard charger is used, but can be charged in four hours with a higher-capacity charger. The battery is lead-acid rather than lithium ion. "The price is right," said Bull.
Complete article here.
