This Low-Cost 3-D Printer Can Produce Human Organs And Bones http://t.co/IGxjoJUHQS biofabrication goes into garages pic.twitter.com/BDALQmiBLb
— Ross Dawson (@rossdawson) August 20, 2015
Scientific MOOCs follower. Author of Airpocalypse, a techno-medical thriller (Out Summer 2017)
Welcome to the digital era of biology (and to this modest blog I started in early 2005).
To cure many diseases, like cancer or cystic fibrosis, we will need to target genes (mutations, for ex.), not organs! I am convinced that the future of replacement medicine (organ transplant) is genomics (the science of the human genome). In 10 years we will be replacing (modifying) genes; not organs!
Anticipating the $100 genome era and the P4™ medicine revolution. P4 Medicine (Predictive, Personalized, Preventive, & Participatory): Catalyzing a Revolution from Reactive to Proactive Medicine.
I am an early adopter of scientific MOOCs. I've earned myself four MIT digital diplomas: 7.00x, 7.28x1, 7.28.x2 and 7QBWx. Instructor of 7.00x: Eric Lander PhD.
Upcoming books: Airpocalypse, a medical thriller (action taking place in Beijing) 2017; Jesus CRISPR Superstar, a sci-fi -- French title: La Passion du CRISPR (2018).
I love Genomics. Would you rather donate your data, or... your vital organs? Imagine all the people sharing their data...
Audio files on this blog are Windows files ; if you have a Mac, you might want to use VLC (http://www.videolan.org) to read them.
Concernant les fichiers son ou audio (audio files) sur ce blog : ce sont des fichiers Windows ; pour les lire sur Mac, il faut les ouvrir avec VLC (http://www.videolan.org).
Upcoming books: Airpocalypse, a medical thriller (action taking place in Beijing) 2017; Jesus CRISPR Superstar, a sci-fi -- French title: La Passion du CRISPR (2018).
I love Genomics. Would you rather donate your data, or... your vital organs? Imagine all the people sharing their data...
Audio files on this blog are Windows files ; if you have a Mac, you might want to use VLC (http://www.videolan.org) to read them.
Concernant les fichiers son ou audio (audio files) sur ce blog : ce sont des fichiers Windows ; pour les lire sur Mac, il faut les ouvrir avec VLC (http://www.videolan.org).
Affichage des articles dont le libellé est 3D PRINTING. Afficher tous les articles
Affichage des articles dont le libellé est 3D PRINTING. Afficher tous les articles
This Low-Cost 3-D Printer Can Produce Human Organs And Bones
Organ-on-a-chip
Organ-on-a-chip going mainstream http://t.co/pTYdFp0wZX status report from @Sara_Reardon @NatureNews @ncats_nih_gov pic.twitter.com/49oeM5yXho
— Eric Topol (@EricTopol) July 15, 2015
What if the 3rd industrial revolution was about life?
What if the 3rd industrial revolution was about life? #organ #printing & #gene #therapy at the #HTC2015! pic.twitter.com/Et4lf1bSf4
— Hello Tomorrow (@hellotmrc) 18 Mai 2015
Feeling honored to be invited at @hellotmrc Conf as Press http://t.co/vYXTcdAtGV #grateful TY @duportet! http://t.co/iPFhkkYtEh #HTC2015
— CATHERINE COSTE (@cathcoste) 22 Mai 2015
Medicine 2064 with Daniel Kraft MD
. @vkhosla on Implications of Wearables: 10k vital sign data points from your wrist will re-write medical textbooks pic.twitter.com/81Y5Yqx86O
— Daniel Kraft, MD (@daniel_kraft) September 16, 2014
"E-Nable. Making prosthetic hands by 3D printing. Posting a map on www of people with printers volunteering to print"
#enablingthefuture #prosthetics #MedX pic.twitter.com/KrOJdSXtyL
— Karen Anaid Solis (@karenasolis) September 5, 2014
E-Nable. Making prosthetic hands by 3D printing. Posting a map on www of people with printers volunteering to print. #MedX @clinicalinnovat
— aNNaThies (@aNNaThies) September 5, 2014
Major 3D Printed Organ Breakthrough: Vascular Networks Achieved
Major 3D Printed Organ Breakthrough: Vascular Networks Achieved http://t.co/4KfRlu5O2e
— Jean Michel Billaut (@Billaut) July 1, 2014
Major 3D Printed Organ Breakthrough: Vascular Networks Achieved - http://t.co/NN70rNeCup pic.twitter.com/8guHUJiMRW
— 3D Print .com (@3DPrintBoard) July 1, 2014
"First Ever Opposite Lung, Living Donor Lung Transplant Takes Place Thanks to 3D Printing"
First Ever Opposite Lung, Living Donor Lung Transplant Takes Place Thanks to 3D Printing - http://t.co/jimPcJ9iTP pic.twitter.com/8la4WwT1Xt
— 3D Printing News (@3DNewsNow) May 19, 2014
"3D Printed Artificial Kidneys Created By UConn Students"
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| http://www.nuviun.com/blog/3D-Printed-Artificial-Kidneys-Created-By-UConn-Students |
@UConnEngineer Students Create 3D Printed Artificial #Kidneys - http://t.co/JTnTlJ6oTE #digitalhealth #3Dprinting #Technology #mhealth
— nuviun (@Nuviun) May 15, 2014
.@UConn students 3D print a pair of artificial kidneys: http://t.co/5sP7ZfQ03r #Atmel #3DPrinting pic.twitter.com/OxHi8PJ8YN
— Atmel University (@AtmelUniversity) May 13, 2014
"If successful, the project can provide a low-cost but effective
alternative to the approximately 2 million people who are on renal
replacement therapy worldwide.In the GCC countries, there is scarce data about ESRD incidence rates, but a 2012 meta-study said that 'Many reports have provided evidence of increasing prevalence of the most common causes of ESRD in the GCC such as obesity, hypertension, and diabetes.'
According to the study, majority of ESRD patients in the GCC countries are on hemodialysis. They would benefit from receiving 3D artificial kidneys if the technology ultimately makes it possible to receive these organs with similar risk compared to receiving real kidneys.
There have been many studies demonstrating how 3D printing technology can go beyond the hype and into applications that impact healthcare, particularly replacing body parts with 3D printed ones, even transplanting live kidneys and livers straight from a 3D printer.
The UConn project recalls to mind a recent, similar project by Japanese surgeons who created 3D-printed tumor-containing kidneys for simulated cancer surgery. Other scientists have also shown how a 3D model of a tumor itself can provide clues to curing cancer.
Other studies demonstrated successful implantation of a 3D printed skull, as well as the creation of 3D-printed artificial eyes, noses and ears." (Source)
FDA approves first prosthesis controlled by muscle electrical signals
FDA approves first prosthesis controlled by muscle electrical signals http://t.co/xw9c2KmOqn pic.twitter.com/phMpbs94lt
— Gizmodo (@Gizmodo) May 10, 2014
Medical Use of 3D Printing Will Ignite Major Ethical Debate
Medical Use of 3D Printing Will Ignite Major Ethical Debate http://t.co/rB6TztaOpT
— Jean Michel Billaut (@Billaut) May 10, 2014
10 Breakthrough Technologies
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| http://www.technologyreview.com/lists/technologies/2014/ |
Les 10 technos 2014 #MIT: drones agricoles, devices privés, brain maps, 3D, smart power... http://t.co/TuCNttM82c pic.twitter.com/ZOWXkFJRxh
— Thomas Kerjean (@thomasjkerjean) April 29, 2014
Neuromorphic chips: "blurring the line between silicon and biological systems" @techreview @qualcomm http://t.co/8tMrFkOOdy
— Neuro Games (@NeurogameConf) April 29, 2014
Another step towards 3D printing functional body parts: Harvard researcher prints vascular system. This is a... http://t.co/mctArgY4zM
— Robert Tercek (@Superplex) April 28, 2014
Just 2 of the possible use cases for #microscale #3DPrinting: artificial organs and novel cyborg parts. http://t.co/suAnd6kZZp @techreview
— Brett Haase (@brett7three) April 28, 2014
"About A Boy: 3D Printed Heart Model Saves Young Life"
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| http://www.forbes.com/sites/tjmccue/2014/02/26/about-a-boy-3d-printed-heart-model-saves-young-life |
Using data from thousands of cross-sections of hospital X-rays, Gornet chose a flexible polymer known as ‘Ninja Flex’ to create a 3-D model. In about 20 hours on a $2,500 printer, he created a replica of the heart at a cost of about $600.
The world of bioprinting is rapidly changing how we think about healthcare and healing. In this young boy’s case, his heart was modeled with 3D software, and that helped surgeons see the problems and create solutions before the critical moments of surgery. Stanford researchers have been reporting progress on modeling the heart and other organs.
Scientists and doctors are teaming up all around the world to print organs, layer by layer, with 3D printing technologies. From 3d printed livers at San Diego-based bio-printing company Organovo to 3d printing skin cells at Wake Forest University, all from your own cells.
The story of this 14 month-old baby is inspiring
and amazing, if you pause to think about it. By thinking about other
options, surgeon Erle Austin found a way, via a savvy engineering team
with a MakerBot 3d printer, to save the child before he started the
critical surgery.
Explore the human heart from the web browser on your touch tablet or mobile phone. Welcome to the world of HTML5. No…http://t.co/oBnhCacDem
— sylvain ordureau (@usefulprogress) March 13, 2014
Breakthrough of 3D Printing DNA in Cancer Prescription
How @autodesk is trying to innovate #cancer Rx w/3D printing DNA @cadnano http://t.co/Y87s0fWNb4 @BW #genomics pic.twitter.com/NOyUpP8jhi
— Eric Topol (@EricTopol) March 22, 2014
"Robot surgeons, BART trains, 3D printers and drones, oh my!"
#Robot surgeons, BART trains, #3Dprinters and drones, oh my! @carlbass #sxsw #RobotRev pic.twitter.com/dHsCZ0iZ9s
— Autodesk (@autodesk) March 8, 2014
Toys and games company @MakieLab makes 3D printed toys that are game enabled
Toys and #games company @MakieLab makes #3Dprinted toys that are game enabled: http://t.co/DpUUVVdVET pic.twitter.com/TgoQVSBeBE
— Autodesk (@autodesk) March 19, 2014
3-D Printing Blood Vessels into Artificial Tissues Could Eliminate Need for Donor Organs
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| http://www.technologyreview.com/news/525161/artificial-organs-may-finally-get-a-blood-supply/ |
3-D Printing Blood Vessels into Artificial Tissues Could Eliminate Need for Donor Organs http://t.co/uXUWLfc3f8
— Jean Michel Billaut (@Billaut) March 6, 2014
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