Tag: David South

  • 3D Printing Gives Boy a New Arm in Sudan

    3D Printing Gives Boy a New Arm in Sudan

    By David SouthDevelopment Challenges, South-South Solutions

    SOUTH-SOUTH CASE STUDY

    3D printing is rapidly going mainstream and is now starting to make a big impact in health care. One innovative solution is using the technology to manufacture artificial arms for amputees harmed by war in Africa.

    While large-scale manufacturers use the machines to fabricate products and parts, from aircraft components to furniture, it is the smaller-scale use of 3D printing machines that has been getting many working in development excited.

    3D printing (http://en.wikipedia.org/wiki/3D_printing) usually involves a desktop-sized fabrication machine that builds a three-dimensional object following instructions from a digital computer file. It is an additive process, in which material is laid down in successive layers to create an object. The technology has been around since the 1980s but only became affordable for the general public in the past five years. Typically, 3D printers are used to make prototypes — for example architectural models or machine parts — or to manufacture one-off objects without the need to turn to mass production methods. But the technology is evolving quickly and, according to The Guardian, “20% of the output of 3D printers is now final products rather than prototypes.”

    For international development, 3D printing offers the potential to close the gap between what is available in developed and developing countries. Just as the Internet has closed the knowledge gap, and enabled people around the world to access news and knowledge at the same time, so 3D printing could make it possible for technological innovations to be available everywhere. Just upload the digital plans for an object, and people can download them and print the item, wherever they are.

    Some of the more enthusiastic proponents of 3D manufacturing see it as a game-changer in access to technology. They argue it could eliminate material want and place the power of manufacturing in the hands of billions, in the same way the rapid proliferation of mobile phones and the Internet transformed access to information. That is the dreamers’ dream, but it is closer than many think.

    The conflict in the new nation of South Sudan, which separated from the Republic of the Sudan in 2011, continues and involves UN peacekeeping forces (http://unmiss.unmissions.org). The violence has killed over 10,000 (International Crisis Group) and injured many more, ruining lives through lost limbs and capabilities. One young boy, Daniel Omar, 16, lost both his hands while trying to use a tree trunk to shield himself from an exploding bomb. Losing his hands was devastating enough, but he was also so depressed at not being of full use to his family that he wished he had died that day.

    He is not alone in being harmed by the conflict. In total, an estimated 50,000 people in South Sudan are physically disabled, according to the International Committee of the Red Cross (ICRC).
    Prosthetic limbs are very expensive and so far are not a priority for medical services in the country. Saving lives is the priority, with rehabilitation an expensive luxury.

    This is where Not Impossible Labs (notimpossiblelabs.com), based in Los Angeles, California, came in. The non-profit startup founded by Mick Ebeling specializes in “crowd-sourcing to crowd-solve previously insurmountable healthcare issues.” The solutions are then made public on the Internet and explained in online media to help innovators either replicate the solutions or be inspired to come up with their own ideas.

    The lab’s ingenious solutions include BrainWriter – a way to draw using brainwaves and a computer mouse that can allow disabled artists to carry on creating. Not Impossible Labs also developed a high-tech cane for the blind that draws on sonar technology and a laser to navigate the terrain and foresee upcoming obstacles.

    Emotionally touched after learning about Daniel’s plight, Ebeling decided to act.
    “I’ve got three little boys,” Ebeling told The Guardian newspaper. “It was hard for me to read a story about a young boy who had lost his arms.”

    Project Daniel (http://www.notimpossiblelabs.com/#!project-daniel/c1imu) set out to manufacture artificial hands for Daniel without him having to leave his country and his family. Daniel was living between the Yida refugee camp in South Sudan and his home in the Nuba Mountains.

    A team from Not Impossible Labs set up the 3D printing lab in the Nuba Mountains and trained and supervised the local team to print two prosthetic arms. The design for the arm was done in the U.S. at its headquarters in Venice, California and is available for free and is open source (http://en.wikipedia.org/wiki/Open_source). A “dream team of innovators” were assembled – including the South African inventor of the Robohand (http://www.robohand.net/), an Australian MIT (Massachusetts Institute of Technology) neuroscientist and a 3D printing company owner from Northern California – to crowd-solve the challenge of making a 3D-printable prostheses. A precision engineering company, Precipart (precipart.com/home), and Intel were also drafted in to support the project.

    Not Impossible believe the spirit behind the project will be globally transformative.

    “We are on the precipice of a can do maker community that is reaching critical mass,” said Elliot V. Kotek, Not Impossible’s content chief and co-founder. “There is no shortage of knowledge, and we are linking the brightest technical minds and creative problem-solvers around the globe. Project Daniel is just the tip of the proverbial iceberg.”

    Daniel’s new artificial arm and hand took a 3D printer several days to make and cost around US $100.

    In November 2013, Ebeling travelled to South Sudan with all the equipment required to “print” Daniel a new arm: 3D printers, spools of plastic and cables.

    The plastic arm printed by the 3D printer works by allowing the wearer to flex what remains of their arm to pull various cables that act as ligaments, like in a real limb. When the user flexes and bends, the cables pull back and in turn make the fingers close and open.

    It is not a solution for every amputee. “With the technology we currently have it’s hard to help people with no arm left,” said Kotek. “There needs to be at least a little bit of a stump.”

    Shy at first, once Daniel saw the arm, he was transformed. “It was a pretty amazing thing to see this boy come out of his shell,” said Ebeling. “Getting Daniel to feed himself was a highlight that was right up there with watching my kids being born.”

    Even more impressive has been the quick adoption of the technology by the local doctor, Dr. Tom Catena, who performs all the amputations in the area.

    With two 3D printing machines left behind by Ebeling, Dr. Catena has been able to print a prosthetic arm a week.

    The machines mostly work at night when it is cool. The printer parts are then assembled by eight local people trained to operate the machines and build the arms.

    But how do they ensure, over time, this 21st-century technology doesn’t just fall into disrepair and neglect as has been seen time and again with other attempts at technology transfer? Weekly phone calls are made to check on the project and the plastic used to make the arms is sent directly from Not Impossible Labs.

    And then there is community buy-in.

    “At first these kids wanted arms that matched their skin tone, because they didn’t want to stand out,” said Kotek.

    But in time the youths have been decorating the arms in many colors and customizing them. And the arms have been given a name: the Daniel Arm.

    Published: May 2014

    Resources

    1) The pioneer behind developing 3D technology has been the Massachusetts Institute of Technology’s Fab Labs based in the United States. It has been running experimental “Fab Labs” across the global South for the past few years, experimenting with ways to apply this technology to the challenges of development and to use this technology to turn people on to the power of technology to solve problems. These experiments have explored how a 3D printer could print everything a small community could require but would otherwise be expensive or difficult to purchase through normal markets. Fab Lab is the educational outreach component of MIT’s Center for Bits and Atoms (CBA), an extension of its research into digital fabrication and computation. Website: http://fab.cba.mit.edu/

    2) 3D Systems: 3D Systems envisions a future in which 3D printing will return humanity to a heritage of personalized, localized craftsmanship and improve quality of life. A new industrial revolution changing the human experience from health care to entertainment. Website: 3dsystems.com

    3) MakerBot: MakerBot makes a range of 3D printers for consumers. Website: makerbot.com

    4) Stratasys: Stratasys manufactures 3D printing equipment and materials that create physical objects directly from digital data. Its systems range from affordable desktop 3D printers to large, advanced 3D production systems, making 3D printing more accessible than ever. Website: http://www.stratasys.com/

    5)  3D Printing and Technology Fund: The Fund seeks long term capital appreciation through focused investment in global 3D printing and technology companies. Website: http://www.3dpfund.com/

    6) Digital Revolution: An Immersive Exhibition of Art, Design, Film, Music and Video Games: Running from July to September 2014 at the Barbican Centre in London, UK. Website: https://www.barbican.org.uk/bie/upcoming-digital-revolution

    https://davidsouthconsulting.org/2021/03/02/new-3d-technology-makes-innovation-breakthrough-and-puts-mind-over-matter/

    https://davidsouthconsulting.org/2022/09/26/3d-home-printing-landmark-10-houses-in-a-day/

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    This work is licensed under a
    Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

    ORCID iD: https://orcid.org/0000-0001-5311-1052.

    © David South Consulting 2023

  • 3D Home Printing Landmark: 10 Houses in a Day

    3D Home Printing Landmark: 10 Houses in a Day

    By David SouthDevelopment Challenges, South-South Solutions

    SOUTH-SOUTH CASE STUDY

    The global South is experiencing urban growth on a scale unprecedented in human history, far outstripping the great urbanization wave that swept across Europe and North America during the 19th and 20th centuries.

    Faced with growth at this pace, governments – both national and local – often become overwhelmed by the rate of change and find it difficult to cope. One of the most common complaints urban-dwellers around the world have is about their living conditions. Even in developed countries, creating enough housing to match demand can be a struggle.

    Quality housing is crucial to human development and quality of life. Adequate living space and access to running water make a significant contribution to people’s health and well-being. Despite this obvious conclusion, millions of urban dwellers live in squalid conditions with poor sanitation, overcrowding, crime, pollution, noise and a general feeling of insecurity. Insecure people find it difficult to access stable jobs and suffer stigma for living in poor-quality neighbourhoods.

    But many initiatives are seeking to speed up the pace of home construction.

    These include the Moladi construction system from South Africa (moladi.net). Moladi uses moulds to assemble houses, so that the building skills required are minimal and easily learned. Built to a template that has been tested for structural soundness and using a design that produces a high-quality home both in structure and appearance, the Moladi system seeks to provide an alternative to makeshift homes that are structurally unsound and vulnerable to fires, earthquakes and other natural disasters.

    Another clever approach is a home and dwelling assembly system developed by architect Teddy Cruz (http://estudioteddycruz.com) (http://visarts.ucsd.edu/faculty/teddy-cruz) that allows slum dwellers to gradually construct a building in stages as they can afford it. It is earthquake-safe and fire resistant.

    Another approach turns to the fast-growing technology of 3D printing (http://en.wikipedia.org/wiki/3D_printing). This technology has gone mainstream in the past five years in the form of desktop-sized 3D printers, or fabricators as they are sometimes called. The machines assemble objects in an additive fashion – layer-by-layer – using digital designs from a computer.

    3D printers can make a complex object without having to resort to mass manufacturing. An accurate, one-off object can be created with the same precision as a machined object. Architects, for example, use the technology to make 3D models of their designs. And now a company in China is hoping to use 3D printers to make houses.

    The WinSun Decoration Design Engineering Co. (http://www.yhbm.com/index.aspx) 3D printed 10 houses in 24 hours in Shanghai’s Qinpu district, reported Business Insider.

    This landmark achievement was accomplished with a giant printer – 152 meters long, 10 meters wide, and 6 meters high – which manufactured walls for the house from a mix of construction waste and cement.

    As a sign of the confidence the company has in the innovative construction technique, it built its own 10,000 square meter headquarters in one month using the same materials. The company’s chief executive officer, Ma Yihe, is also the inventor of the technique. It is a very flexible technology and the material can be tinted different colors according to the customer’s wishes. It is cheap to work with and is also less draining on environmental resources than traditional building materials.

    The 10 houses consist of two concrete side supporting walls with glass panels at the front and back and with a triangle roof. They will be used as offices at a high-tech industrial park in Shanghai. The company has big plans, hoping to use the technology to build more homes – and even skyscrapers.

    Competition is heating up as people around the world seek to perfect 3D technology to print houses to meet the growing demand for dwellings.

    In The Netherlands, Dutch architectural firm Dus Architects (dusarchitects.com)  commissioned the development of a leviathan 3D printer so it could print entire rooms. Modeled on a much smaller home desktop version, the Ultimaker (ultimaker.com), this printer creates whole rooms that are then assembled into custom-built houses.

    The 6-meter high KamerMaker (kamermaker.com), or “room builder”, is being used in Amsterdam to build a full-size house.

    The project is called “3D Print Canal House” (http://3dprintcanalhouse.com/). The printer assembles the rooms individually, and then they are snapped together to make a house. The internal structure of the building blocks are in a honey-comb pattern, which is then filled with a foam that becomes as hard as concrete.

    “For the first time in history, over half of the world’s population is living in cities,” Dus Architects founder Hans Vermeulen told cnet.com. “We need a rapid building technique to keep up the pace with the growth of the megacities. And we think 3D printing can be that technique.

    “We bought a container from the Internet and we transformed it into one of the biggest printers on this planet.”

    This technology can also easily use recycled waste materials and lower the pollution and cost of moving building materials around. The Dus Architects prototype house is expected to take three years to complete (so, still in its early development phase) and will look like a typical Dutch canal house with a pointy, gabled roof (http://www.build.com.au/gabled-roof).

    One of the pioneering advocates for using 3D technology to address the global South’s urbanization and housing challenge has been Larry Sass, director of the Digital Design Fabrication Group (http://ddf.mit.edu/) at the Massachusetts Institute of Technology (MIT).

    Three technologies have been developed at MIT since the 1950s that have made digital fabrication possible – computer numerical control (CNC), which enables computers to control machines; computer-aided design software in the 1960s; and 3D printing in the 1980s to make solid models using digital designs.

    Sass told MIT’s Spectrum newsletter (spectrum.mit.edu) that large-scale 3D printing would mean “buildings will rise faster, use fewer resources, cost less, and be more delightful to the eye than ever before.”

    He envisions a future in which architects will be able to send their designs by computer to a 3D printer and it will then be able to start “printing” the building or a house accurately according to the original designs.

    The conventional way of making buildings has been stuck in the same approach since the 1800s, according to Sass. It uses highly skilled and extensive labour, it is slow and plagued by weather disruptions and urban congestion, and it is expensive, often using materials brought from far away.

    Digitally fabricating buildings takes a radically different approach: the building is made in a series of precision-cut, interlocking parts and then assembled on site like a jigsaw puzzle.

    “It’s the right delivery system for the developing world, because the developing world doesn’t have an infrastructure of tools, air guns, saws and power,” Sass said.

    “Design and high-quality construction is mostly for the rich,” added Sass, who was raised in Harlem, a New York City neighbourhood with high poverty levels. “I’ve always wanted to figure out how to bring design choice and architectural delight to the poor.”

    Published: July 2014

    Resources

    1) 3D Printing Technologies: A website exploring the development of 3D technology. Website: http://www.3d-printing-technologies.com/index.html

    2) Sweet Home 3D: An open source, free interior design software application that allows users to draw the plan of their house, arrange furniture and view in 3D. Website: sweethome3d.com

    3) A video showing how it was done is here: http://www.businessinsider.com/this-video-shows-how-a-company-3-d-printed-10-houses-in-a-day-2014-4.

    4) 3-D Printed Buildings for A Developing World from MIT’s Spectrum. Website: http://spectrum.mit.edu/articles/3-d-printed-buildings-for-a-developing-world/


    This work is licensed under a Creative Commons Attribution 4.0 International License.

    ORCID iD: https://orcid.org/0000-0001-5311-1052.

    © David South Consulting 2023

  • Opinion: Canada is allowing U.S. to dictate Haiti’s renewal: More news and opinion on what the UN soldiers call the “Haitian Vacation”

    Opinion: Canada is allowing U.S. to dictate Haiti’s renewal: More news and opinion on what the UN soldiers call the “Haitian Vacation”

    By David South

    Id Magazine (Canada), August 22 to September 4, 1996

    An August 19 attack on the Port-au-Prince police headquarters by pissed-off former Haitian soldiers should be a wake up call to Canadians. So far, the Haiti UN mission has seemed as safe as the soldiers’ quip, the “Haitian Vacation”. The UN soldiers patrol the capital in rickety Italian trucks, stopping to chat with the locals. On the surface, this mission looks like summer camp compared to the nightmare of enforcing peace in the former Yugoslavia.

    But for one crucial factor: The UN troops are propping up an increasingly unpopular government. A government that is seen by many Haitians to be getting its orders from Washington, not Port-au-Prince. Canadian troops lead the UN mission in Haiti and make up 700 of the 1500 soldiers stationed there (the rest are from Pakistan and Bangladesh). There is a serious danger they will be caught in the crossfire of any uprising or coup attempt.

    Canadian troops shadow president Rene Preval 24 hours a day and also guard the National Police. When I visited the dilapidated palace in July, with its handful of Canadian troops banging away on laptop computers, I could only hope nobody will want to mess with the UN.

    The two prongs of Haitian renewal – reforming the economy and the justice system – are both being directed by the U.S.. Haitian senator Jean-Robert Martinez had a theory about the August 19 attack, which killed a shoeshine boy. Martinez believes it was in retaliation for government plans to privatize Haiti’s rotting nationalised industries – a condition for receiving loans from the U.S. and the Washington-based International Monetary Fund and the World Bank.

    Haiti is a good example of the carnage of cynical U.S. foreign policy. The U.S. wooed and then coddled the corrupt Haitian elite to run its sweatshops. As the “development” organization USAID once said, Haiti could be the “Taiwan of the Caribbean”. The U.S. trained the Haitian death squad Front pour l’Avancement et le Progres Haitien (FRAPH), who then littered the outskirts of Port-au-Prince with the bodies of former president Jean-Bertrand Aristide’s supporters during the dark days of the 1991 coup.

    Three weeks ago American troops from the 82nd Airborne plopped down on the streets of Port-au-Prince to spend a week patrolling. What kind of message does this send? This tells the Haitians that the UN isn’t the real deal; that if they get out of line, the Americans will kick their butts. Why does Canada allow the U.S. to undermine the credibility of our peacekeeping mission?

    More visits by the Americans can be expected. It is no accident that a medical team attached to the 82nd Airborne remains on duty at the American base in Port-au-Prince.

    The so-called justice reforms are mostly window dressing. Canada spent $4,750,000 to build and renovate court houses for the same corrupt judges that were the problem in the first place. That’s the equivalent of punishing a thief by buying him/her some new furniture.

    Rather than telling the Haitians to tighten their buckles around hungry bellies, Canada should be leading the fight to pave roads and provide clean water and social services to all. Canada should not be helping to impose austerity economics on the Western hemisphere’s poorest country.

    David South is the Features Editor of id Magazine

    “U.S. Elections Update: Clinton is using Canada to keep control of Haiti”.
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    © David South Consulting 2022

  • Medical museum makes plans for future

    Medical museum makes plans for future

    By David South

    Hannah Institute for the History of Medicine Newsletter (Toronto, Canada), Number 20, Spring, 1994

    Being charged with setting up a high-calibre national medical museum isn’t easy in the best of times. The new Canadian Museum of Health and Medicine’s curator Felicity Pope wants things done right in these recessionary times. 

    Now housed at The Toronto Hospital (TTH), the museum’s collection was relocated in 1992 after severe water damage, and the unsure future of the Academy of Medicine, Toronto jeopardized the artifacts in their previous location. 

    Rather than having the valuable collection collect dust, a major project began to create Canada’s first national medical museum. With AMS/Hannah Institute, Academy of Medicine, Toronto and TTH support, Pope is making detailed plans to ensure the museum is an educational success. 

    “The project is to create a major medical museum in Canada,” says Pope, who is working out of the public relations office at TTH. “I’m in the midst of a planning study and haven’t unpacked the collection yet because the storage rooms aren’t ready. I’m doing a market and visitor analysis to project how many visitors will come to see the collection.”

    “We have guiding principles for the museum. We will have a completely new vision and mandate from before, with a new research and exposition policy. With the museum’s name there come many expectations.”

    Pope says the museum will need to fundraise from corporations to be viable. And the elaborate plans will help convince potential donors of the museum’s worthiness. 

    Artifacts also abound at the University of Western Ontario 

    Medical history students should consider a trip to the Department of History of Medicine at the University of Western Ontario to see another unique collection of artifacts  and documents from Canada’s medical past. 

    Once located in London’s University Hospital, the artifacts are now technically on loan to the university. Hannah Professor Paul Potter recently assumed responsibility for the collection when University Hospital closed the museum. 

    “The collection has been created over the ages,” says Professor Potter. “The museum started at University Hospital when it was built in the early 1970s. Two rooms were set aside at the hospital for a medical museum – one room was a re-creation of a nineteenth-century doctor’s office with numerous instruments.”

    The actual doctor’s office was packed off to the local pioneer village. 

    “We took the medical instruments and doctors’ ledgers. I took the things that were more interesting from a medical history perspective.”

    And what’s there to see? For shock value there are the gruesome instruments of Victorian medicine – bloodletting knives and cups and surgical saws. Also on display is London’s first electro-cardiogram machine and microscopes dating back to the mid-1800s. 

    For Professor Potter, the collection livens up medical school lectures and provides a valuable research resource at the university.

    Creative Commons License

    This work is licensed under a
    Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

    ORCID iD: https://orcid.org/0000-0001-5311-1052.

    © David South Consulting 2022