Document jm8v86on5bkDR63OGojqE2gEN
-19-70 WED 15:20 FALK LIBRARY (PIT)
I
JOEM Volume 37,Number 5, May 1995
FAX NO, 6489020
P, 03
597
Occupationally Related Cancer Risk Among Coke Oven Workers: 30 Years of Follow-Up
joseph P. Costantino, DrPH
Carol K. Redmond, ScD Audrey Bearden, MS
I3-r
he cause-specific mortality panems of two la& steelworker -cohorts have been monitored shce the early 1960s by the D m e n t of Bios&ustics of tbe Graduate School of Public Health, University of Rasburgh. `-I4 Information obtained from this research was used by fed-
eral agencies to estabBsh occupetionrl exposure Iimits and to esamate carcinogenic risk in communities exposure to emissions from coke plants. The cohorts include appmxjmateiy 5 9 . W men from steel company plants in Alleghcny County,
Pennsylvania (Allegheny County Cohort) and 9,800 men from coke oven plants outside of Allegheny Cwnty, Peansylvanta (non-Alleghm y County cobM). Among other findings, the results OC previous investigators have shown a highly significant excess mortality among steelworkers em loyed as coke oven workers/-'*' `-'`This paper focuses
on mortality risk among coke oven
workers and presents the first report
of updated patterns of caw-specific
mortality experienced by coke oven workers through 1982. This updated information provides 30 years of WO& h i s ~ l yand vital status follow-up for 15,818 individuals representing all the workers included in the non-Nlegheny County cohort and a subset of workers in the Allegheny County cohort. This represmts a substanml enhancement of follow-up i m that previously reponed. On average, the updated data contained 14.5 additional years of
work expenewe and 7 years of additional viral s t ~ m sinformation for
each worker- The number of ob-
IOV-18-70 WED 15:21 FALK LIBRARY (PIT)
FAX NO. 6489020
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998 Coke Oven Workers: X-Yeer Mortality Update Costadno et a,
served total deaths was increased by 7 8 , and the observed number of deaths due to respirdtoq cancer and
cancer UT the prostate were each
increased by mom than 25%. In ad-
dition to providingdata for assessing the loog-term carcinogenicrisk from occupational exposure to coke oven emissions, an import;mt ;rspect of obtaining long-term fdlow-up data
is that it can be used to assess patterns of carcinogenic risk across periods oE time before d after the implementation of environmental emission controls and occupational
exposure limits.
Materfals and Methods
The non-Altegheny County cohort comprises coke oven workers and frequency-matched non-oven steelworkers employed from 1951 to 1955 at 10 coke oven plants outside of Allegheny County. These plants 32e lwated in areas thmughout the United StaLes and Canada. The original Allegheny County oohon consists of workers employed in 1953 at seven steel plants within the county. ~ W Oof which are coke oven facilities.
The Allegheny County cohort subset reported in this study includes all coke oven workers from these two facilities.and a matched smple of
mn-cike oven workers. For both
cohorts. the sampling vf non-oven
workers was performed at a 2:1 ratio
(when possibte) where non-oven
workers were matched by age, mce, and date of first employment.
The specific rnehdofogy for constructing the cohorts. classifying work a r e i ~ ~an, d obtaining updated work hisrory and vital status information has k e n &$ailed in previous
I.3-6. I 2 The popuhtiorr of individuals classified as coke oven ;u#i non-coke oven control workers has changed slightly from that describecl in prior analysis. Coke oven work history experienced by individuals subsequent to previous assessments required the reclassification from non-oven to oven worker of 23 indi-
viduais. Also. in the process of up-
ciilting information it was possible to
verify work histories included in .prior analysis. On occasion. when verifying the classification of work histories previously obtained, de-
scriptions of some workers' jobs
were discovered t h t wccc muLe detailed than chose available previously. .ha result of ibis more detided information, the classification of 32 *additidworktrs was rnodikd.
Previously, work history infomation on file was complete only through I966 for the non-Allegheny County cohort and through I970 for the Allegheny County cohort. Vital status was complete only through t975. In this report, all work history
and vital status informationwere cx-
tended though 1982. Original plant work records were reviewed and ab-
stractedby staffof thc Department of
Biostatistics. 'Iheidentificationof vital status for those no longer employed in the sael industry wps obtained from employerbenefir ceconfs iind tiom the Social Security Administration. Verification of all deaths was made by obtaining P copy ofthe deah certificate from the appropriate
state bureau of vital statistics. To be
consistent with the clavsification
scheme wed in prior updiues, the underlying cause of death far each
newly identified decedent was c d e d according to the sevenrh nvisim of the international classification of dis-
eascri.Is To maintain continuity of
job categorization. 311jobs were also coded accordiag IO the previously defined c1;lssification strategy. These
classitications were defined m the
basis of the physical location in which il worker was stationed during the performance of his assigned job.
Coke ovenjobs were subsequently grouped i n b thvx main caiegories. The categories inulude jobs in which: ( I ) all of the work effort was spent on the top of the ovens (topside fiit!-time); (2)part of the work effort was on top and some of the side of the ovens (topsidepart-time):,and ( 3 ) all ut'thc work effort was on the side of the ovens (side). Workers ut jobs
on the top area of rhc ovens recejved
the highest levels of exposure to
coke oven emissions. Exposure
coke oven emissions for each groq
was measured io terms of coal ta
pitch volatiles (CTPV),the class o
polynuclear aromatic hydrocarbon
d13t is tht: benzene-soluble frroctiol
of total particulate
The av
m g e daily exposure for the job cot.
egcwies w8$ determined in previousl!
published work as 3.15 m@m3 fa
topside full-time jabs, 1.99 mgim
for topside part-time jobs, and O.S{
mdm3 forside jobs.I4 The m a a m
ments used to develop these average
w e n obtained by an extensive indus
trial hygjenr survey conducted in t h ~
Iate 1960s. Unfortunately. exposun
measuEments for subsequent ped.
ods are not available. 'rhus, the dc
veiopment of a definitive curnulotivc
exposure measure that would incop
prate changes in e x p u r e pat-
over time was not possible. How-
ever, a wei&ed exposure i&x %-
counting for the relative JifTerenm
in exposure intensity of the thrse
classifications of coke oven jabs was
determined for each worker and used
as an indirect measure of e x p o w
response. This index was det'inedas
W sum. over all jobs. of the pmducl
of the number of months ut ajob ami
the weight for that job. The weights
chosen forLopside futl-time. topa
part-time:, a d side oven jobs wett
thc average exposure IO CTPV of
3. i 5. I .99,and 0.88,mpectively.
lnternnlly standardi7ed esdmadcs
of relative risks for cluw-specific
mortality were cdculated using an
extension of the Mantel-Haend
stutistic, using non-oven workers
the baseline. The cstimotes vm%
tested for sWistical signiticance us-
ing a suhrnory x' with one d e p e of
In addition, tests Of
trend were pertomed to evaiuate thc
expnsure-response re~ationshipfor
years of employment and for ledE
of weighted exposure index." w-
tality among coke oven workers u*F
asses.& by race for 33 categoria Of
cause of death. Patterns of mOrmliv
from cancer of the lung. trachea,
imnchus ond OM pramre Wmcr
were further assessed through
FAX NO. 6489020
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JOEM Volume 37,Number 5, May 1995
599
TABLE 1
EJurnberofWorkers by Cohort and Race
Allegheny County Non-Akgheny County Totrd
White Nonwhite
-.-
Tdal
Whrte Nommrte
Total
Wh#o
- -bhwttcte
TOM
985 la60
2025
1d 3 6
--1860
3296
2401
- -2920-
5321
1967 2065
a2
2886 3579
I___
64s
4863 5644
10,407
2932 3125 6057
4322
-_5439 9761
7254
8564
15.818
@sons of re[ative risk by yean of coke Oven employment, CTPV. cumulative exposure levels and period of follow-up. All relative risks were adjusted for age, race, coke plant and period of follow-up, as appropriate. These annlyses were accomplished using the software package OCM A P . ~ O - * ~ In the circumstances when tbe expccted number of deaths fop a given analysis was less than 5, the relative risk was not reponed.
Results
The distributionof workers by cohort, wwk area, and face is shown in Table 1. A total of I5,818 me0 are hcIuded in tbs analysis. Of these, 5,321 are coke oven workers and 10,497 are non-oven workers. The Propartion of nonwhites from each
cohort is similar: 56% for nonAllegheny County and 52% for Allegheny County. There is substantial
variation in the racisJ.distribution by
work area, which js evident in both cohorts.Table 2 provides the distribution of coke oven workers by work areas rlr time of entry into the study. Overall, 69% of coke oven workers who worked topside full-time are RonwhitE. Among those who worked topside part-time, only 9%m nonwhite. Among non-cwea workers,
54% are nonwhite. The relative risk of cause-specific
mortaIity among coke oven wcvkers
is shown in Table 3. Statidcdly
significant excess mortality is present for seve~alcategories of
deaths. The relative risk for ail causes of death is 1.11 (P< .001).
This increase in total mortality is primarily the result of excesw in
deaths due to cancer, particularly deaths due to respiratory and genitourinary cancer. The rdarjve risk for
ail cancers is 1.38 (P c .mi)f,or
respiratory cancer 2.07 (P < -001).
and for genitwtrinary cancer 1.49
CP < .01). The excess death from
respiratory cancer is atujbutable to elevated risks from cancer of the lungs, bronchus, and trachea, where
the dative risk is 2.13 (P< .001).
The excess death from genitourinary cancer is due to elevated
risks from prostate cancer where rhe relative risk is 1.60 ( P < .Ol). These findings rn consistent acms racial
categories (Tabk 4). However, the
excess risks are greater among the
nonwhite workers than orthe whitt
worker;.
To further assess the nature of rcspinrory cancer risk. determinations of relative risks by three measures of exposure to coke o v a emis-
sion were undertaken. This included evaluations by years of empIoyment at coke wen jobs, by years of em-
ployment at jobs on top of the coke ovens, and by C P V cumulative exposure. Table 5 provides the relative risk of death from cancer ofthe lung, bronrhus, and trachea among coke oven workers by 5-year increments of employment at coke oven jobs.
The risks for individuals who
worked lessthan 5 years at ovenjobs
TABU 2
Distribution ofW e Oven Workers by Cohort, Race, and Work Area at Time of Entry into the Study
C-
'L----,
Megheny County
Race
WIt9 Nonwhite Tatal
Topside FulCflme Tapside PW-Tlme
Number Pmtxmt Wwnbcr & r a m i
77
~- 226
303
25.4
-74 6
tco.0
304
a
__I
312
97.4 2.6
c__
1W.o
-Side ovnr
W m b -a -P-~rccnt
584 41.4
-_ 828 --- 58.6
1410
100.0
Nan-~i-cg~nty 1 Total
4-
white NonMie
286 584
32.5 67.5
____l__-
Totel
880 100.0
w\M? 363 30.7
Nonwhie
a20
68.3
------------
Total
1183
700.0
324 85.9 826
53
14.1
1213
-PI--
377
1W.O
2039
628 gT.1 1410 61 8.9 2039
669
100.0
3449
40.5 59 5
100.0
40.9 SB..
100.0
Totd
_I_-__I
Number Percent
965 47.7
-io60 __52.3_ 2025 7oao
14%
- 1-8-8-0
3296
43.6 56.4
100.0
2401 2920
45.1 54.9
5321 100.0
NOV-19-70 WED 15:24 -I--
FALK LIBRARY (PIT)
FAX NO. 6489020
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TABLE 3 Relative Risk of Cause-Specifi Mortality Among All Coke Oven Workers
CWSOdDaelh
--
All causg
DN.oe.thofs
2291
R1.k 1-08""
964L Con(ldrclCs
Lhlb
I 02-1.14
5B6 12 199 25
25 69 264 255
9
87 sa
1 12 16
40
4
40 1079
163 701
83 132
I25 81 36
45
15
23 130
66
66
140
1.341.25
0.88 0.6s
1.11
0.m 1.89-
1.95-
0.m
1.497.57
t
2.03 1.14 t .26
t
1.01
1.02 0.90 1.03 1.03 1.12 1.18 0.82 0.69 0.97 1.13 0.60 1.04
1.04
1.17 1-04
?.1%1.50 0.60-2.66
a.70-1.ti
0.41-1.12
0.66-1 .a6
.z0.67-1
1.55-225 1.5s-2.33 0.41-2.34 I . 11-2.01 1.09-2.30
t
O.Eb1.53
0.131-2.12
am-1.90
t
0.137-1.B 1
0.9c1.10 0.74-1.09 0.94-1.74
0.78-7.38 0.84.1.4`1
a.a-i.4a 0.82-1.08 0.96-1 -03 0.661.41 0.57-2.28 0.37-1.02 0.63-1 30 0.78-1.41 0.84-1 -63
0.84-1.30
t Not determinsd when capsctsd values were less than 5.
CNS,central nervoussystem: HO, Asart disease.
is 1.33. The rites peak for those wha worked 15 to 19 years at suchjobs is
2.91. T h i s trend of increasing risk
W N I i~n~cIreasing years of employment
is highly significant (P < ,001).Tn-
ble 6 provides this same type of analysis, but is based on years of employment on topside coke oven jobs, rhc jobs that have the highest
levels of exposure to coke oven ermssions. An even stronger exposure-response relationship is evident
using this d4nitioa uf cuke oven exposure. The relative risk for an individual wodcing less than five years at top-side jobs is L6?. The
rclative risk for an individual who
worked 15 yean or more at topside
jobs is about 2.6 times as high at
about 4.4 (trend &st: P < .001).
Relative risk by levels of weighted exposure index also revealed a
strong exposure-respnnse relarionship (Table 7). The nsks across cat-
egories of exposure exhibited more
-=than a 3-fold increase @end test:
P .OOI).
Efforts to assess exposure-re-
spoase relationship for deaths due to cancerof the prostate were restricted due to thereiative mfrequmcy of this event. Assessment was thus limited to the analysis acms weighted exposure groupings. which had to be mi-
Lapsed to only four categories. The
results of this analysis is S ~ O W Oin
Table 8. From this data the existencl of an exposure-responserelationshil is not dear. The relative risks fa those in the highest and lowest expo sure categories are similar at 1.4 whereas the relative risk for those t the middle exposure category is 1.9
To determine if the risk of lunl cancer mortality among the coho1 was constant over time, relative ri& by categories of weighed exposun
index were determined for thm p
ri& of fonow-up: r b u g h 1965 1966 to 1975, and 1976 to 198;
(Table 9). When controlling fm ex @.sure index, there appears to be 3
amnuation of risk over time for rll categories except that of 1 to 199; Tbe attenuation is apparent in 1966-to-1975 interval and is sw.
tained in the post-1975 interval. De
pending OR the category of exporn index, the relative risks before 1966 are about 1.5 to 4 times greatertha those after 1975.
Discussion
The resulrs presented here an consistent with the findings rrported from previous updates of both thc
Allegheny m d nun-Allegheny County cohons. Occupational e x p sure lo coke oven emissions is assw ciatcd with excess mortality fconr cancer of the respiratory system and cancer of the prostate. The naturc af
the association for cancer of the respintory system is very strong. Gem enlly speaking, the relative risks by subgroups are large and stndsticajly highly significant. Exposure-respowe rehtionships- are evident when considering both years of em ployment at coke oven jobs rmd weighted exposure index. In addition. the magnitude of the exposures response relationship is enhanced with a condition on years of emplay-
rnent at those jobs with the intense exposure, spccificdty jobsd top of the coke oven, These fin-
provide strong evidence SUP*:
the contention that the noted @:
ition between respiratory c m
occupational e x p u r e to
emission is in fact B casud
dOEM Volume 37,Number 5. May Y 895
FAX NO, 8489020
P, 07
6M
Ail cau6es
891 1.04
0.96-1.13
All I;ancers
Buccal and pttarynaael Digestive aod pernsrneal
Largeintesfne
PC#XEitS Other digestive
Respiratcr], lungs. bronchus,trachea
Other respfmtory
Ganito-&nary
PlUstatB
lastis and othsr genital
Kidney
Bladder and other winery
LWWBnbMmmFJOieuc
skln
All other mcer Cafdiww-rend disease
Vascular ;edom of CNS Arteriosclerotic HD Hypertensive HD other csrbiwaacutar-mal brnalignant nsptratory Nonmalignant digestive c i s i s of iiw othw nonmahgnant q e s -
tlve
7ubercutosis ~#betesmennus Acclelenm Hdmicidrs and suicides K-defind causes
mAll CaUBes
213 7
38
8 11
27
86 92
3 37
19
0 8 10 17
2 19 450 54 33
14 49 $0
33
12 21
3
6 57
19 20 40
1.24 1.52 0.87 0.441.05 1-09 1 59" 1.62"
t
1.57. 1.77
t
t
am
1.14
t
7.73
asa
0.89
1.oo
D.92 1SI9 1.12 0.71 OSO' 0.92
I
0.47 1.73 1.14 1.74 0.92
1.0&7.48
0.543-4.31 0.a-1.23 020-0.94 0.52-2.1 6 0.88-1.74 l.l*ZlZ 1.2&2-?7
t
1-03-2.44
0.M6 t
t
0.461.97 0.64-205
t
0.65-13 7
am-1-11
0.64-1.22 0.88-1.14 0.4&1.71 0.76-1 56
0.79-7 59
0.47-1.05
0.25n.32 0.55-1.54
t
0.2c-1.11 B.82-1.56 0.65-1 -99
0.943.27 0.633-1.34
'P < .05, "P .01,"'P c .w1.
T Nol detennined if the obaemd md expected v a l w were less than 5. CNS, centraJ newus system; HD. heart dlseasa
1400
353 5
73 71 14 42 179 173
6 50
39
I 4 6
23
2 21 629 109 368 # 83 75 40 24 24
123 17
73
47 48 f 00
1.11-
7 .e
f
0.89 1.O? 1.17 0.79 2.12'2.220.89 1.42 1.4f
t t
7.93 1.39
t
0.90
1.05 0.91 7 .a7 1.06 1.14 1.24
0.96 0.# 1.03
0.98 0.71 0.96
1.oo
1.oo
1.71
1.04-1 2 0
127-1.66
t
0.66-1.22 asi-2.02 0.5G2.43 0.54-1 .18 7.64-2.70 1.?0-2.84 0.3Q-2.69 o.gc212 093-2.37
t
t
0.61-5.84
0.78-2.48
t
0.50-1.59 0.94-3.16 0.71-1.16 0.9.3-1 2 4 0.78-1.45 0.84-1.53 0.88-1 .'tD 0.85-1.41 0.53-1.53 0.54-1.79
o.46-2.ia 0.3&1.37
0.71-1.31 0.69-1 .d4
0.m-1 .a
0.8s: -4s
hi.Similar fiidings have &en reparted from studies conducted
throughout the world.*" Smoking hisrories of the workers
hluded in this study are not available. Although we were not ab!e to
Wntrol for smoking in OUT analysis, is not likdy that differtnCCS be-
been coke oven workers and nonwen controj workers m regard to Smoking habits could be SO substantial as to change inferences regarding thr? association of c&c oven e x p
and iespiraiory cancer. Thb conclusion is based on h e find-
ings. FirsL atre is a strong exposureresponse relationship. If the association between coke oven employment and respiratory cancer
was actifactlial, caused by a differ-
ence in sindung panem, one would mt expect to see such signifint
exposure-response findings. Second, the non-oven workers were pIant-
specific internal c m ~ n o l smatched by age. race, and date of hire. They
represeat blue-collar cdleagues of the coke oven workers who for the m m past reside in the same communities as the coke oven warkcrs.
Based on socioemnomic and demop p h i c factors. it is un&cly that there is any substantial differences in smoking habits between the coke oven worlrers and non-oven conmIs. Third, the respiratory cancer risk for some top-si& categary coke oven workers with at least 10 years of employment show a 4.5-fold increase compared with non-oven
workers. Differences in smoking
habits between these worken and controls would have to be very ex-
mme to negate a relative risk of this m@tude." Estimates of the effect
i
-19-70 WED 15:26 FALK LIBRARY (PIT)
FAX NO, 6489020
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602 Cake Oven Workers: -Year Mottality U W e 9 Castantino a J
-TABLE 5
Relative Risk of Dmth from Cancer ofme Lung. Bronchus, and TracheaAmang All Coke Oven Workers
Yeam oi Cake
No. at
No. of
Relathe i%%conRd.nco
WhnpioVmont
Risk
R i a urnits
0
10.487
203
1.oo
1-5
1724
39
1.33
0.92-1 .a9
543
524 ia
1.37
0.a-2.51
10-14
503 26
I-&?
T 26-2.99
15-19
533 47
2.91"
2.27-4.52
120
P-value
2037
125
2.71
1 .%2.85
Trend tact
c.001
'P e .M.-f < .001.
~~ ~
TMLE 6
RelaWe R id Oeath from Cancer of the Lung, Bronchmand Trachsa among All Coke Oven Workers Who Worked Top-Side Jobs
0 1-5 5-9 10-1 4 15-13 220 Pvalue Trend lest
'P < .os. " P .Dol.
10,497 856 362 23t
152 248
203 31 24 24 20 27
1.a0
1.w
2.584.254.45" 4.34-
.W1
1.41-2.51 1.75-4.23 291-7.14 279-7.56 ZH94B7
-~
-~
~
TABLE 7
Relative Risk ofDeath from Cancer of the Lung, Bronchus, and Trachea Among
Ail Coke Oven Worlcers by Weighted Exposure Index
-Weigbd Erposure No. at
Index (mghn3 mo) Wsk
No. of
Deaths
Retathe Rlrk
95% Confidence Limits
0 1-49 50-184
200-349
360-499 500- 649 2650 P-value Trend test
10.497 1576 1062
976 882
348 677
203 34 43 56 39 27 S6
la0 7 24 1.58 1.96' 2.02'
2.er
3.13'
c,001
o.aw.81 1.13-2.27 1.482.79 1.55-3.19 1.98-4.57 2.4S4.56
'P .= ,001.
of confounding indicate that a differ- primarily began in the early 1970s to ence as large as 90% smokers in implement emissions controls and to coke oven workers and 30%smokers reduce levels of occupational expoin contrnis would be sufficient to sure through the use of protective negate conctusions of rssociation for devices (respirators, work-am isolarelative risks of on~y2.5 OI ~ower.~" tion cabins, etc) have been benefi-
The reduction of respiratory can- cial. Mowcvw, an alternative expta-
cer mom~icyrisk Over intervals of nation couId be that intensity of Cotlow-up suggests that &om that exposun is a critical fxtm and thar
those who obtain a ceruin level of
exposure in rhe first interval of fa-
low-up have a greater intensity of
exposun: than those who obtain the same level of exposux after 30yem a follow-up. Additional work should be undertaken to resolve this
issue. A worthwhile assessment would be to compam the reSUlts from this study with those from a simi~m
investigation conduced among a new cohort of workers using a point
in time. around 1975 as the time window of employment far c-
entry. However. the most efficient time 10 undertake such m invesliga-
tiocl would be after 1995, when available follow-up would exceed 20 years, thereby providing a reasonable
l i k e i i b d of detecting occupation.
ally d a t e d lung cancers. Sam+ size considerations may necessitate an even Ionger period of follow-up.
Employment in the steel indusmy has been declining for many years, and
the rnnnber of individuals entering the industry as new employees hap been low. Thus, a LSn5-based cohm
would be much smaller than those
available From eariier time periods and would contain only P small proportion nf ernptoyees whose work history was concenttared in periods
after enactment of occupationai ex-
posure standards. ln contrast to the findings regard-
ing respiratory cancer, excess mortality tiom cancer of the prostab:has
not been a consistent finding in Othef studies among steelworkers. Inter-
preting the nature of the noted ciniiori iwtwwn exposure to C&
oven crnivsions and prostate in this study is not as sraigtttfomd
*as it is for respiratory cancer. This
dificulty is primarily due to sparseness of data for stratifiede d ucltion. There were only 58 canCfls
of the prostate observed in the 4
worker population. Thus, cWs'
classificationof risks by type o f c d oven job and duration of mP!Oy' men1 is limited. As such, it is &*;
wir w make sound
regarding expsure-responM
tionship with this disease.
n nn
1
ai JOEM Vdume 37,Numbor 5, May 1995
803
of
31-
of
he
31s
Irk his
31
m b
a
lint me
olt at
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`Bs
lzt 5c
ds
*0-
ds x-
dm-
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er
P
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a
ci
rc
i
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J
r
r
S
Y
I
mu 8
Rdative Risk of Death from Cancer of the Prostate m n g NICake oven
Workera by weighted Exposure Index
WdgMadEXVSW3
*.at
mderr(rn@n+`-mo) - R i
Y
0 10,497
Naof
beam
61
Rsrativc
Rick
1.oo
95KConfldence
--urnits
7-199
200-389 2400
P-uakrs
2838
1276 1407
21
20
17
1.43
1.93` 1-44
0.a1-237
1.I1-3.21
0.80-2.41
Trend test
0.51
- -~- ~~
TABLE 9
Math Risk of Des# from Cancer of the Lung, Bronchus, and Trachea Among AI1 cake Oven Workers by WeQhted Expasure tndex zvrd pniodof Fdlcvzr-Up
No. of deaths
P
t-lW 2Cw399 2clM99
2800
Rprtative risk
P-value Tmnd test
0 1-199
200-399
400-589 -a0
`P < .05. `* P C ,061.
10,497 3072 1304 534 411
44 17 22 9 27
IM) 1.09
3.00" 3.356.7F
<.001
9426 2314 1181
550
465
72
33
m
17
22
1.00 1.66 1.71 2.40-
2w
<.Dol
8010
1840 855 453 439
a7 27 23 17 15
1.oo
120
1.w
2.29"
1.67
,021
Rostate cancer is essentially a dis cse of oider men. Death from this ascast among workers under 60
of age is relatively rare, with
thc majority of deaths occurriog afkr %e 74. Based on age of last follow-
UP, the proportion of workers over Ihe age of 74 was oniy 16.7% and 10.0% for the AUcgheny County and
Nan-Allegheny County cohorts, rewtively. To adequaWy cvalnatc
association between prostate cm-
Ccr and occupational exposure to coke oven emissions, it may be nee-
to follow the cohosts for sev-
aal more years to obtain the in%sed numbers of observed cilsw
required for an adequate evaluation of this cancer risk. Approximately 59% of all themen kingfollowedin these cohorts were still alive at the
end of 1982. About haIf are under age 60,and 80% are under age 70. Thus. additionai follow-ilp could provide information usefut for this t y p of evaluation.
Th: association betwceo CTPV exposure and respiratory cancer could be expfored further by tnathematicat m~dehgwith muItistage"
and twostagc" models of carcinogenesis. Work to incorporate time-
dependent exposure patterns into tbese modtls and to develop com-
puter soft war^ ta handle large-cohort datasets has been recentlycompleted
by our g r ~ u p . ' ~N~o'nupdaced information from sub.sets of tbe cohurt
was used for this work. Findings from the prellirnjnary assessments
made in Coajunction whh this work suggat a possible late-stage carcinogcoic effect of cxymure lo cokeoven
emissions in addition TO a0 earlystage effect. We uliN attempt in future to assess the validq of these tindings by nndertaking a comprehenshre quantitative risk assessment applying the extended models to the full complement of data now available for the cohort.
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The Radar That May Save Lives, If Allowed To
As thunderstormsrumble acms tht summer sky. the Federal Aviuion Administmiion is two
ycm bchiad scheduk on a pfanned 47-airpon radar system that could warn pilots of violent
wind shits. "his d
s , ..c r d of a US Air DC-9 might have been pnvenred if charlotte's
jetport httd what f known as Terminal Doppler Weather Mar. Charlotte was schrdulrd to get
a 120-foorhigh h p g e r tower a year ago, but thc governmwr and the property owner could not
agree on a price for the land. Charlotte is not alone. Tht towers must sit 8 to 12 miles from the
a i r p m and io llne w i l runways. New Yorkes. objjecting to ugly towers near their homes and
womcd about cadiation (a fear h e FAA terms groundless)lmveblocked systemsiu Kennedy and
L3Cmrdiu airports. Uthrr sites am snagged in cfispures over wetlands. hazardous dumps. and
hdm ZdfraCts. h d,only 10 towers have ken delivered. The fist one to help p h c t I d - d t
Houston-is .&.duled 10 beyin service this month.
1From dOUTLOOK." in US.News & World Report, July 18, 1994, p 8.