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Showing posts with label implant. Show all posts
Showing posts with label implant. Show all posts

Sunday, 18 October 2009

How RFID Tags Could Be Used to Track Unsuspecting People

How RFID Tags Could Be Used to Track Unsuspecting People

A privacy activist argues that the devices pose new security risks to those who carry them, often unwittingly

By Katherine Albrecht

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Radio-frequency identi­fication (RFID) tags are embedded in a growing number of personal items and identity documents.
Because the tags were designed to be powerful tracking devices and they typically incorporate little security, people wearing or carrying them are vulnerable to surreptitious surveillance and profiling.
Worldwide, legislators have done little to address those risks to citizens.

If you live in a state bordering Canada or Mexico, you may soon be given an opportunity to carry a very high tech item: a remotely readable driver’s license. Designed to identify U.S. citizens as they approach the nation’s borders, the cards are being promoted by the Department of Homeland Security as a way to save time and simplify border crossings. But if you care about your safety and privacy as much as convenience, you might want to think twice before signing up.

The new licenses come equipped with radio-frequency identification (RFID) tags that can be read right through a wallet, pocket or purse from as far away as 30 feet. Each tag incorporates a tiny microchip encoded with a unique identification number. As the bearer approaches a border station, radio energy broadcast by a reader device is picked up by an antenna connected to the chip, causing it to emit the ID number. By the time the license holder reaches the border agent, the number has already been fed into a Homeland Security database, and the traveler’s photograph and other details are displayed on the agent’s screen.

Although such “enhanced” driver’s licenses remain voluntary in the states that offer them, privacy and security experts are concerned that those who sign up for the cards are unaware of the risk: anyone with a readily available reader device—unscrupulous marketers, government agents, stalkers, thieves and just plain snoops—can also access the data on the licenses to remotely track people without their knowledge or consent. 

What is more, once the tag’s ID number is associated with an individual’s identity—for example, when the person carrying the license makes a credit-card transaction—the radio tag becomes a proxy for that individual. And the driver’s licenses are just the latest addition to a growing array of “tagged” items that consumers might be wearing or carrying around, such as transit and toll passes, office key cards, school IDs, “contactless” credit cards, clothing, phones and even groceries.

RFID tags have been likened to barcodes that broadcast their information, and the comparison is apt in the sense that the tiny devices have been used mainly for identifying parts and inventory, including cattle, as they make their way through supply chains. Instead of having to scan every individual item’s Universal Product Code (UPC), a warehouse worker can register the contents of an entire pallet of, say, paper towels by scanning the unique serial number encoded in the attached RFID tag. That number is associated in a central database with a detailed list of the pallet’s contents. 

But people are not paper products. During the past decade a shift toward embedding chips in individual consumer goods and, now, official identity documents has created a new set of privacy and security problems precisely because RFID is such a powerful tracking technology. Very little security is built into the tags themselves, and existing laws offer people scant protection from being surreptitiously tracked and profiled while living an increasingly tagged life.

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Beyond Barcodes

The first radio tags identified military aircraft as friend or foe during World War II, but it was not until the late 1980s that similar tags became the basis of electronic toll-collection systems, such as E-ZPass along the East Coast. And in 1999 corporations began considering the tags’ potential for tracking millions of individual objects. In that year Procter & Gamble and Gillette (which have since merged to become the world’s largest consumer-product manufacturing company) formed a consortium with Massachusetts Institute of Technology engineers, called the Auto-ID Center, to develop RFID tags that would be small, efficient and cheap enough to eventually replace the UPC barcode on everyday consumer products.

By 2003 the group had developed a working version of the technology and attracted in­­vest­ment from more than 100 companies and government agencies. The tags’ promoters promised the tiny chips would revolutionize inventory management and counterfeiting prevention [see “RFID: A Key to Automating Everything,” by Roy Want; Scientific American, January 2004].

To kick-start government adoption of the technology, the General Services Administration (GSA), a federal bureau that manages purchasing for other government institutions, issued a memo in 2004 urging the heads of all federal agencies “to consider action that can be taken to advance the [RFID] industry.” Suddenly, virtually every agency, from the Social Security Administration to the Food and Drug Administration, began announcing RFID trials. 

During the same period, similar initiatives were under way around the world. In 2003 the International Civil Aviation Organization (ICAO), a United Nations agency that sets global passport standards, endorsed the use of RFID tags in passports. ICAO now calls for their use in all scannable “e-passports.” Today dozens of countries, including the U.S., issue e-passports with RFID tags embedded in their covers.

Since their debut, the new passports have been controversial on both privacy and security grounds. In a 2006 report one ICAO official promised that encryption measures would provide a “level of protection [that] should reassure the most anxious passport holder that his personal data cannot be read without his knowledge.”

Security experts quickly proved otherwise. In 2007 British security consultant Adam Laurie cracked the encryption code on a U.K. passport and “skimmed,” or remotely read, its personal information—while it was still sealed in its mailing envelope. Around the same time, German security consultant Lukas Grunwald copied the data from a German passport’s embedded chip and encoded it into a different RFID tag to create a forged document that could fool an electronic passport reader. Investigators at Charles University in Prague, finding similar vulnerabilities in Czech e-passports, wrote that it was “a bit surprising to meet an implementation that actually encourages rather than eliminates [security] attacks.”

Yet these demonstrated security problems have not slowed the adoption of RFID. On the contrary, the technology is being deployed for domestic ID cards around the world. Malaysia has issued some 25 million contactless national identity cards. Qatar is issuing one that stores the cardholder’s fingerprint in addition to personal information. And in what industry observers are calling the single largest RFID project in the world, the Chinese government is spending $6 billion to roll out RFID-based national IDs to nearly one billion citizens and residents.

There is an important difference, however, between other nations’ RFID-based ID cards and Homeland Security’s new driver’s licenses. Most countries’ contactless national IDs and e-passports have adopted an RFID tag that meets an industry standard known as ISO 14443, which was developed specifically for identification and payment cards and has a degree of security and privacy protection built in. In contrast, U.S. border cards use an RFID standard known as EPCglobal Gen 2, a technology that was designed to track products in warehouses, where the goal is not security but maximum ease of readability.

Whereas the ISO 14443 standard includes rudimentary encryption and requires tags to be close to a scanner to be read (a distance measured in inches rather than feet), Gen 2 tags typically have no encryption and only minimal data safeguards. To skim the data from an encrypted ISO 14443 chip, you have to crack the encryption code, but no special skills are required to skim a Gen 2 tag; all you need is any Gen 2 reader. Such readers can be purchased readily and are in common use in warehouses worldwide. A hacker or crim­inal armed with one could skim a border card through a purse, across a room, even through a wall.

As of this past April [2008], more than 35,000 Washington State motorists had signed up for en­­hanced driver’s licenses, and other border states, including Arizona, Michigan and Vermont, have agreed to participate in the program. New York State will begin making the new licenses available to its residents after Labor Day.

But the possibility that the security of such cards could be compromised is just one reason for concern. Even if tighter data-protection measures could someday prevent unauthorized access to RFID-card data, many privacy advocates worry that remotely readable identity documents could be abused by governments that wish to tightly monitor and control their citizens.

China’s national ID cards, for instance, are encoded with what most people would consider a shocking amount of personal information, including health and reproductive history, employment status, religion, ethnicity and even the name and phone number of each cardholder’s landlord. More ominous still, the cards are part of a larger project to blanket Chinese cities with state-of-the-art surveillance technologies. Michael Lin, a vice president for China Public Security Technology, a private company providing the RFID cards for the program, unflinchingly described them to the New York Times as “a way for the government to control the population in the future.” And even if other governments do not take advantage of the surveillance potential inherent in the new ID cards, ample evidence suggests that data-hungry corporations will.

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Living a Tagged Life

If the idea that corporations might want to use RFID tags to spy on individuals sounds far-fetched, it is worth considering an IBM patent filed in 2001 and granted in 2006. The patent describes exactly how the cards can be used for tracking and profiling even if access to official databases is unavailable or strictly limited. Entitled “Identification and Tracking of Persons Using RFID-Tagged Items in Store Environments,” it chillingly details RFID’s potential for surveillance in a world where networked RFID readers called “person tracking units” would be incorporated virtually everywhere people go—in “shopping malls, airports, train stations, bus stations, elevators, trains, airplanes, restrooms, sports arenas, libraries, theaters, [and] mu­­se­­ums”—to closely monitor people’s movements.

According to the patent, here is how it would work in a retail environment: an “RFID tag scanner located [in the desired tracking location]... scans the RFID tags on [a] person.... As that person moves around the store, different RFID tag scanners located throughout the store can pick up radio signals from the RFID tags carried on that person and the movement of that person is tracked based on these detections.... The person tracking unit may keep records of different locations where the person has visited, as well as the visitation times.”

The fact that no personal data are stored in the RFID tag does not present a problem, IBM explains, because “the personal information will be obtained when the person uses his or her credit card, bank card, shopper card or the like.” The link between the unique RFID number of the tag and a person’s identity needs to be made only once for the card to serve as a proxy for the person thereafter. Although IBM envisioned tracking people via miniature tags in consumer goods, with today’s RFID border cards there is no need to wait for such individual product tags to become widespread. Washington’s new driver’s licenses would be ideally suited to the in-store tracking application, because they can already be read by Gen 2 inventory scanners in use today at stores such as Wal-Mart, Dillard’s and American Apparel.

A tracking infrastructure will become increasingly fruitful to marketers as more people begin carrying, and even wearing, RFID-tagged items. At present, tens of millions of contactless credit and ATM cards containing RFID tags are in circulation, along with millions of employee access badges. RFID-based public-transit passes, widely used in Europe and Japan, are also coming to U.S. cities. IBM’s person tracking unit is still only a patent, but an English amusement park called Alton Towers provides a living illustration of RFID’s tracking potential. On entering the park, each visitor is offered an RFID wristband encoded with a unique ID number. As people enjoy the attractions, a network of RFID readers placed strategically throughout the park detects each wristband as it comes within range and triggers nearby video cameras. Candid footage of each individual is stored in a file labeled with the wristband ID number, then made available to the customer on a keepsake DVD at the end of the day.

If RFID tags can enable an amusement park to capture detailed, personalized videos of thousands of people a day, imagine what a determined government could do—not to mention marketers or criminals. That is why my colleagues in the privacy community and I have so firmly opposed the use of RFID in government-issued identity documents or individual consumer items. As far back as 2003, my organization, CASPIAN (Consumers Against Supermarket Privacy Invasion and Numbering)—along with the Privacy Rights Clearinghouse, the Electronic Privacy Information Center, the Electronic Frontier Foundation, the American Civil Liberties Union, and 40 other leading privacy and civil liberties advocates and organizations—recognized this threat and issued a position paper that condemned the tracking of human beings with RFID as inappropriate.

In response to these concerns, dozens of U.S. states have introduced RFID consumer-protection bills—which have all been either killed or gutted by heavy opposition from lobbyists for the RFID industry. When the New Hampshire Senate voted on a bill that would have imposed tough regulations on RFID in 2006, a last-minute floor amendment replaced it with a two-year study instead. (I was appointed by the governor to serve on the resulting commission.) That same year a California bill that would have prohibited the use of RFID in government-issued documents passed both houses of the legislature, only to be vetoed by Governor Arnold Schwarzenegger.

On the federal level, no high-profile consumer-protection bills related to RFID have been passed. Instead, in 2005, the Senate Republican High Tech Task Force praised RFID applications as “exciting new technologies” with “tremendous promise for our economy” and vowed to protect RFID from regulation or legislation.

In the European Union, regulators are at least examining the situation. The European Commission—the executive arm of the E.U.—has acknowledged the potential for serious privacy problems with RFID and opened a public comment period earlier this year. As of July, when this issue went to press, recommendations stemming from the public comments were set to be released later in the summer, but expectations for any consumer-privacy regulations were low. In a March 2007 speech, E.U. commissioner for information society and media Viviane Reding announced that the commission would not regulate RFID but instead would allow businesses to regulate themselves. “I am here to tell you that on RFIDs, there is not going to be a regulation,” she said. “My view is that we should underregulate rather than overregulate so that this sector can take off.”

Unfortunately, industry self-regulation has little force when it comes to protecting the public from RFID risks. EPCglobal, the industry body that now sets technical standards for RFID tags, also produced a set of guidelines for the use of the chips in retail. The organization’s recommendations require, among other things, notice to consumers whenever products contain RFID tags—for instance, in the form of a recognizable RFID logo. Yet when Checkpoint Systems, a member company of EPCglobal, designed RFID tags to be hidden in the soles of shoes—in clear violation of the organization’s own provisions — Mike Meranda, then president of EPCglobal, told me that since the guidelines were voluntary, there was nothing he or his organization could do about it.

The Washington State Department of Licensing reassures citizens that their personal information is safe because the RFID tag in an enhanced driver’s license “doesn’t have a power source” and “doesn’t contain any personal identifying inform­ation”—even though those facts have no bearing on whether the card can be used for tracking. For some people, a false sense of assurance provided by such official mollifications could be dangerous. The National Network to End Domestic Violence, a group that vocally opposes the use of RFID in identity documents and consumer products, has submitted legislative testimony describing how abusers could use the technology to stalk and monitor their victims.

Meanwhile the RFID train is barreling forward. Gigi Zenk, a spokesperson at Washington’s licensing agency, recently confirmed that there are 10,000 enhanced licenses “on the street now—that people are actually carrying.” That’s a lot of potential for abuse, and it will only grow. The state recently mustered a halfhearted response, passing a law that designates the unauthorized reading of a tag “for the purpose of fraud, identity theft, or for any other illegal purpose” as a class C felony, subject to five years in prison and a $10,000 fine. Nowhere in the law does it say, however, that scanning for other purposes such as marketing—or perhaps “to control the population”—is prohibited. We ignore these risks at our peril.
Note: This article was originally published with the title, "RFID Tag--You're It".

ABOUT THE AUTHOR
Katherine Albrecht holds a doctorate in education from Harvard University and is director of CASPIAN, a 15,000-member consumer privacy organization opposing retail surveillance. Since 2003 she has worked to expose and prevent unethical uses of RFID in products and in people. She regularly testifies before legislators and delivered a keynote address at a workshop on RFID and privacy held at the Massachusetts Institute of Technology. She has also co-authored two books describing how corporate and governmental uses of RFID could threaten individual privacy and security.


See also ‘The Implanted Radiofrequency Identification Chip’  - http://newilluminati.blog-city.com/the_implanted_radiofrequency_identification_chip.htm

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Sunday, 28 December 2008

Microchip Implants Create Fast-Growing, Malignant Tumours – and a Planetary Prison

Microchip Implants Create Fast-Growing, Malignant Tumours – and a Planetary Prison
A roundup of breakthroughs in remote monitoring of domesticated primates and other livestock

 

'And the first went and poured out his vial upon the earth. And there fell a sore and grievous wound upon men who had the character of the beast: and upon them that adored the image thereof. '
(Apocalypse Chapter 16:2)

…Microchip implants have induced cancer in laboratory animals and dogs, says privacy expert and long-time VeriChip opponent Dr. Katherine Albrecht.

…A series of research articles spanning more than a decade found that mice and rats injected with glass-encapsulated RFID transponders developed malignant, fast-growing, lethal cancers in up to 1% to 10% of cases. The tumors originated in the tissue surrounding the microchips and often grew to completely surround the devices, the researchers said.

Albrecht first became aware of the microchip-cancer link when she and her "Spychips" co-author, Liz McIntyre, were contacted by a pet owner whose dog had died from a chip-induced tumor. Albrecht then found medical studies showing a causal link between microchip implants and cancer in other animals. Before she brought the research to the AP's attention, the studies had somehow escaped public notice.

A four-month AP investigation turned up additional documents, several of which had been published before VeriChip's parent company, Applied Digital Solutions, sought FDA approval to market the implant for humans. The VeriChip received FDA approval in 2004 under the watch of then Health and Human Services Secretary Tommy Thompson who later joined the company's board.

Under FDA policy, it would have been VeriChip's responsibility to bring the adverse studies to the FDA's attention, but VeriChip CEO Scott Silverman claims the company was unaware of the research. Albrecht expressed skepticism that a company like VeriChip, whose primary business is microchip implants, would be unaware of relevant studies in the published literature.

"For Mr. Silverman not to know about this research would be negligent. If he did know about these studies, he certainly had an incentive to keep them quiet," said Albrecht. "Had the FDA known about the cancer link, they might never have approved his company's product."

Since gaining FDA approval, VeriChip has aggressively targeted diabetic and dementia patients, and recently announced that it had chipped 90 Alzheimer's patients and their caregivers in Florida. Employees in the Mexican Attorney General's Office, workers in a U.S. security firm, and club-goers in Europe have also been implanted.

Albrecht expressed concern for those who have received a chip implant, urging them to get the devices removed as soon as possible.

"These new revelations change everything," she said. "Why would anyone take the risk of having a cancer chip in their arm?"

RFID 'Powder' - The World's Smallest RFID Tag...

 

"And he shall make all, both little and great, rich and poor, freemen and bondmen, to have a character in their right hand or on their foreheads: And that no man might buy or sell, but he that hath the character, or the name of the beast, or the number of his name." (Apocalypse Chapter 13: 16-17)

The world's smallest and thinnest RFID tags were [recently] introduced by Hitachi. Tiny miracles of miniaturization, these RFID chips (Radio Frequency IDentification chips) measure just 0.05 x 0.05 millimeters.

The previous record-holder, the Hitachi mu-chip, is just 0.4 x 0.4 millimeters. Take a look at the size of the mu-chip RFID tag on a human fingertip.  Now, compare that with the new RFID tags. The "powder type" tags are some sixty times smaller.
The new RFID chips have a 128-bit ROM for storing a unique 38 digit number, like their predecessor. Hitachi used semiconductor miniaturization technology and electron beams to write data on the chip substrates to achieve the new, smaller size.

Hitachi's mu-chips are already in production; they were used to prevent ticket forgery at last year's Aichi international technology exposition. RFID 'powder,' on the other hand, is so much smaller that it can easily be incorporated into thin paper, like that used in paper currency and gift certificates.  Science fiction fans will have a field day with this new technology. In his 1998 novel Distraction, Bruce Sterling referred to bugged money:

"They always played poker with European cash. There was American cash around, flimsy plastic stuff, but most people wouldn't take American cash anymore. It was hard to take American cash seriously when it was no longer convertible outside U.S. borders. Besides, all the bigger bills were bugged."

These tiny RFID tags could be worked into any product; combined with RFID readers built into doorways, theft of consumer goods would be practically impossible.  These devices could also be used to identify and track people. For example, suppose you participated in some sort of protest or other organized activity. If police agencies sprinkled these tags around, every individual could be tracked and later identified at leisure, with powerful enough tag scanners…

Take a look at these earlier stories related to RFID, and consider how much easier it will be with tinier chips: RFID Sensor Tag Shower For Disasters (gentle rain of RFID), RFID-Maki: Easy Payment Sushi (just tag the sushi directly, then scan customer's stomach) and VeriChip Chairman Proposes RFID Chips For Immigrants (just dust the border).

Animal tags for people?

 

Business Week reported on January 11, 2007:

Under the federally supported National Animal Identification System (NAIS), digital tags are expected to be affixed to the U.S.'s 40 million farm animals to enable regulators to track and respond quickly to disease, bioterrorism, and other calamities. Opponents have many fears about this plan, among them that it could be the forerunner of a similar system for humans. The theory, circulated in blogs, goes like this: You test it on the animals first, demonstrating the viability of the radio frequency identification devices (RFIDs) to monitor each and every animal's movements and health history from birth to death, and then move on to people.

    Well, all you conspiracy buffs, let me introduce you to Kevin McGrath and Scott Silverman. McGrath heads a small, growing company that makes RFID chips for animals… and people.

    Silverman heads a second company that sells the rice-size people chips, which are the only ones with Food & Drug Administration (FDA) approval, for implantation in an individual's right biceps. They carry an identity marker that would be linked to medical records. His goal is to create "the first RFID company for people."

Human-Chip Company Plans IPO

While the NAIS remains voluntary on a federal level, and there is no formal people identification system as yet, both executives are moving aggressively to position their companies for the day when chips in animals and people are the norm rather than the exception. Mary Zanoni, a lawyer and critic of NAIS who has written extensively about the system, says that "the microchipping of livestock and pet animals is intended to make tagging more acceptable in helping these companies market their devices for people."

    McGrath's company, Digital Angel (DOC), does nearly $60 million in annual sales and has sold several million chips for attachment to livestock, mostly in the U.S. and Canada.

    Silverman's company, VeriChip Corp., is preparing for widespread marketing of its people chips with an initial public offering that it expects to complete within the next 60 days. It has begun building what he refers to as "the infrastructure" by signing up more than 400 hospitals to adopt system scanners and databases and about 1,200 physicians to make chips available to patients likeliest to benefit from them, such as diabetics. 

    While McGrath and Silverman aren't related, their companies are. Digital Angel and VeriChip have the same majority owner. Applied Digital Solutions (ADSX), the parent of seven smaller companies, owns 55% of Digital Angel and all of VeriChip.

Larger Farms Join the RFID Program

 

Digital Angel has a big head start in marketing, thanks in part to the Agriculture Dept.-sponsored NAIS program, which, while it is billed as voluntary, is expected by various opponents of NAIS, including Zanoni as well as blogs such as nonais.org, to be imposed on farmers by growing numbers of states. Michigan begins requiring RFID tags for cattle on the 1st of March in the first such effort (see BusinessWeek.com, 12/19/06, "Farmers Say No to Animal Tags").

    Farmers running midsize and large operations are signing up for NAIS in growing numbers. The USDA says 343,186 farms have registered, which translates into millions of animals, driven by what McGrath says are significant economic incentives.

    One is inventory control. He points to a pig farm as an example. The farmer can use RFID tags "to monitor the amount fed to the sows, the medications they receive, when they get pregnant, the length of pregnancies, the number born to each sow, and the number of days to weaning."  As another example, he cites a farm with about 5,000 pigs that had an outbreak of disease, where some of the pigs got fever and several died.

    By being able to spot health problems earlier via scanning of RFID chips compared to "managing by clipboard," says McGrath, the cost of the disease in lost animals and treatment was about $75,000, vs. an expected $250,000 without chips.

    McGrath acknowledges that Digital Angel's chips are more appropriate for factory farms than for smaller farms focused on selling locally. "If you're a farmer who sells to a neighbor, who cares" about RFID chips? "But if you are a farmer who sells to Japan, the Japanese say they want you to categorically state [the animal] is this age and has not had these diseases. If you cannot show this, the Japanese won't buy it." For those farmers who can pass the test, $25-per-head premiums await, he says.

People Tags Are More Profitable

McGrath, for now, is content to focus Digital Angel on the factory farm market, having seen sales of the animal chip rise from 200,000 in 2003 to about 3 million last year. "We believe we will continue to grow at that rate," he says. In addition, Digital Angel continues selling tags to track lost pets and to monitor fish like salmon for environmental purposes.

    Silverman is taking a similar tack with VeriChip by expanding existing markets—the two primary ones are tags for the bracelets and anklets worn by newborn babies and their parents to prevent kidnappings, and those for elderly nursing home patients with Alzheimer's disease to recover "wanderers." Its 2005 revenues were $24 million.

    But the big attraction for both companies, and the reason for the upcoming VeriChip public offering, is the lure of implanting the chips into people. McGrath points out that while the RFID chips attached to animals sell for about $1.50 each, and will likely decline to under $1 within a few years because of competitive pressures, the chips for people sell for $25, based on special design to allow implanting. "To the extent they [VeriChip] would need 1 million [chips], it would be huge for us," McGrath says.

    For now, VeriChip has only "a couple hundred patients" who have had the RFID chips surgically implanted in their arms. The company is focusing its attention on building databases of patient medical information to attract hospitals to adopt the company's chips. The chips are being targeted at an estimated 45 million "high-risk patients"—diabetics and heart patients, for example, who could be brought into hospitals unconscious or semiconscious and thus not be able to identify themselves.

Business May Compel Chip Wearing

Of course, no discussion of these cousin companies would be complete without addressing the privacy concerns many people have about being tagged. Both McGrath and Silverman say their companies protect privacy by limiting data stored on the chips for both farm animals and people to identification numbers only, which are extracted via special scanners and then matched to records in databases.

    McGrath also says he appreciates the concerns many small farmers have about the potential infringement on their privacy that NAIS represents. "You're dealing with people who are intensely independent," he says. "They don't like people looking over their shoulders." Silverman says: "We are leaders in the RFID industry in facing privacy issues head on." The chip for people "should always be a voluntary product, with opt-in and opt-out capability."    

    As comforting as such statements appear, it's important to remember that adoption of the RFID chips doesn't necessarily need to be legislated to become nearly universal. If enough hospitals and insurance companies begin requiring them, or treating patients wearing them more expeditiously than nonusers, or providing discounts for usage of the chips, they well could become the norm. Then, not wearing a chip might be akin to not having a bank ATM card or, increasingly in Eastern states with toll roads and turnpikes, not having a transponder to pay tolls in your car (see BusinessWeek.com, 10/9/06, "Radio-Shipment Tracking: A Revolution Delayed").

Animal Farms Put Us on Notice

It's also important to keep in mind that the real prize for VeriChip is in assembling the databases of patient health information. The more patients in the database, the more leverage it has in the health-care marketplace. In that sense, it's in competition with retailers like Walgreens (WAG) that are collecting data via their walk-in clinics (see BusinessWeek.com, 7/17/06, "Drugstore Clinics Are Bursting with Health").

   The most important opinion may be rendered by the financial marketplace, and so far, investors haven't fallen over themselves for either company… VeriChip's IPO has been put off several times by "market conditions," says Silverman, since it first filed in December of [2006].

   It may be a while before we all begin wearing medical information chips in our arms, but the farm animals are telling us it's closer than we may have imagined.

Plans are Underway to Microchip every Newborn in U.S. and Europe...

Regarding plans to microchip newborns, Dr. Kilde said the U.S. has been moving in this direction "in secrecy." She added that in Sweden, Prime Minister Olof Palme gave permission in 1973 to implant prisoners, and Data Inspection's ex-Director General Jan Freese revealed that nursing-home patients were implanted in the mid-1980s. The technology is revealed in the 1972:47 Swedish state report, Statens Officiella Utradninger.

Are you prepared to live in a world in which every newborn baby is micro-chipped? And finally are you ready to have your every move tracked, recorded and placed in Big Brother's data bank?  According to the Finnish article, distributed to doctors and medical students, time is running out for changing the direction of military medicine and mind control technology, ensuring the future of human freedom.

"Implanted human beings can be followed anywhere. Their brain functions can be remotely monitored by supercomputers and even altered through the changing of frequencies," wrote Dr. Kilde.  "Guinea pigs in secret experiments have included prisoners, soldiers, mental patients, handicapped children, deaf and blind people, homosexuals, single women, the elderly, school children, and any group of people considered "marginal" by the elite experimenters. The published experiences of prisoners in Utah State Prison, for example, are shocking to the conscience.

"Today's microchips operate by means of low-frequency radio waves that target them. With the help of satellites, the implanted person can be tracked anywhere on the globe. Such a technique was among a number tested in the Iraq war, according to Dr. Carl Sanders, who invented the intelligence-manned interface (IMI) biotic, which is injected into people. (Earlier during the Vietnam War, soldiers were injected with the Rambo chip, designed to increase adrenaline flow into the bloodstream.) The 20-billion-bit/second supercomputers at the U.S. National Security Agency (NSA) could now "see and hear" what soldiers experience in the battlefield with a remote monitoring system (RMS).

"When a 5-micromillimeter microchip (the diameter of a strand of hair is 50 micromillimeters) is placed into optical nerve of the eye, it draws neuro-impulses from the brain that embody the experiences, smells, sights, and voice of the implanted person. Once transferred and stored in a computer, these neuro-impulses can be projected back to the person's brain via the microchip to be re-experienced. Using a RMS, a land-based computer operator can send electromagnetic messages (encoded as signals) to the nervous system, affecting the target's performance. With RMS, healthy persons can be induced to see hallucinations and to hear voices in their heads.

"Every thought, reaction, hearing, and visual observation causes a certain neurological potential, spikes, and patterns in the brain and its electromagnetic fields, which can now be decoded into thoughts, pictures, and voices. Electromagnetic stimulation can therefore change a person's brainwaves and affect muscular activity, causing painful muscular cramps experienced as torture."

The Mark of the Beast Means Total Surveillance of Livestock, too...

The National Animal Identification System (NAIS) is set up to put RFID tags in all livestock.  This means total surveillance of all livestock.  It is mandatory by January 2008.  This means if you have one chicken, one horse, one cow, one sheep, one goat, one bison, one sheep, one goat, one llama, one alpaca, one turkey, or one duck, etc - you must register - the premises and the animals.  Who do you think will be next?  You and me.

See:
http://animalid.aphis.usda.gov/nais/about/pdf/NAIS_Draft_Strategic_Plan_42505.pdf  and http://animalid.aphis.usda.gov/nais/about/pdf/NAIS_Technical_Supplement_072605.pdf
    EDITOR'S Comment: There will be no place to hide for anyone who takes the Mark of the Beast.
- September 9, 2007

images - http://www.truthdig.com/images/eartothegrounduploads/handchip_300.jpg

http://www.theharrowgroup.com/articles/20031006/20031006_files/image002.jpg

http://igargoyle.com/archives/rfidbg.jpg

http://entomology.files.wordpress.com/2007/07/web003.jpg


 
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