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[cdn-nucl-l] Some Info on CANDU Response to Seismic Events




The decision to NOT install seismic trips in Canadian CANDU plants is based on the likelihood that a multi-unit trip would lead to loss of power to the distribution grid -- maybe over a large area of North America. Consequences probably would be much larger than  those of the earthquake itself -- especially since  most of N. America is classified as a low earthquake probability area. At the same time, all modern plants are designed to respond safely even to substantial earthquakes. 

Either operator-initiated or automatic safety shutdown of a CANDU unit would follow a big earthquake, if there were any indication of plant malfunction.  Any one of several off-normal process conditions might trip the unit.

Japan is in a different situation, but even there, the vibration levels that would initiate a seismic trip in their plants are very high, to reduce the likelihood of grid power collapse.

Physical vibration of detectors, especially ion chambers, can cause an "apparent" change in neutron flux level. It is this sort of trip initiation that designers are concerned about, and likely was the thing that tripped the Japanese unit.

Dan



On 4-Dec-07, at 12:59 PM, cdn-nucl-l-request@mailman1.cis.McMaster.CA wrote:

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Today's Topics:

   1. CANDU and Seismic Events (Zigin, Marek)
   2. RE: [Rad_Sci_Health] Boreham, Scientists find low-dose radiation a benefit; Fw: Brenner/Hall paper on CT scans an hypothetical cancer risks (Jodi.Strzelczyk@UCHSC.edu)

--__--__--

Message: 1
Date: Fri, 30 Nov 2007 12:59:11 -0500
From: "Zigin, Marek" <ziginm@aecl.ca>
To: "Canadian Nuclear Discussion List" <CDN-NUCL-L@mailman1.cis.mcmaster.ca>
Subject: [cdn-nucl-l] CANDU and Seismic Events

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I just came across an article "Nuclear Power Plants and Earthquakes", http:=
now, the BWR's and PWR's (particularly in Japan) are equipped with seismic =
detectors, which are tide to shutdown system logic to automatically trip th=
e reactor in case of seismic event. What is interesting, according to this =
article "In two decades to 2004, no Japanese reactor had been tripped by th=
e seismic detectors. In those cases where the plant automatically shutdown =
("tripped") as a safety precaution, it was because of the impact of the ear=
thquake on the operating characteristics of the plant.". Can this be said i=
n defence of CANDU, since CANDU plants are not equipped with seismic detect=
ors for automatic shutdown. Would they likely trip due to a misbalance in o=
perating characteristics=3F=0D=0AFurther in the article there is another po=
int of interest: "In fact it tripped at a lower level due to variations in =
the neutron flux outside the set parameters". Does anybody understand how  =
a seismic event can cause variations on neutron flux=3F=0D=0A=0D=0ARegards,=0D=
=0AMarek Zigin=20=0D=0A=0D=0ACONFIDENTIAL AND PRIVILEGED INFORMATION NOTICE=0D=
=0A=0D=0AThis e-mail, and any attachments, may contain information that=0D=0A=
is confidential, subject to copyright, or exempt from disclosure.=0D=0AAny =
unauthorized review, disclosure, retransmission,=20=0D=0Adissemination or o=
ther use of or reliance on this information=20=0D=0Amay be unlawful and is =
strictly prohibited. =20=0D=0A=0D=0AAVIS D'INFORMATION CONFIDENTIELLE ET PR=
IVIL=C3=89GI=C3=89E=0D=0A=0D=0ALe pr=C3=A9sent courriel, et toute pi=C3=A8c=
e jointe, peut contenir de=20=0D=0Al'information qui est confidentielle, r=C3=
=A9gie par les droits=20=0D=0Ad'auteur, ou interdite de divulgation. Tout e=
xamen,=20=0D=0Adivulgation, retransmission, diffusion ou autres utilisation=
s=20=0D=0Anon autoris=C3=A9es de l'information ou d=C3=A9pendance non autor=
is=C3=A9e=20=0D=0Aenvers celle-ci peut =C3=AAtre ill=C3=A9gale et est stric=
tement interdite.=0D=0A
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<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 3.2//EN">=0D=0A<HTML>=0D=0A<HEAD>=0D=
=0A<META HTTP-EQUIV=3D"Content-Type" CONTENT=3D"text/html; charset=3Diso-88=
59-1">=0D=0A<META NAME=3D"Generator" CONTENT=3D"MS Exchange Server version =
6.5.7653.2">=0D=0A<TITLE>CANDU and Seismic Events</TITLE>=0D=0A</HEAD>=0D=0A=
<BODY>=0D=0A<!-- Converted from text/rtf format -->=0D=0A=0D=0A<P><FONT COL=
OR=3D"#0000FF" SIZE=3D2 FACE=3D"Arial">I just came across an article &quot;=
Nuclear Power Plants and Earthquakes&quot;, <A HREF="3D"http://www.world-nuc=
lear.org/info/inf18.html">http://www.world-nuclear.org/info/inf18.html</A><=
/FONT>=0D=0A</P>=0D=0A=0D=0A<P><FONT COLOR=3D"#0000FF" SIZE=3D2 FACE=3D"Ari=
al">As most of us probably know, the BWR's and PWR's (particularly in Japan=
) are equipped with seismic detectors, which are tide to shutdown system lo=
gic to automatically trip the reactor in case of seismic event. What is int=
eresting, according to this article &quot;</FONT><I></I><I></I><I><FONT FAC=
E=3D"Times New Roman">In two decades to 2004, no Japanese reactor had been =
tripped by the seismic detectors. In those cases where the plant automatica=
lly shutdown (&quot;tripped&quot;) as a safety precaution, it was because o=
f the impact of the earthquake on the operating characteristics of the plan=
t</FONT></I><FONT FACE=3D"Times New Roman">.</FONT><FONT COLOR=3D"#0000FF" =
SIZE=3D2 FACE=3D"Arial">&quot;. Can this be said in defence of CANDU, since=
 CANDU plants are not equipped with seismic detectors for automatic shutdow=
n. Would they likely trip due to a misbalance in operating characteristics=3F=
</FONT></P>=0D=0A=0D=0A<P><FONT COLOR=3D"#0000FF" SIZE=3D2 FACE=3D"Arial">F=
urther in the article there is another point of interest: &quot;</FONT><I><=
/I><I></I><I><FONT FACE=3D"Times New Roman">In fact it tripped at a lower l=
evel due to variations in the neutron flux outside the set parameters</FONT=
</I><FONT COLOR=3D"#0000FF" SIZE=3D2 FACE=3D"Arial">&quot;. Does anybody u=
nderstand how&nbsp; a seismic event can cause variations on neutron flux=3F=
</FONT></P>=0D=0A=0D=0A<P><FONT COLOR=3D"#0000FF" SIZE=3D2 FACE=3D"Arial">R=
egards,</FONT>=0D=0A=0D=0A<BR><FONT COLOR=3D"#0000FF" SIZE=3D2 FACE=3D"Aria=
l">Marek Zigin </FONT>=0D=0A</P>=0D=0A=0D=0A<br><br><table bgcolor=3Dwhite =
style=3D"color:black"><tr><td><br>CONFIDENTIAL&nbsp;AND&nbsp;PRIVILEGED&nbs=
p;INFORMATION&nbsp;NOTICE<br>=0D=0A<br>=0D=0AThis&nbsp;e-mail,&nbsp;and&nbs=
p;any&nbsp;attachments,&nbsp;may&nbsp;contain&nbsp;information&nbsp;that<br=
=0D=0Ais&nbsp;confidential,&nbsp;subject&nbsp;to&nbsp;copyright,&nbsp;or&n=
bsp;exempt&nbsp;from&nbsp;disclosure.<br>=0D=0AAny&nbsp;unauthorized&nbsp;r=
eview,&nbsp;disclosure,&nbsp;retransmission,&nbsp;<br>=0D=0Adissemination&n=
bsp;or&nbsp;other&nbsp;use&nbsp;of&nbsp;or&nbsp;reliance&nbsp;on&nbsp;this&=
nbsp;information&nbsp;<br>=0D=0Amay&nbsp;be&nbsp;unlawful&nbsp;and&nbsp;is&=
nbsp;strictly&nbsp;prohibited.&nbsp;&nbsp;<br>=0D=0A<br>=0D=0AAVIS&nbsp;D&#=
39;INFORMATION&nbsp;CONFIDENTIELLE&nbsp;ET&nbsp;PRIVIL=C3=89GI=C3=89E<br>=0D=
=0A<br>=0D=0ALe&nbsp;pr=C3=A9sent&nbsp;courriel,&nbsp;et&nbsp;toute&nbsp;pi=
=C3=A8ce&nbsp;jointe,&nbsp;peut&nbsp;contenir&nbsp;de&nbsp;<br>=0D=0Al&#39;=
information&nbsp;qui&nbsp;est&nbsp;confidentielle,&nbsp;r=C3=A9gie&nbsp;par=
&nbsp;les&nbsp;droits&nbsp;<br>=0D=0Ad&#39;auteur,&nbsp;ou&nbsp;interdite&n=
bsp;de&nbsp;divulgation.&nbsp;Tout&nbsp;examen,&nbsp;<br>=0D=0Adivulgation,=
&nbsp;retransmission,&nbsp;diffusion&nbsp;ou&nbsp;autres&nbsp;utilisations&=
nbsp;<br>=0D=0Anon&nbsp;autoris=C3=A9es&nbsp;de&nbsp;l&#39;information&nbsp=
;ou&nbsp;d=C3=A9pendance&nbsp;non&nbsp;autoris=C3=A9e&nbsp;<br>=0D=0Aenvers=
&nbsp;celle-ci&nbsp;peut&nbsp;=C3=AAtre&nbsp;ill=C3=A9gale&nbsp;et&nbsp;est=
&nbsp;strictement&nbsp;interdite.</td></tr></table></BODY>=0D=0A</HTML>
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Message: 2
Date: Tue, 4 Dec 2007 10:50:58 -0700
Subject: [cdn-nucl-l] RE: [Rad_Sci_Health] Boreham, Scientists find low-dose radiation a benefit; Fw: Brenner/Hall paper on CT scans an hypothetical cancer risks

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            Indeed, this article puts things in perspective. Great job,
Doug!

Numerous professionals and groups were disappointed with this review
article where either old or irrelevant epidemiological data are further
molested. Some examples are attached and here is a link to the AAPM
statement: =20


=20

Enjoy!

            Jodi

           =20

Jadwiga (Jodi) Strzelczyk, Ph.D.

Associate Professor, Radiology, UCDHSC

UCH Radiation Safety Officer

AMC, Leprino Building, Mailstop L954

12401 E. 17th Avenue, Room #5-547

P.O. Box 6511

Aurora, CO 80045

Phone: 720-848-6603

Fax: 720-848-7315

           =20

=20

-----Original Message-----
[mailto:Rad_Sci_Health@yahoogroups.com] On Behalf Of Jerry Cuttler
Sent: Monday, December 03, 2007 8:36 PM
To: Canadian Nuclear Discussion List; ANS Member Exchange Listserv;
Rad_Sci_Health
Subject: [Rad_Sci_Health] Boreham, Scientists find low-dose radiation a
benefit; Fw: Brenner/Hall paper on CT scans an hypothetical cancer risks

=20

Nice article ...


Scientists find low-dose radiation a benefit

Doug Boreham

The Hamilton Spectator (Dec 3, 2007)

In a disturbing study published recently in the New England Journal of=20
Medicine, U.S. researchers claimed that 2 per cent of all cancers in
coming=20
decades will be caused by routine diagnostic CT (computed axial
tomography)=20
scans.

(The report, by two researchers at Columbia University, said the average

American's total radiation exposure has nearly doubled since 1980,
largely=20
because of CT scans. About 62 million CT scans were done in the U.S.
last=20
year, up from three million in 1980. More than four million were on=20
children. CT scans use X-rays. MRI and ultrasound procedures do not.)

There are a number of biological issues that make the type of estimation
in=20
the Columbia University report inappropriate.

For decades, scientists have been trying to estimate cancer risk
associated=20
with low-dose exposure by estimating the risk from very high-dose
exposure.=20
The fact is, it is difficult to estimate risk from high, acute exposures

down to very low exposures without solid scientific data to support the=20
conclusions.

Researchers at McMaster University, for instance, are involved in
studies=20
focused on the actual biological risks associated with low- and very=20
low-dose exposures.

There are many biological reasons why risk extrapolations from high
doses=20
are not consistent with real risks at low doses.

First, cancer risk estimates from high-dose exposures come from=20
epidemiological data from atomic bomb survivors. Radiation-induced
cancer=20
risk in a war-torn population of Japanese people 62 years ago is vastly=20
different than cancer risk in North Americans today.

It is known even today that cancer risks between the two populations are
not=20
similar because of different genetic backgrounds and environments,=20
regardless of radiation exposure. Adding radiation to the equation only=20
compounds the difficulties of comparing cancer risks between the two=20
populations.

Cancer risk increases when the doses are high and acute, whereas most=20
medical procedures use low dose, from which no increased cancer risk was

observed in the A-bomb survivors. Therefore estimating cancer risk in a=20
modern North American population exposed to very low-dose radiation
based on=20
data from high-dose exposures in A-bomb survivors is almost impossible.

In cancer risk estimations, it is assumed that all doses of radiation
are=20
risky and the risk is simply proportional to the dose. However, there
are=20
hundreds of scientific publications to show this is not the case.

At low doses, biological response mechanisms can eliminate minor damage=20
caused by low-dose radiation and restore things back to normal with no=20
associated risk.

At high doses, other mechanisms are used as an emergency defence for=20
survival but these systems tend to be error-prone and consequently
increase=20
cancer risk.

Overall, biological mechanisms responding to low doses are different
than=20
those at high doses. Therefore, assuming the biological risk is the same
at=20
all doses is biologically flawed.

There are also hundreds of scientific reports that support the idea that

low- dose radiation is a necessary environmental agent required for
life.=20
Our research at McMaster University has shown that low doses can have=20
beneficial effects to living organisms, and a large research study is=20
currently under way to test the idea that low-dose CT scans actually
reduce=20
cancer risk.

Studies that investigate risk based on total dose are questionable if
the=20
total doses have been additive, like adding up the entire dose from
several=20
CT scans, because evidence supporting the idea that total risk is also=20
additive is lacking. It's like taking a bottle of medicine all at once=20
(which can be harmful) as opposed to taking small doses of it over a
period=20
of time (which can be beneficial).

If a radiation dose is spread out over a period of time (split or=20
fractionated), like multiple CT scans done over a period of time, the=20
biological consequences are known to be reduced because allowing time=20
between the exposures allows cellular repair processes to eliminate the=20
effects of the prior dose. So the risk is not proportional to the total=20
additive dose.

Therefore assuming that the total additive dose from multiple CT scans,=20
which is the high total dose required to make the calculated estimated=20
cancer risk from A-bomb survivor data, has the corresponding additive=20
biological risk may not be accurate.

Also, there are many published reports, other than those on A-bomb=20
survivors, in populations exposed to low doses of radiation comparable
to=20
doses from CT scans, which show cancer mortality is not increased at
these=20
doses.

Based on actual biological scientific evidence, and not calculated=20
extrapolation, an opposite conclusion about CT cancer risk is equally=20
plausible. That is, cancer risk in North America may be reduced by 2 per

cent over the coming decades because of low-dose medical CT exposures.

Studies that warn of increased risk based on calculations from high-dose

extrapolation from any genotoxic agent should be viewed with caution,=20
considered hypothetical, and also potentially detrimental since=20
misinformation can sometimes cause undue harm.

Doug Boreham is an associate professor in the department of medical
physics=20
and applied radiation sciences in the McMaster University Institute for=20
Applied Radiation Sciences.

----- Original Message -----=20
From: Scott, Bobby
To: howard long ; Jerry Cuttler ; Carmel Mothersill
Cc: 2007.aapm@aapm.org <mailto:2007.aapm%40aapm.org>=20
Sent: Monday, December 03, 2007 6:10 PM
Subject: FW: Brenner/Hall paper on CT scans an hypothetical cancer risks
-------------------------------------

From: Scott, Bobby
Sent: Monday, December 03, 2007 11:32 AM
To: 'Metting, Noelle'; 'Cyndi Jones'; 'kooyoomjian.jack@epamail.epa.gov
<mailto:%27kooyoomjian.jack%40epamail.epa.gov> ';=20
'Classic, Kelly L.'; 'Dicarlo-Cohen, Andrea (NIH/NIAID) [E]';=20
'stoneh@mail.nih.gov <mailto:%27stoneh%40mail.nih.gov> ';=20
'edouple@nas.edu <mailto:%27edouple%40nas.edu> '; 'Hirsch, Roland';=20
<mailto:%27david.thomassen%40science.doe.gov> ';=20
<mailto:%27kooyoomjian.jack%40epamail.epa.gov> ';=20
'Quill, Helen (NIH/NIAID) [E]'; 'Coleman, Norman (NIH/NCI) [E]'
Cc: 'Pam.Sykes@flinders.edu.au <mailto:%27Pam.Sykes%40flinders.edu.au>
'; 'Edouard Azzam'; 'brenda laster';=20
'brenda.rodgers@ttu.edu <mailto:%27brenda.rodgers%40ttu.edu> '; Edward
J. Calabrese; 'Ludwig E. Feinendegen';=20
'Dietrich Averbeck'; 'Georg Bauer'; Douglas Spitz; Gayle E Woloschak ;=20
'hsducoff@uiuc.edu <mailto:%27hsducoff%40uiuc.edu> '; 'Eleanor A
Blakely'; 'lynn.hlatky@tuffs.edu <mailto:%27lynn.hlatky%40tuffs.edu> ';=20
'clsanders'; 'Lyndy Volker'; Galina V. Zhuntova
Subject: Brenner/Hall paper on CT scans an hypothetical cancer risks

Dear Colleagues:

You are probably aware of the media coverage of the new paper by D.J.=20
Brenner and E.J. Hall entitled "Computed Tomography - an increasing
source=20
of radiation exposure" that was published in The New England Journal of=20
Medicine 357:2277-2284, 2007. Brenner and Hall extrapolated from
high-dose=20
cancer data associated with the atomic blasts that took place in
Hiroshima=20
and Nagasaki to low doses of X-rays from CT scans in clinical settings
in=20
the United States, via using the linear no-threshold (LNT) model. The
atomic=20
detonations involve gamma rays, neutrons, blast propelled projectiles,
and=20
thermal waves. The population response involved combined injuries
(wounds,=20
thermal burns, neutron/gamma-ray induced damage) and recovery in
devastated=20
cities. Without adjusting for such combined injuries, adverse
environmental=20
effects, differences in genetic susceptibilities of the Japanese and
U.S.=20
populations, and using hypothetical low-dose cancer risks, Brenner and
Hall=20
calculate that in coming decades, 2 per cent of all cancers in the U.S.
will=20
be caused by routine diagnostic CT scans.

Attached is an article published today in The Hamilton Spectator that=20
presents a different perspective on low-dose radiation risks associated
with=20
CT scans. The article was written by Doug Boreham of McMaster University
and=20
is entitled "Scientist find low-dose radiation a benefit". I thought you

may like to know about the article.

Best wishes,
Bobby R. Scott, Ph.D.
Senior Scientist
Lovelace Respiratory Research Institute
2425 Ridgecrest Drive SE
Albuquerque, NM=20

__._,_.___=20

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panose-1:2 11 6 4 3 5 4 4 2 4;}
 /* Style Definitions */
 p.MsoNormal, li.MsoNormal, div.MsoNormal
{margin:0in;
margin-bottom:.0001pt;
font-size:12.0pt;
font-family:"Times New Roman";}
a:link, span.MsoHyperlink
{color:blue;
text-decoration:underline;}
a:visited, span.MsoHyperlinkFollowed
{color:blue;
text-decoration:underline;}
p.MsoAutoSig, li.MsoAutoSig, div.MsoAutoSig
{margin:0in;
margin-bottom:.0001pt;
font-size:12.0pt;
font-family:"Times New Roman";}
p
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
code
{font-family:"Courier New";}
pre
{margin:0in;
margin-bottom:.0001pt;
font-size:10.0pt;
font-family:"Courier New";}
tt
{font-family:"Courier New";}
p.ad, li.ad, div.ad
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad1, li.ad1, div.ad1
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad2, li.ad2, div.ad2
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad3, li.ad3, div.ad3
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad4, li.ad4, div.ad4
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad5, li.ad5, div.ad5
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad6, li.ad6, div.ad6
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad7, li.ad7, div.ad7
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad8, li.ad8, div.ad8
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad9, li.ad9, div.ad9
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad10, li.ad10, div.ad10
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad11, li.ad11, div.ad11
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad12, li.ad12, div.ad12
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad13, li.ad13, div.ad13
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad14, li.ad14, div.ad14
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad15, li.ad15, div.ad15
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad16, li.ad16, div.ad16
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad17, li.ad17, div.ad17
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad18, li.ad18, div.ad18
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted1, li.HTMLPreformatted1, div.HTMLPreformatted1
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.ad19, li.ad19, div.ad19
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad20, li.ad20, div.ad20
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted2, li.HTMLPreformatted2, div.HTMLPreformatted2
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.ad21, li.ad21, div.ad21
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad22, li.ad22, div.ad22
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted3, li.HTMLPreformatted3, div.HTMLPreformatted3
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.ad23, li.ad23, div.ad23
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad24, li.ad24, div.ad24
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted4, li.HTMLPreformatted4, div.HTMLPreformatted4
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb1, li.NormalWeb1, div.NormalWeb1
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad25, li.ad25, div.ad25
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad26, li.ad26, div.ad26
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted5, li.HTMLPreformatted5, div.HTMLPreformatted5
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb2, li.NormalWeb2, div.NormalWeb2
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad27, li.ad27, div.ad27
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad28, li.ad28, div.ad28
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted6, li.HTMLPreformatted6, div.HTMLPreformatted6
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb3, li.NormalWeb3, div.NormalWeb3
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad29, li.ad29, div.ad29
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad30, li.ad30, div.ad30
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted7, li.HTMLPreformatted7, div.HTMLPreformatted7
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb4, li.NormalWeb4, div.NormalWeb4
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad31, li.ad31, div.ad31
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad32, li.ad32, div.ad32
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted8, li.HTMLPreformatted8, div.HTMLPreformatted8
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb5, li.NormalWeb5, div.NormalWeb5
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left1, li.left1, div.left1
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad33, li.ad33, div.ad33
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad34, li.ad34, div.ad34
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted9, li.HTMLPreformatted9, div.HTMLPreformatted9
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb6, li.NormalWeb6, div.NormalWeb6
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left2, li.left2, div.left2
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld1, li.bld1, div.bld1
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left3, li.left3, div.left3
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad35, li.ad35, div.ad35
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad36, li.ad36, div.ad36
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted10, li.HTMLPreformatted10, div.HTMLPreformatted10
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb7, li.NormalWeb7, div.NormalWeb7
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left4, li.left4, div.left4
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld2, li.bld2, div.bld2
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left5, li.left5, div.left5
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad37, li.ad37, div.ad37
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad38, li.ad38, div.ad38
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted11, li.HTMLPreformatted11, div.HTMLPreformatted11
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb8, li.NormalWeb8, div.NormalWeb8
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left6, li.left6, div.left6
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld3, li.bld3, div.bld3
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left7, li.left7, div.left7
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad39, li.ad39, div.ad39
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad40, li.ad40, div.ad40
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted12, li.HTMLPreformatted12, div.HTMLPreformatted12
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb9, li.NormalWeb9, div.NormalWeb9
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left8, li.left8, div.left8
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld4, li.bld4, div.bld4
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left9, li.left9, div.left9
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad41, li.ad41, div.ad41
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad42, li.ad42, div.ad42
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted13, li.HTMLPreformatted13, div.HTMLPreformatted13
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb10, li.NormalWeb10, div.NormalWeb10
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left10, li.left10, div.left10
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld5, li.bld5, div.bld5
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left11, li.left11, div.left11
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad43, li.ad43, div.ad43
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad44, li.ad44, div.ad44
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted14, li.HTMLPreformatted14, div.HTMLPreformatted14
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb11, li.NormalWeb11, div.NormalWeb11
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left12, li.left12, div.left12
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld6, li.bld6, div.bld6
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left13, li.left13, div.left13
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad45, li.ad45, div.ad45
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad46, li.ad46, div.ad46
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted15, li.HTMLPreformatted15, div.HTMLPreformatted15
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb12, li.NormalWeb12, div.NormalWeb12
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left14, li.left14, div.left14
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld7, li.bld7, div.bld7
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left15, li.left15, div.left15
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad47, li.ad47, div.ad47
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad48, li.ad48, div.ad48
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted16, li.HTMLPreformatted16, div.HTMLPreformatted16
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb13, li.NormalWeb13, div.NormalWeb13
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left16, li.left16, div.left16
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld8, li.bld8, div.bld8
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left17, li.left17, div.left17
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad49, li.ad49, div.ad49
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad50, li.ad50, div.ad50
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted17, li.HTMLPreformatted17, div.HTMLPreformatted17
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb14, li.NormalWeb14, div.NormalWeb14
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left18, li.left18, div.left18
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.bld9, li.bld9, div.bld9
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left19, li.left19, div.left19
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ct, li.ct, div.ct
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad51, li.ad51, div.ad51
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad52, li.ad52, div.ad52
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.HTMLPreformatted18, li.HTMLPreformatted18, div.HTMLPreformatted18
{margin:0in;
margin-bottom:.0001pt;
font-size:14.0pt;
font-family:"Courier New";}
p.NormalWeb15, li.NormalWeb15, div.NormalWeb15
{margin-top:0in;
margin-right:0in;
margin-bottom:12.0pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.left20, li.left20, div.left20
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ct1, li.ct1, div.ct1
{margin-right:0in;
margin-left:0in;
text-align:right;
font-size:12.0pt;
font-family:"Times New Roman";
color:#FF7900;
font-weight:bold;}
p.bld10, li.bld10, div.bld10
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";
font-weight:bold;}
p.left21, li.left21, div.left21
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.cat, li.cat, div.cat
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad53, li.ad53, div.ad53
{margin-right:0in;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
p.ad54, li.ad54, div.ad54
{margin-right:0in;
margin-bottom:7.5pt;
margin-left:0in;
font-size:12.0pt;
font-family:"Times New Roman";}
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<p class=3DMsoNormal><font size=3D2 color=3Dnavy face=3DArial><span =
style=3D'font-size:
10.0pt;font-family:Arial;color:navy'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
<!--~-|**|PrettyHtmlStartT|**|-~-->Indeed,
this article puts things in perspective. Great job, =
Doug!</span></font></p>

<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
color=3Dnavy face=3DArial><span
style=3D'font-size:10.0pt;font-family:Arial;color:navy'>Numerous =
professionals
and groups were disappointed with this review article where either old =
or
irrelevant epidemiological data are further molested. Some examples are
attached and here is a link to the AAPM statement: </span></font><font =
size=3D2
face=3DArial><span =
style=3D'font-size:10.0pt;font-family:Arial'>&nbsp;</span></font></p>

<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
face=3DArial><span
style=3D'font-size:10.0pt;font-family:Arial'><a
href="3D"http://www.aapm.org/announcements/CTScans.asp" =
</font></p>

<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D3 =
face=3D"Times New Roman"><span
style=3D'font-size:12.0pt'>&nbsp;</span></font></p>

<p class=3DMsoNormal style=3D'text-indent:.5in'><font size=3D2 =
color=3Dnavy face=3DArial><span
style=3D'font-size:10.0pt;font-family:Arial;color:navy'>Enjoy!</span></fo=
nt></p>

<p class=3DMsoNormal><font size=3D2 color=3Dnavy face=3DArial><span =
style=3D'font-size:
10.0pt;font-family:Arial;color:navy'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Jodi</span></font></p>

<p class=3DMsoAutoSig><font size=3D2 color=3Dnavy face=3DArial><span =
style=3D'font-size:
10.0pt;font-family:Arial;color:navy'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></font></p>

<p class=3DMsoAutoSig style=3D'text-indent:.5in'><font size=3D2 =
face=3D"Times New Roman"><span
style=3D'font-size:10.0pt'>Jadwiga (Jodi) Strzelczyk, =
Ph.D.</span></font></p>

<p class=3DMsoAutoSig style=3D'text-indent:.5in'><font size=3D2 =
face=3D"Times New Roman"><span
style=3D'font-size:10.0pt'>Associate Professor, Radiology, =
UCDHSC</span></font></p>

<p class=3DMsoAutoSig style=3D'text-indent:.5in'><font size=3D2 =
face=3D"Times New Roman"><span
style=3D'font-size:10.0pt'>UCH Radiation Safety =
Officer</span></font></p>

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face=3D"Times New Roman"><span
style=3D'font-size:10.0pt'>AMC, </span></font><font size=3D2><span
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 style=3D'font-size:10.0pt'> </span></font><font size=3D2><span =
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  10.0pt'>Building</span></font><font size=3D2><span =
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Mailstop L954</span></font></p>

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  10.0pt'>CO</span></font><font size=3D2><span =
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<p class=3DMsoNormal><font size=3D2 color=3Dnavy face=3DArial><span =
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10.0pt;font-family:Arial;color:navy'>&nbsp;</span></font></p>

<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
face=3DTahoma><span
style=3D'font-size:10.0pt;font-family:Tahoma'>-----Original =
Message-----<br>
<b><span style=3D'font-weight:bold'>From:</span></b>
Rad_Sci_Health@yahoogroups.com [mailto:Rad_Sci_Health@yahoogroups.com] =
<b><span
style=3D'font-weight:bold'>On Behalf Of </span></b>Jerry Cuttler<br>
<b><span style=3D'font-weight:bold'>Sent:</span></b> Monday, December =
03, 2007
8:36 PM<br>
<b><span style=3D'font-weight:bold'>To:</span></b> Canadian Nuclear =
Discussion
List; ANS Member Exchange Listserv; Rad_Sci_Health<br>
<b><span style=3D'font-weight:bold'>Subject:</span></b> [Rad_Sci_Health] =
Boreham,
Scientists find low-dose radiation a benefit; Fw: Brenner/Hall paper on =
CT
scans an hypothetical cancer risks</span></font></p>

<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D3 =
face=3D"Times New Roman"><span
style=3D'font-size:12.0pt'>&nbsp;</span></font></p>

<div id=3Dygrp-mlmsg>

<div style=3D'float:left;z-index:1' id=3Dygrp-msg>

<div id=3Dygrp-text>

<p =
style=3D'margin-right:0in;margin-bottom:12.0pt;margin-left:.5in'><font =
size=3D3
face=3D"Times New Roman"><span style=3D'font-size:12.0pt'>Nice article =
...<br>
<br>
<a =
href="3D"http://www.thespec.com/article/290638">http://www.thespec.<wbr>co=
m/article/<wbr>290638</a><br>
<br>
Scientists find low-dose radiation a benefit<br>
<br>
Doug Boreham<br>
<br>
The Hamilton Spectator (Dec 3, 2007)<br>
<br>
In a disturbing study published recently in the New England Journal of =
<br>
Medicine, U.S. researchers claimed that 2 per cent of all cancers in =
coming <br>
decades will be caused by routine diagnostic CT (computed axial =
tomography) <br>
scans.<br>
<br>
(The report, by two researchers at Columbia University, said the average =
<br>
American's total radiation exposure has nearly doubled since 1980, =
largely <br>
because of CT scans. About 62 million CT scans were done in the U.S. =
last <br>
year, up from three million in 1980. More than four million were on <br>
children. CT scans use X-rays. MRI and ultrasound procedures do =
not.)<br>
<br>
There are a number of biological issues that make the type of estimation =
in <br>
the Columbia University report inappropriate.<br>
<br>
For decades, scientists have been trying to estimate cancer risk =
associated <br>
with low-dose exposure by estimating the risk from very high-dose =
exposure. <br>
The fact is, it is difficult to estimate risk from high, acute exposures =
<br>
down to very low exposures without solid scientific data to support the =
<br>
conclusions.<br>
<br>
Researchers at McMaster University, for instance, are involved in =
studies <br>
focused on the actual biological risks associated with low- and very =
<br>
low-dose exposures.<br>
<br>
There are many biological reasons why risk extrapolations from high =
doses <br>
are not consistent with real risks at low doses.<br>
<br>
First, cancer risk estimates from high-dose exposures come from <br>
epidemiological data from atomic bomb survivors. Radiation-induced =
cancer <br>
risk in a war-torn population of Japanese people 62 years ago is vastly =
<br>
different than cancer risk in North Americans today.<br>
<br>
It is known even today that cancer risks between the two populations are =
not <br>
similar because of different genetic backgrounds and environments, <br>
regardless of radiation exposure. Adding radiation to the equation only =
<br>
compounds the difficulties of comparing cancer risks between the two =
<br>
populations.<br>
<br>
Cancer risk increases when the doses are high and acute, whereas most =
<br>
medical procedures use low dose, from which no increased cancer risk was =
<br>
observed in the A-bomb survivors. Therefore estimating cancer risk in a =
<br>
modern North American population exposed to very low-dose radiation =
based on <br>
data from high-dose exposures in A-bomb survivors is almost =
impossible.<br>
<br>
In cancer risk estimations, it is assumed that all doses of radiation =
are <br>
risky and the risk is simply proportional to the dose. However, there =
are <br>
hundreds of scientific publications to show this is not the case.<br>
<br>
At low doses, biological response mechanisms can eliminate minor damage =
<br>
caused by low-dose radiation and restore things back to normal with no =
<br>
associated risk.<br>
<br>
At high doses, other mechanisms are used as an emergency defence for =
<br>
survival but these systems tend to be error-prone and consequently =
increase <br>
cancer risk.<br>
<br>
Overall, biological mechanisms responding to low doses are different =
than <br>
those at high doses. Therefore, assuming the biological risk is the same =
at <br>
all doses is biologically flawed.<br>
<br>
There are also hundreds of scientific reports that support the idea that =
<br>
low- dose radiation is a necessary environmental agent required for =
life. <br>
Our research at McMaster University has shown that low doses can have =
<br>
beneficial effects to living organisms, and a large research study is =
<br>
currently under way to test the idea that low-dose CT scans actually =
reduce <br>
cancer risk.<br>
<br>
Studies that investigate risk based on total dose are questionable if =
the <br>
total doses have been additive, like adding up the entire dose from =
several <br>
CT scans, because evidence supporting the idea that total risk is also =
<br>
additive is lacking. It's like taking a bottle of medicine all at once =
<br>
(which can be harmful) as opposed to taking small doses of it over a =
period <br>
of time (which can be beneficial).<br>
<br>
If a radiation dose is spread out over a period of time (split or <br>
fractionated)<wbr>, like multiple CT scans done over a period of time, =
the <br>
biological consequences are known to be reduced because allowing time =
<br>
between the exposures allows cellular repair processes to eliminate the =
<br>
effects of the prior dose. So the risk is not proportional to the total =
<br>
additive dose.<br>
<br>
Therefore assuming that the total additive dose from multiple CT scans, =
<br>
which is the high total dose required to make the calculated estimated =
<br>
cancer risk from A-bomb survivor data, has the corresponding additive =
<br>
biological risk may not be accurate.<br>
<br>
Also, there are many published reports, other than those on A-bomb <br>
survivors, in populations exposed to low doses of radiation comparable =
to <br>
doses from CT scans, which show cancer mortality is not increased at =
these <br>
doses.<br>
<br>
Based on actual biological scientific evidence, and not calculated <br>
extrapolation, an opposite conclusion about CT cancer risk is equally =
<br>
plausible. That is, cancer risk in North America may be reduced by 2 per =
<br>
cent over the coming decades because of low-dose medical CT =
exposures.<br>
<br>
Studies that warn of increased risk based on calculations from high-dose =
<br>
extrapolation from any genotoxic agent should be viewed with caution, =
<br>
considered hypothetical, and also potentially detrimental since <br>
misinformation can sometimes cause undue harm.<br>
<br>
Doug Boreham is an associate professor in the department of medical =
physics <br>
and applied radiation sciences in the McMaster University Institute for =
<br>
Applied Radiation Sciences.<br>
<br>
----- Original Message ----- <br>
From: Scott, Bobby<br>
To: howard long ; Jerry Cuttler ; Carmel Mothersill<br>
Cc: <a =
href="3D"mailto:2007.aapm%40aapm.org">2007.aapm@aapm.<wbr>org</a><br>
Sent: Monday, December 03, 2007 6:10 PM<br>
Subject: FW: Brenner/Hall paper on CT scans an hypothetical cancer =
risks<br>
------------<wbr>---------<wbr>---------<wbr>-------<br>
<br>
From: Scott, Bobby<br>
Sent: Monday, December 03, 2007 11:32 AM<br>
To: 'Metting, Noelle'; 'Cyndi Jones'; <a
href="3D"mailto:%27kooyoomjian.jack%40epamail.epa.gov">'kooyoomjian.<wbr>j=
ack@epamail.<wbr>epa.gov</a>';
<br>
'Classic, Kelly L.'; 'Dicarlo-Cohen, Andrea (NIH/NIAID) [E]'; <br>
<a =
href="3D"mailto:%27stoneh%40mail.nih.gov">'stoneh@mail.<wbr>nih.gov</a>';" =
<a
href="3D"mailto:%27edouple%40nas.edu">'edouple@nas.<wbr>edu</a>';" =
'Hirsch,
Roland'; <br>
<a =
href="3D"mailto:%27david.thomassen%40science.doe.gov">'david.thomassen@<wb=
r>science.doe.<wbr>gov</a>';
<a =
href="3D"mailto:%27kooyoomjian.jack%40epamail.epa.gov">'kooyoomjian.<wbr>j=
ack@epamail.<wbr>epa.gov</a>';
<br>
'Quill, Helen (NIH/NIAID) [E]'; 'Coleman, Norman (NIH/NCI) [E]'<br>
Cc: <a =
href="3D"mailto:%27Pam.Sykes%40flinders.edu.au">'Pam.Sykes@flinders<wbr>.e=
du.au</a>';
'Edouard Azzam'; 'brenda laster'; <br>
<a =
href="3D"mailto:%27brenda.rodgers%40ttu.edu">'brenda.rodgers@<wbr>ttu.edu<=
/a>';
Edward J. Calabrese; 'Ludwig E. Feinendegen'<wbr>; <br>
'Dietrich Averbeck'; 'Georg Bauer'; Douglas Spitz; Gayle E Woloschak ; =
<br>
<a href="3D"mailto:%27hsducoff%40uiuc.edu">'hsducoff@uiuc.<wbr>edu</a>';" =
'Eleanor
A Blakely'; <a =
href="3D"mailto:%27lynn.hlatky%40tuffs.edu">'lynn.hlatky@<wbr>tuffs.edu</a=
';
<br>
'clsanders'; 'Lyndy Volker'; Galina V. Zhuntova<br>
Subject: Brenner/Hall paper on CT scans an hypothetical cancer risks<br>
<br>
Dear Colleagues:<br>
<br>
You are probably aware of the media coverage of the new paper by D.J. =
<br>
Brenner and E.J. Hall entitled &quot;Computed Tomography - an increasing =
source
<br>
of radiation exposure&quot; that was published in The New England =
Journal of <br>
Medicine 357:2277-2284, 2007. Brenner and Hall extrapolated from =
high-dose <br>
cancer data associated with the atomic blasts that took place in =
Hiroshima <br>
and Nagasaki to low doses of X-rays from CT scans in clinical settings =
in <br>
the United States, via using the linear no-threshold (LNT) model. The =
atomic <br>
detonations involve gamma rays, neutrons, blast propelled projectiles, =
and <br>
thermal waves. The population response involved combined injuries =
(wounds, <br>
thermal burns, neutron/gamma-<wbr>ray induced damage) and recovery in
devastated <br>
cities. Without adjusting for such combined injuries, adverse =
environmental <br>
effects, differences in genetic susceptibilities of the Japanese and =
U.S. <br>
populations, and using hypothetical low-dose cancer risks, Brenner and =
Hall <br>
calculate that in coming decades, 2 per cent of all cancers in the U.S. =
will <br>
be caused by routine diagnostic CT scans.<br>
<br>
Attached is an article published today in The Hamilton Spectator that =
<br>
presents a different perspective on low-dose radiation risks associated =
with <br>
CT scans. The article was written by Doug Boreham of McMaster University =
and <br>
is entitled &quot;Scientist find low-dose radiation a benefit&quot;. I =
thought
you <br>
may like to know about the article.<br>
<br>
Best wishes,<br>
Bobby R. Scott, Ph.D.<br>
Senior Scientist<br>
Lovelace Respiratory Research Institute<br>
2425 Ridgecrest Drive SE<br>
Albuquerque, NM </span></font></p>

</div>

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