Does your faith need strengthening? Are you confused and wondering if Jesus Christ is really "The Way, the Truth, and the Life?" "Fight for Your Faith" is a blog filled with interesting and thought provoking articles to help you find the answers you are seeking. Jesus said, "Seek and ye shall find." In Jeremiah we read, "Ye shall seek Me, and find Me, when ye shall seek for Me with all your heart." These articles and videos will help you in your search for the Truth.

Saturday, April 11, 2015

Inside The Growing “Human Chipping” Movement


Dominique Nora, L’Obs, April 8, 2015

COPENHAGEN–Anders Hoeg Nissen sits in a black medical chair in the backroom of a Copenhagen piercing studio. He puts his left hand on the gauze that covers the armrest and, pushing his head backwards, he hits the lamp that lights the operating area. “Ouch! That probably hurt more than what they’ll do to me,” he says.

Jowan Österlund, a beefy man with his left arm covered in tattoos, raises a 10-centimeter-long syringe between his pink rubber gloves. Its needle is at least three times as thick as those used to take blood samples. Österlund pinches the flesh on the top of Nissen’s hand.

“Take a deep breath,” he tells Nissen, before quickly burying the needle between his thumb and his forefinger.

Three seconds later, Österlund says, “Congratulations, you’ve been upgraded!”

Whether this means “improved” is debatable. But what’s certain is that Nissen is now implanted with a radio-frequency identification (RFID) chip the size of two grains of rice. It’s not unlike those used in cats and dogs to ensure their owners can be reached should they get lost.

Is this the first step towards the man-machine, the fantasy of transhuman technology fanatics? “I’ve always dreamed of becoming a cyborg,” jokes Nissen, a radio broadcaster who hosts a technology show. “I have a real personal and professional interest in exploring man-machine interfaces,” he says more seriously.

About 10 people curious about the process, all of them young men, are attending tonight’s “implant party.” But only two of them are actually taking the plunge, coughing up about 200 euros, after-sales advice included.

The second daredevil is none other than the studio’s owner, Muffe Vulnuz. His own look is extreme indeed, with large parts of his body covered with piercings and tattoos, as well as horns on his head and other silicon shapes under his skin. For his birthday, he decided to gift himself two chips.

“Human chipping” is moving out of the marginal spheres of biohacking pioneers and into that of body-implant lovers, and it’s seducing a geeky youth free of all taboos. But just what is the point of such technology?

For now, the chip’s use is similar to that of the plastic loyalty cards that we use to get discounts at the supermarket. When placed in front of a communication reader, the device emits in short waves (13.56 MHz) the unique identification number of its owner.

The reading device can be programmed to execute different tasks–for example, to unlock a door or to start an electronic device like a printer, a computer or a smartphone. “I have two chips,” Österlund explains. “The one in my arm calls my wife when I move my cellphone closer to it. And the one on my hand activates the light.”

Other “chipped” people also use it to send their virtual business card to compatible smartphones. Apps such as NFC Tools Pro on Android can read and edit these electronic labels, which have a capacity of 880 bytes. Bikers can use them so that their motorbikes start when they touch them.

“We’re clearly pioneers,” says a conventionally clad Hannes Sjöblad, the event’s organizer. He’s the co-founder of Swedish biohacking group BioNyfiken. Biohackers are ordinary citizens who explore biology with hacker ethics, meaning sharing and openness. “For now, there are only a handful of possible uses,” Hannes says. “But the more people adopt chips, the more companies and public institutions will be encouraged to develop new features.”

He says the number of disciples is constantly growing. “Here alone, we have already implanted about 300 people since September,” he says. But his main supplier, the U.S. website DangerousThings.com, has a more global overview of the phenomenon. “I sold about 4,000 of these chips over the past year, most of them in the U.S., the Netherlands, Sweden, Finland and Belgium,” says the website’s creator Amal Graafstra. “And even a few in France.”

Graafstra fears this technology could be developed in a closed way by companies such as Honeywell, and so he opted for the open ISO standard instead. “I created this online shop because I had been using these technologies myself since 2005,” he explains during a Skype interview. “I realized when I was talking to suppliers that people were implanting themselves with chips created for livestock or industries, which sometimes contain toxic substances and metals!”

Overwhelmed with people asking for advice, the Seattle native says he then developed “safe material and procedures,” which he now sells. “Unlike RFID chips for livestock, mine are made so that human flesh doesn’t stick to it, which means they can easily be removed.”

Sjöblad is also convinced that beyond these first applications, the “connected body” has a great future ahead. “We carry with us loads of personal objects–bank cards, driving licences, library cards, house keys, office keys, car keys, which have no other goal than to identify us. Eventually, we’ll be able to get rid of all that and to replace them all with one unique digital identification.”

He believes that in the near future, these intelligent implants will enable us to pay for coffee or dinner, to take the bus or the subway, to keep our cholesterol level in check, and so on. In his view, the two most promising areas are health and data encryption. Eventually, he sees these chips replacing smart watches and bracelets. He goes further and also imagines that the technology will eventually be the door-opener to our entire digital life, replacing the dozens of codes and passwords we all struggle to remember.

Hannes gets carried away. “These implants will be like our internal organs, our kidneys, our livers, and they’ll fulfil their purpose without us even thinking about it,” he says. Does he dream of living in a world where people become numbers, trackable entities whose every actions can be recorded? “On the contrary,” he insists. “It’s up to the individual to choose what he wants to share and with whom. This chip, which only wakes up when it’s activated by an reader, can’t be used to locate us!” At least not yet.

Hannes admits that this type of technology, which could be exploited by evil-minded multinational corporations or states, raises serious privacy issues. “But our role is precisely to experiment and explain to the public that these new tools exist so that citizens can better control them,” he says.

It remains to be seen whether these implants are just a fad for tech prophets or whether they’re here to stay. But given the resistance of French shepherds against the compulsory “chipping” of their flocks, France could very well be like one of Asterix’s villages resisting Roman domination.

Monday, August 11, 2014

Microchips Will Be Implanted Into Healthy People Sooner Than You Think

http://finance.yahoo.com/news/microchips-implanted-healthy-people-sooner-152916800.html

By Dina SpectorAugust 8, 2014 11:29 AM
View gallery.

Mark Gasson

In March 2009, British researcher Mark Gasson had a chip injected under the skin of his hand. The chip, a slightly more advanced version of the tags used to track pets, turned Gasson into a walking swipe-card. With a wave of his wrist, he could open security doors at the University of Reading laboratory, where his experiment was being conducted, and he could unlock his cell phone just by cradling it.

A year later, Gasson infected his own implant with a computer virus, one that he could pass on to other computer systems if the building's networks were programmed to read his chip. As Gasson breezed around the the workplace, spreading the virus and corrupting computer systems, certain areas of the building became inaccessible to his colleagues.

At the time of the experiment, theoretical physicist and author of "The Future of the Mind" Michio Kaku told FOX News that demonstrating the ability to spread infection was an "important point" because "we're going to have more chips in our body and clothing."

Thousands of Americans already have implanted medical devices, including pacemakers, which are inserted into the chest to treat abnormal heart rhythms, and cochlear implants, which help deaf people to hear.

But the future, Gasson says, is going to focus on implantable technology for healthy people. Part of the reason is that we continually look for ways to make our lives easier. The question is whether we're willing accept both the unintended and unknown consequences that come with giving up partial control of our bodies to technology.Human vs. Machine

Implantable microchips provide a more intimate connection with technology than that of any other portable electronic device, like a cell phone or iPod, because the tag becomes a direct part of us when it's inserted into our body. Implants "have the potential to change the very essence of what it is to be human," Gasson said at a 2012 TEDX Talk.

The susceptibility of human microchips to cyber attacks is one worry, but Gasson wanted to explore issues beyond common concerns related to privacy and security.

That's why he conducted the experiment in two stages: A surgeon initially inserted a clean computer chip into his hand, and the computer virus was unleashed a little over a year later. During that time, Gasson and his team were particularly interested in studying the psychological implications of implanted devices.

"There's an underlying feeling that [having an implantable device] is an alien phenomenon," said Gasson, a cybernetics expert. The only way to properly explore the psychological aspect was to have the device himself, he said.What is an RFID implant?
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Mark Gasson

A close-up of the implant device next to a match stick. The microchip, encased in glass, is about the size of a grain of rice.

RFID stands for radio frequency identification. The chip doesn't have its own battery, powered instead by a reader that pulls information out of the chip. The reader gets the chip's unique ID number and then cross references it to a database. RFID chips are found in lots of things we use every day, including credit cards.

Similar, if not creepier, technology is currently at work in things like Disney World's MagicBand, which tracks a wearer's location within the park and connects to that person's accounts, according to a recent Medium post. These technologies have been useful not just for the company but for park guests — it makes their experience seamless.

These technologies are also being used for payment services: Some people use Google Wallet and Tap-To-Pay services to pay using their phones at stores and in cabs, instead of whipping out their wallet or carrying all their cards with them. The Hilton just recently announced a feature to replace keycards at its hotels. Guests will use an app to access their room.

As these technologies get more advanced and their uses get more varied, why would we be carrying a phone around when we could do all these things with a swipe of the hand?Why an implant?
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Vimeo/DangerousThings

The chip implanted in Gasson's thumb, which is roughly the shape and size of a grain of rice, functions "like a tiny computer." It can store information like a small USB memory stick.

The chip appears as an extremely small, though visible, bump on the side of his finger. "It does freak people out quite a bit," Gasson said. "But it doesn't look grotesque."

Unsurprisingly, Gasson says the chip did not immediately feel like part of his body. But the distinction faded over time as he used the chip more and more. "Unlike keys or a phone, you don't have to think about carrying this type of device, and then you seamlessly use it and forget about it."

Gasson has no plans to remove the chip.
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Mark Gasson

Mark Gasson from the University of Reading holding the computer chip that was injected into his hand.

Gasson's research in human microchips parallels the work of a growing community of people, so-called biohackers, who view microchipping as the next form of human evolution. Hacking tends to have a negative connotation, but this new group of technology enthusiasts offers a different meaning. In their world, the goal of hacking is not to inflict harm, but to transform something from its original purpose into something more useful.

The human body has limitations, but biohackers are constantly thinking of how those limitations can be overcome — how life can be made better or more convenient (like removing the need to carry around keys all the time) through the use of technology.

And the desire for these technologies is there. The company Dangerous Things has developed the first DIY kit for implantable devices, which back in December raised more than $30,000 from it's $8,000 Indiegogo goal. The package comes with everything you need to insert the chip yourself. The chip allows you to interact with other devices by waving your hand or entering a room. You can buy one now for $99.
View gallery.

Vimeo/Dangerous Things

Dangerous Things founder Amal Graafstra.

In the accompanying video, Dangerous Things founder Amal Graafstra describes how he uses his implant:

The primary use is to be able to program a tag with a url or information you want to share. I use my implants to get into my house, I use it for access control solutions, to get into my back door every day after I get home. I use it get access to my car; I can unlock my car and get in. I use it to log into my computer. I also use it to share contact details with people.Challenges Ahead

The Dangerous Things kit isn't the first commercially available RFID microchip — a company called VeriChip actually got FDA approval to market an implant back in 2004. The implant was designed to carry a unique ID number that hospitals could use to pull up a patient's medical records if he or she were unconscious. But the chip was discontinued in 2010 over privacy concerns.

The failure of VeriChip, later rebranded as PositiveID, highlights the legal issues of microchipping people. Since 2009, at least nine states have either passed laws or proposed bills to prohibit the enforced implantation of chips.

Some states, including California, have enacted an "age of consent" clause, which allows parents to override the right of children under a certain age to decide if they want to be implanted. This inevitably kicks off the discussion of whether it's ethically sound to microchip one's child at birth. Supporters love the idea because they say it would prevent kidnappings. Critics worry that if a chip gave parents the ability to track their kids, then predators could, too.

But these ethical questions are not yet urgent. The technology is not yet useful or developed enough for everyone to have it, or even want it.

To start, there are several user-related misconceptions about RFID implants, namely the idea that these chips can be used to track one's location every second of the day. This is not yet possible, because today's RFID chips do not contain GPS trackers. Someone could track the computer systems that were accessed throughout the day (in the same way a credit card company can track purchases and where they were made), but the technology doesn't provide real-time location data.

Other people worry about chips being used to covertly access unauthorized systems. As with other smart cards, which are programmed to be read by specific systems, someone with an RFID implant can't just go about gaining entry to any old computer system. It takes a specialist reader to access a certain device.

"Anything that's useful is going to happen in the next 10 to 20 years," Gasson said, referring to a time in which we may start merging devices created by tech enthusiasts and medical-type technology to do things like store or download memories from the brain.

Wednesday, October 24, 2012

After Libya, U.S. Seeks to LoJack Its Diplomats


By Spencer Ackerman, Wired, October 19, 2012
Among the horrors of the September assault on the Benghazi consulate was that security personnel at the diplomatic compound lost track of U.S. Ambassador Christopher Stevens for hours. They next saw him when Libyans returned his corpse. A new program by the State Department’s security branch seeks to ensure diplomats in conflict zones can’t go missing anymore.

A recent solicitation revealed that State wants to upgrade its security to a Personnel Tracking and Locating system that could allow diplomats to check in with security personnel through their phones or other handheld devices. The “device agnostic” system would work similarly to the Blue Force Trackers that soldiers use to keep track of one another on the battlefield: a signal emanates from the device over a satellite network and appears as an icon on a digitized map monitored by State’s Bureau of Diplomatic Security. Devices networked together that host the tracking software need to be able to call up a map on a web browser that shows the relative position of each user, layered over a GoogleEarth baseline.

The new system has to “display live/historical tracks with the following device information for all ingested devices: device ID, alias/call-sign, last reported latitude/longitude, last reported track receive time, and emergency status,” reads the solicitation for the system’s software. For additional security, State wants diplomats to be able to create geo-fences using the system, with automatic alerts going out to authorized users once the devices’ signal leaves (or, conceivably, enters) a perimeter.

It will never be known whether a tracker could have saved Stevens’ life. But his death provides a grim reminder of what can happen when diplomats disappear.

In an “emergency,” the State Department wants the software to “to remotely activate the microphone of audio-capable trackers”—which could allow security officials to gather intelligence on a hypothetical hostage situation.

To be very clear, there’s no way that tracking devices like these could have stopped the Libya assault from happening. They don’t substitute for understanding the dangers that lurk outside diplomatic gates or having available, competent security personnel prepared to deal with them. But the acrimony over the Benghazi debacle threatens to compel diplomats worldwide into retreating behind hardened embassy walls, rather than accepting the risks of travelling to far-flung areas where diplomacy sometimes needs to be conducted. LoJacking diplomats like they’re cars is one small way the department can mitigate those risks while still conducting vital foreign policy.

Thursday, August 9, 2012

JCPenney Looks To Eliminate The Cash Register With RFID CHeckout


Kim Bhasin, Business Insider, July 18, 2012

JCPenney CEO and former Apple retail guru Ron Johnson is speaking at Fortune’s Brainstorm Tech conference in Aspen, and he revealed a bit of what his strategy is for store checkout.

He wants to eliminate the employees who stand at cash registers and get rid of traditional checkout by the end of 2013.

Instead, he’s pushing mobile checkout and self checkout. The stores will be 100 percent RFID (radio frequency identification) and wi-fi enabled.

JCPenney would reinvest those savings in customer service, he says.

If JCPenney can pull this off, customers won’t have to wait in lines anymore, making things more convenient and reducing their time in stores.

This also suggests that there will be more job cuts, since those workers won’t be needed anymore.

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