Originally posted by Bullrush
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Illuminati Compilation
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Originally posted by Bullrush View PostAgain, why would I want to be chipped? What's the point?! Just for the sake of chipping me? That's ******ed! There has to be a reason! Tell me WHY and I'll give you an answer.
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Originally posted by takingaim View PostYou're avoiding answering the question, and I know why. Just answer it - would you allow your child to be micro-chipped - YES OR NO?
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Originally posted by Bullrush View PostI can't answer it because it makes no sense. There has to be a reason why. If it saves my life, keeps me from becoming sick somehow, whatever, then obviously I'd do it. If it's for no reason at all of course I wouldn't do it. What exactly is the point? What does that have to do with Illuminati?
You're avoiding answering the question for one reason... and we'll get to that.
Let's say your bank details are all on this microchip, so when you go to the shop, you just pick up what you want and walk out the door. As you walk out the door you pass scanners which read the barcode of what you've picked up and the value of the products you've passed through the scanners with is taken out of your bank account... it's quick & convenient... but, you can also be tracked, wherever you go in the world. Would you have it done, yes or no?
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Originally posted by takingaim View PostHow on earth would a micro-chip save your life??!!?!
Originally posted by takingaim View PostLet's say your bank details are all on this microchip, so when you go to the shop, you just pick up what you want and walk out the door. As you walk out the door you pass scanners which read the barcode of what you've picked up and the value of the products you've passed through the scanners with is taken out of your bank account... it's quick & convenient... but, you can also be tracked, wherever you go in the world. Would you have it done, yes or no?
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Originally posted by takingaim View PostHow on earth would a micro-chip save your life??!!?!
Published Wednesday 19 March 2008
A tiny, highly sensitive device that could give medics a head start in testing for a range of diseases is being developed by engineers at the University of Leeds.
Diagnostic devices work by identifying certain proteins in blood or urine that are associated with certain diseases. The Leeds device is more than ten times smaller than existing models while offering the accuracy and sensitivity required for clinical diagnostics - and the researchers believe the technology could allow them to reduce the size much further still.
"Size is as important as accuracy for these devices," explains Dr Christoph Wälti. "With new born babies, for example, only small amounts of blood can be taken for tests, so any sensor has to be able to detect a large range of proteins with only a small test area to work from."
Dr Wälti and Professor Giles Davies from the University's Faculty of Engineering used an array of electrodes as the base of their device rather than the conventional glass slide. The individual electrodes are created using the same technology used to produce modern microchips, so are very small and very closely spaced, currently about 10 micrometers apart - although this can be significantly reduced.
Conventional techniques use antibodies as receptors on their sensors to bind to the target proteins - but these are not very stable when attached to a sensor and tend to lose their specificity.
So Dr Paul Ko Ferrigno, formerly from the MRC Cancer Cell Unit in Cambridge, and now at the Leeds Institute of Molecular Medicine, created an artificial robust antibody called a 'peptide aptamer' that is so stable that it can be attached to the electrodes and still bind to a specific target protein.
The Leeds researchers then devised a technique to attach different peptide aptamers to individual electrodes with very high precision. The electrodes are individually wired, so when the proteins of interest from samples such as blood bind to their associated peptide aptamer, an electronic signal is generated. This is far more informative than the conventional microarray system, which relies on labelling of the proteins in the sample with fluorescent tags, and using optical techniques to detect these tags.
Because the basic technology of the new device is similar to that used widely within the computer industry, the researchers believe that the number of sensors in their system could be scaled up for use commercially - with the device itself taken down to nanoscale size for use with very small samples.
"Using semiconductor technology provides huge advantages," said Professor Davies. "While conventional systems often use technology similar to that found in ink jet printers to pattern the arrays, they face problems when it comes to testing for large numbers of proteins from small sample volumes. Our invention overcomes these problems by providing a greater number of sensors within a smaller area, an effective electronic analysis, and a very robust sensor molecule to identify the target proteins."
The research is published in Journal of Biology.
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Originally posted by Bullrush View PostWho'd be ******/lazy enough to let somebody put a piece of metal into their body to get tracked at all times just so he doesn't have to pull out his wallet?
Why would you be against having a micro-chip inserted into your body so you could be tracked everywhere you go?
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Originally posted by Kulilin View PostMicrochip could aid in future disease diagnosis
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