Report Looks At How Much Radiation We Get From Airport Scanners

A new report by an independent task force commissioned by the American Association of Physicists in Medicine (AAPM), has found that people absorb less radiation from airport X-ray backscatter scanner than they do while standing in line waiting for the scan itself.

Measurements made on two scanners in active use at Los Angeles International Airport (LAX), as well as seven other scanners not in active use at the time of measurement, found that full-body scanners deliver a radiation dose equivalent to what a standard man receives every 1.8 minutes on the ground, or every 12 seconds during an airplane flight.

Put another way, an individual would have to receive more than 22,500 scans in a year to reach the standard maximum safe yearly dose determined by the American National Standards Institute and the Health Physics Society, according to AAPM Report No. 217, "Radiation Dose from Airport Scanners."

“This report represents a wholly independent review of the X-ray scatter airport scanners and is the first we know of to look at multiple scanners including those in actual airport use," said Christopher Cagnon, PhD, DABR, the chief of radiology physics at Ronald Reagan UCLA Medical Center and one of the lead authors of the new report. "We think the most important single take-away point for concerned passengers is to keep an appropriate perspective: the effective radiation dose received by a passenger during screening is comparable to what that same passenger will receive in 12 seconds during the flight itself or from two minutes of natural radiation exposure.”

Sources of Radiation

Natural sources of radiation on the ground include terrestrial sources such as radon in the air, cosmic radiation from space, and even the decay of potassium in the human body. Radiation doses are greater in the air because at cruising altitude, there is less atmosphere to shield passengers and crew from cosmic radiation.

To compare naturally occurring radiation with that emitted by airport scanners, AAPM convened a volunteer task force comprised of medical physicists from the University of California, Los Angeles and the University of California, Davis who donated their time. They measured the radiation delivered by Rapiscan Secure 1000 SP backscatter X-ray scanners, a model once commonly used in American airports but which the Transportation Security Administration has largely pulled from major airports due to passenger concerns over privacy.

T

he task force found that for a standard man -- approximately 178.6 cm (5'10") tall and 73.2 kg (161.4 pounds) -- one full-body scan delivered approximately 11.1 nanosieverts of radiation. (The "Sievert" is a common unit of radiation dose, and one "nanosievert" is one billionth of a sievert.)

On the ground, the same man receives approximately 3.11 millisieverts of radiation per year -- more than 10,000 times as much. The task force also found that the radiation dose a passenger receives during an average 2.84-hour plane flight -- 9.4 microsieverts -- is nearly 1,000 times greater than the dose delivered by one full-body scan.

"To our knowledge, all prior studies were contracted by the government and looked at a single scanner that was either of an older model or mocked up from component parts," Cagnon said. "A significant difference in our work is we were able to look at multiple working scanners both in the factory and in an international airport."

The AAPM report found that the LAX scanners emitted doses that were even lower than reported in the government contracted studies. The report also examines dose to skin and other superficial organs. To avoid any appearance of conflict of interest, this work was performed by independent physics experts volunteering their expertise, Cagnon added.

Featured

  • Gaining a Competitive Edge

    Ask most companies about their future technology plans and the answers will most likely include AI. Then ask how they plan to deploy it, and that is where the responses may start to vary. Every company has unique surveillance requirements that are based on market focus, scale, scope, risk tolerance, geographic area and, of course, budget. Those factors all play a role in deciding how to configure a surveillance system, and how to effectively implement technologies like AI. Read Now

  • 6 Ways Security Awareness Training Empowers Human Risk Management

    Organizations are realizing that their greatest vulnerability often comes from within – their own people. Human error remains a significant factor in cybersecurity breaches, making it imperative for organizations to address human risk effectively. As a result, security awareness training (SAT) has emerged as a cornerstone in this endeavor because it offers a multifaceted approach to managing human risk. Read Now

  • The Stage is Set

    The security industry spans the entire globe, with manufacturers, developers and suppliers on every continent (well, almost—sorry, Antarctica). That means when regulations pop up in one area, they often have a ripple effect that impacts the entire supply chain. Recent data privacy regulations like GDPR in Europe and CPRA in California made waves when they first went into effect, forcing businesses to change the way they approach data collection and storage to continue operating in those markets. Even highly specific regulations like the U.S.’s National Defense Authorization Act (NDAA) can have international reverberations – and this growing volume of legislation has continued to affect global supply chains in a variety of different ways. Read Now

  • Access Control Technology

    As we move swiftly toward the end of 2024, the security industry is looking at the trends in play, what might be on the horizon, and how they will impact business opportunities and projections. Read Now

Featured Cybersecurity

Webinars

New Products

  • QCS7230 System-on-Chip (SoC)

    QCS7230 System-on-Chip (SoC)

    The latest Qualcomm® Vision Intelligence Platform offers next-generation smart camera IoT solutions to improve safety and security across enterprises, cities and spaces. The Vision Intelligence Platform was expanded in March 2022 with the introduction of the QCS7230 System-on-Chip (SoC), which delivers superior artificial intelligence (AI) inferencing at the edge. 3

  • Compact IP Video Intercom

    Viking’s X-205 Series of intercoms provide HD IP video and two-way voice communication - all wrapped up in an attractive compact chassis. 3

  • A8V MIND

    A8V MIND

    Hexagon’s Geosystems presents a portable version of its Accur8vision detection system. A rugged all-in-one solution, the A8V MIND (Mobile Intrusion Detection) is designed to provide flexible protection of critical outdoor infrastructure and objects. Hexagon’s Accur8vision is a volumetric detection system that employs LiDAR technology to safeguard entire areas. Whenever it detects movement in a specified zone, it automatically differentiates a threat from a nonthreat, and immediately notifies security staff if necessary. Person detection is carried out within a radius of 80 meters from this device. Connected remotely via a portable computer device, it enables remote surveillance and does not depend on security staff patrolling the area. 3