Showing posts with label Transportation Security Administration. Show all posts
Showing posts with label Transportation Security Administration. Show all posts

Tuesday, December 29, 2015

Full-body scan fail: The TSA opts out of opt-outs


By 

http://elliott.org/blog/full-body-scan-fail-the-tsa-opts-out-of-opt-outs/
Until last week, air travelers could opt out of a full-body scan at Transportation Security Administration (TSA) airport screening areas, instead choosing an enhanced pat-down.
But on Dec. 18, the agency changed its rules, allowing screeners to refuse passengers the option of opting out.
Specifically, TSA said it was “updating” its Privacy Impact Assessment to reflect a change to the operating protocol regarding the ability of individuals to opt out of the scans. “While passengers may generally decline AIT screening in favor of physical screening, TSA may direct mandatory AIT screening for some passengers,” it said.
When TSA was formed, passengers were screened with magnetometers. Considering them insufficient, TSA decided to use Advanced Imaging Technology (AIT) scanners, which at first were based on backscatter X-ray technology. Eventually, the public and Congressional outrage about the insurmountable privacy and health issues of the X-ray-based scanners caused them to be removed from U.S. airports by the summer of 2013.
In their place, TSA installed Millimeter Wave (MMW)-based full-body scanners, in airports across the U.S. They utilize non-ionizing, terahertz radiation, a technology thought to be safer than the backscatter machines.
Soon after their installation, it was uncovered that the new scanners had privacy issues similar to those of the old X-ray scanners. In addition, despite using non-ionizing radiation, there were serious questions about the MMW scanner’s safety.
The TSA worked to address the privacy issues by requiring major changes in the scanners’ software. Along with the implementation of MMW scanner changes to address passenger privacy concerns, the agency instituted a “Privacy Impact Assessment” for TSA’s AIT scanners.
On Dec. 18, they released their report. In its seven pages, they detail three key assessments made in the evaluation of the updated system.
1. Scanner images of passengers reviewed by TSA screeners no longer show any personal body attributes of passengers. Each passenger’s image in the scanner monitor is generic and genderless.
2. AIT scanners don’t generate underlying images of passengers scanned.
3. AIT scanners no longer have the ability to store images for later review.
With the privacy issues solved, DHS clearly believes there are no more objectionable issues with the MMW-based full-body scanners, so they should be free to require that all passengers be scanned in them, at their absolute discretion.
They are incorrect.
There are potential serious health and safety concerns with full-body scanners using terahertz radiation. In fact, these concerns are the reason I’ve been opting out of these scanners and getting an enhanced pat-down before my flights.
There is some evidence that terahertz radiation can be unsafe, but current test results are mixed. Boian Alexandrov, with the help of his colleagues at the Center for Nonlinear Studies at the Los Alamos National Laboratory in New Mexico, studied the effects of terahertz radiation and reported significant genetic damage was possible. Elsewhere, some scientists have reported no damage.
The MIT Technology Review reports that Alexandrov created a model to investigate how terahertz radiation interacts with DNA. Alexandrov and colleagues reported that while the forces involved are tiny, their effects allow terahertz waves to “unzip double-stranded DNA, creating bubbles in the double strand that could significantly interfere with processes such as gene expression and DNA replication.”
While terahertz waves are part of our environment, TSA barrages air travelers with these waves in closed booths with their full-body scanners. That TSA is utilizing these machines, despite a chance they can damage human DNA, is disturbing.
The problem with Dr. Alexandrov’s study of terahertz radiation and safety is we don’t know if its implications are fully applicable to air traveler security scanning, as to date there have been no long-term, third party safety tests of the scanners or their terahertz radiation by physicians and scientists. I’m unaware of any clinical trials of the effects of multiple exposures to terahertz waves, accumulated over a long period of time.
Additionally, the Food and Drug Administration, from what I can determine, has never granted approval for any full body scanner to be employed by TSA, even though they clearly qualify as medical devices, despite being purposed for non-medical use.
It’s clear to me, the new protocol adopted by the government, which permits TSA to refuse to allow air travelers to opt out of MMW full body scans, is a mistake which may be putting U.S. air travelers at serious risk.

Friday, May 11, 2012

Richard Kurtz from Advanced Photonix, (API), answers questions about the new anomaly detection device





My Note: With the recent news about the latest Al Qaeda bomb plot, as well as the recent news about  the shipment of the Advanced Photonix anomaly detection beta units to In-Q-Tel, and the Transportation Security Administration, (TSA), http://terahertztechnology.blogspot.com/2012/03/advanced-photonix-anomaly-detection.html, along with Advanced Photonix recent display of it's commercial version, the Saf-T-Chek Anomaly Detection System, at the Great Lakes Security Conference, http://terahertztechnology.blogspot.com/2012/05/gadgets-ideas-abound-at-annual-homeland.html some readers have asked if this device could have likely discovered the Al Qaeda bomb threat. Richard Kurtz, CEO of Advanced Photonix, responded as follows:



Randy, I was asked the other day about the Saf-T-Check anomaly detection systems and its ability to see the non-metallic explosives mention in the latest Homeland security threat.
Here  was my comment:
That is a very loaded question, no pun intended. The explosive material was not specifically disclosed, it was generically referred to as a plastic explosive. These type of plastic explosives could be generic types such as PETN PENT, PENTA, TEN, Semtex.
Our facility is not qualified as a testing facility to house or use “live” explosives.
We have to use a simulate that has the same index of refraction as these type plastic explosives to test our systems and it does a very good job at finding these simulates under cloth.
The question becomes, does it work on the sensitive areas of the body, not just on headgear. Our scope for the contract was just to do headgear. So we have not done that testing internally, that is something our customer wanted to determine independently.
We will continue to work with our partners to improve the system to meet the every growing needs of Homeland Security.


 Thanks Rick and API for helping  address the Al Qaeda threat!

Friday, November 5, 2010

ADVANCED PHOTONIX to engineer low cost terahertz anomaly detection device

Transportation Security Administration, an age...Image via Wikipedia




ANN ARBOR, Mich., Nov. 5, 2010 /PRNewswire/ -- Advanced Photonix (API) today announced an agreement in principle with In-Q-Tel (IQT) to engineer a low cost terahertz anomaly detection device, and deliver multiple systems for evaluation. IQT, a not-for-profit, strategic investment firm that works on behalf of the U.S. Intelligence Community, is focused on identifying new and emerging commercial technologies that have the potential to give its customer agencies mission-advantage today and in the future.
"We are excited to have reached an agreement in principle with IQT to use our technology currently found in the T-Ray® 4000 to produce a low cost derivative for the security market," said Richard Kurtz, CEO of API. "With the help of IQT we expect to work with the end users, accelerate the testing and evaluation, and deliver multiple fully functioning systems for evaluation within one year. The fact that the T-Ray® platform is being considered for this mission speaks volumes to the performance of our system."

The T-Ray® 4000 produces ultrashort pulses of terahertz light that allow a variety of unique and novel applications to be investigated. The system's patented fiber coupling permits automated or manual positioning of the sensor heads. As a result, users can examine any size object in place, thereby eliminating the need to fit the object into a specialized sample chamber. The excellent signal-to-noise ratio of the T-Ray® platform allows even thick samples to be scanned effectively.

As a strategic partner for the Intelligence Community (IC), IQT understands complex customer requirements and constantly surveys the leading edge of the commercial marketplace in order to identify, adapt, and deliver technology solutions to its customers. This technology development agreement is designed to apply API's terahertz technology to anomaly detection. Delivered in the form of a handheld device or "wand," this technology is intended to detect external objects on the body of a person without the need for imaging or a lengthy physical pat-down procedure, avoiding the associated privacy concerns and time-consuming image review.

"We are pleased to be partnering with API to provide this important technology capability to our customers," said William Strecker, Executive Vice President of Architecture & Engineering and CTO at IQT. "Upon execution, this agreement will allow us to work together with API to adapt the product to fit customer needs."

The proposed $1,800,000 development program is designed to advance API's product to accommodate increased anomaly detection needs. The Transportation Security Administration (TSA) is providing funding to IQT for this development effort.

The agreement in principle includes a royalty agreement that is based on sales to entities other than the U.S. Government of the commercialized anomaly detection device developed under this technology development agreement. The royalty has both a monetary cap and time limit associated with all sales.

Separately, API also announced that it had entered into a Securities Purchase Agreement (SPA) with IQT pursuant to which API agreed to issue and IQT agreed to purchase approximately 198,524 shares of API's Class A Common Stock at a price of $1.0074 per share. The closing of the SPA is subject to receipt of NYSE Amex approval of an additional listing application covering the shares of Class A Common Stock issued in connection with the SPA (the Listing Application) and other closing conditions customary for transactions of this nature.

Execution of definitive documentation with respect to the proposed development agreement and royalty agreement is anticipated within the next ten business days and is subject to NYSE Amex's approval of the Listing Application and the satisfaction or waiver of the closing conditions to the SPA.
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