Document 5L0ZNRxZQQGXGvzxmbBYzaVY5
FILE NAME: Asbestos Mining (ASMI) DATE: 1931 DOC#: ASMI004 DOCUMENT DESCRIPTION: Journal Article - A Review of Pneumoconiosis
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A REVIEW OF PNEUMOCONIOSIS
FURTHER ROENTGENOLOGICAL AND PATHOLOGICAL STUDIES* By HENRY K. PANCOAST, M.D., and Kl'GI-NE P. PI'.MlhKGR \SS, M.I).
P HI L U H . L I 'HI A, PKNNS 1 I.V \ \ I \
T N 1925, at the request of the Editor of the American Journal of Roentgenology
and Radium Therapy, we reviewed the roentgenological and pathological aspects
of pneumoconiosis in a paper presented before the American Roentgen Ray Society and published in the Journal''" of that vear. A more complete presentation of the sub ject was made in a monograph"1 published in 1926. The condition has aroused a sur prising amount of interest throughout the civilized world in the short time that has elapsed since then, and especially in .his country. Papers have appeared in great numbers, further experimental work has been done and numerous investigations have been carried out, especially here, by federal and state health bodies in connec tion with many industries. For these rea sons it has seemed pertinent to present a further and up-to-date review of the sub ject to the body of roentgenologists.
This increasing interest in the subject is a recognition of the great importance of the condition of pneumoconiosis as a more or less necessary risk of commercial develop ment in the progress of civilization during recent years. This has led to the enactment of adequate compensation laws and regula tions governing the adoption of safety measures intended to eradicate or modify the essential dangers of occupations by many countries, notably the South African Union, Australia, New Zealand, (beat Britain, Germany and one of the Canadian Provinces. In this country we have no federal laws directly applicable to the en forcement of controlling measures or com pensation. In only a few states is pneumo coniosis a compensable disease. Some states enforce regulations directed toward pro tection of workers. It is a condition which is all too prevalent in America without ade-
quate oversight, bur largely because of tbj geographical extent of this country and the scattering of the more or less dangerous dusty industries, there is a lack of knowl edge of that prevalence and its seriousness.
As the roentgenological examination is the most accurate and satisfactory method of detecting the condition from its earliest to its most advanced stages and of study ing its progress and its incapacitating ef fects, it behooves us as roentgenologists to be familiar with all of the phases of the disease, and not solely with the rocntgcimgraphic appearances with which all of us are more or less familiar. We must play a large part in the education and the public ity which are so much needed to overcome the ignorance still existing, even on the part of employers and employees. We will be called upon for our part in the program leading to the enactment of satisfactory compensation laws which are sure to follow m time. In the meanwhile, civil suits are increasing in number and we must train ourselves in order that we may be able to testify, when called upon, honestlv and justly for the benefit of all concerned.
It has been our endeavor in this presen tation to avoid as far as possible any repe titions from our previous publications, and references to them will be made only vV n it may be necessary to better explain be newer phases of the subject.
nomenclature
hilc it still seems probable that ' dica (SiO.) is usually the active fibrosing audit in the condition which we rccogm a :>s essentially a pulmonary fibrosis, ndh< 'dice to the genera] term of pneumoconiosis still seems advisable just as much now as at the time of our previous presentations of ^ie subject. Some other dusts undoubted!.'
* From the Radiological Clinic, University of lYnmvIv.inia Mulic.il School and Hospital, Ehil.idclphu, l 'a. Head at the I first Annual Meeting, American Roentgen Ray Society, West Baden, Ind., Sept, ttj-26, i 9j o .
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Henry K. Pancoast and Eugene P. Pendergrass
bestosis is ample reason for the presenta over vibrating machines. The heavier ro.k
tion of a general rsum of the entire in particles are separated by gravity and u.j
dustry, as well as the pathological, clinical asbestos fibers are aspirated out by vacuum
and roentgenological aspects of the condi fans into special chambers. The crude >-
bestos is then shipped to the various f- 0-
tion.
.
The dust evolved at the asbestos mines
tories. All of these procedures are carr: ml
contains a moderate amount of silica. The out at the mine bases because of the econ
harmful products of the asbestos factories omy in shipment of the lesser bulk of the
are almost entirely silicates. Heffernan42be crude asbestos.
lieves that silicates such as asbestos under The mining part of the industry is at
go changes in the lungs quite like silica, tended by the elimination of a large quant
only slower, and that asbestosis is a true ity of dust, which contains silica as well as
silicosis. This is, of course, not proved.
silicates. Pneumoconiosis is found among
The product was mined and the asbestos the workers. Very little has been written
fibers were separated from the mineral and about the condition of these men. Recently
employed in the making of indestructable we have had the opportunity of examining
fabrics several centuries b.c. Attention is the roentgenograms of 58 men from one of
called by Cooke17 to a cremation cloth de the Canadian mines, some of which showed
scribed by Herodotus 450 b .c. Materials pneumoconiosis. As the mineral rock con
made of it have been used ever since then, tains as high as 60 per cent silica, the mine
but the most rapid development of the worker's condition is due largely to this
commercial industry has been during the directly, although probably not entirely.
past two or three decades.
The raw product which goes to the factories
Nature. Asbestos is a peculiar fibrous and contains very little free silica. _
crystalline mineral composed almost en The most dusty occupations in the indus
tirely of silicates, mainly of hydrate mag try are to be found in the factories, in
nesium silicate, with varying admixtures of which the work is done in inclosures where
those of aluminum and iron. The general the asbestos is refined and is finally spun
term is applied to all silicate minerals and woven into the various materials with
which have a fine fibrous structure that can which we are familiar. During all of the
be split up into long, flexible fibers for the factory processes, a large quantity of tine
purposes of spinning and weaving. T he dust is set free, but in varying amounts m
fibers will split up in a longitudinal direc the different ones. Most factories, at least
tion almost indefinitely. The minerals differ in Great Britain, have devices for removing
in their exact constituency, especially as much of the dust.
to the amount of iron and aluminum, in Early Case Repints. The first report^ a
different countries in which they are found death resulting from asbestos dust ir-na a-
and mined. Much of the asbestos used in tion was presented by Murray,s'' in
Great Britain and the United States is The man worked in a factory for ten ' i `-rs'
mined in Canada. Cooke17 gives the follow mostly as a carder, and was the soie -lir'
ing chemical composition of asbestos:
vivor, before his death, of 10 other mi n 1
started work with him. 1 he autops- 01
per cent
this case revealed pulmonarv fil't.sis-
Silica.
. .
Magnesia.............................
.
. 40.7 4'-50
a 1
Photomicrographs of sections of the E showed large spicules of asbestos, at leas
7 Iron oxide.
Aluminum..............................................
0.70
they were so regarded at that time.
Water....................................................... 17 55
The second case reported in nie^.ic^
The Industry. At the mines, the mineral is blasted, crushed and finely ground in ma chines. The crushed dust is then passed
literature was presented by Cooke, 1924. It was again reported by him m ' ? tail in 1927.17 This individual stopped -
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Review of Pneumoconiosis
5* 7
VOL XXVI, No. 4
- T ;n a factory after eighteen years of solfigthhet tfiubbreorscius loinsisa.dTdhiteiosnectoondthceaseeviwdoernkceeds
intermittent occupation. The cause of two years in the mill and died. I he physi
, m was probably asbestosis and super- cal signs suggested tuberculosis with fibro
7
, 1 -cd tuberculosis. We referred to this sis. Autopsy showed a moderate degree of 1 .. in our previous contribution,51 m 1926,
fibrosis with nodules, but quite cellular, ,
L' 1 1 rely a tuberculous one, especially as and not like the usual silicotic nodules.
^ . ` . " thc first available autopsy report in There was no evidence of tuberculosis. The
\ ir literature. In view of the many deaths various asbestos bodies were found in both
h have been reported since then, we cases. These cases are of interest first, be
\ now concede that this death was cause both presented definite evidences of
nroi>iblv the result of both conditions. asbestosis after one and two years' work
Kao rally, Cooke was the first to describe respectively, and also the various bodies
, unusual and characteristic asbestos characteristic of the disease, and, secondly,
Hius in the lungs, and the authoritative for the reason that the second case pre
...scl ,ption of them was made in his second sented the terminal symptoms and died of
rheepdoertscorfibthedis icnasdeetinail19l2at7e-rTohne.se bodies will the condition after only two years' occupa
The second paper and third public re tion.
,
port was presented by Oliver, in 1927. He Wood and Page,130 in 1929, reported
reported the cases of two women who had awuhtoopdsiyedfionfdibnrgosncinhotphneeucmasoenioaf aaftweromnianne
died as a result of asbestosis after working years' work in a factory. There were no
thirtv and eighteen years respectively. evidences of tuberculosis. The lungs showed
Neither individual had evidence of tuber diffuse fibrosis and thickened pleura. N u
culosis. It is interesting to note that the sec merous asbestos bodies were found in the
ond of these cases stopped work after lungs, but not elsewhere in the body-. Wood
eighteen years' occupation, and did not de and Gloyne,129 in 1930, reported the autop-
velop definite symptoms until four years sied cases up to four. Tuberculosis was
Inter.
.
The next report was by McDonald,65 in
19:7. He referred more fully to Cooke s
case, and reported an additional one which
died'. He thought it reasonable to believe
that in the former one the tuberculosis was
a superadded infection. His own case did
not have tuberculosis. In addition to the
two tvpes of asbestos bodies first described
t,v Cooke, he added a third, all three of
which are now recognized. Seiler,11'1 in 192H, reported another case
who had worked twenty-two years in vari
ous capacities in asbestos factories, and
pro .> n il the typical symptoms of the ad-
var i . ase. No tubercle bacilli were found
m t" putum. 1 he rocntgcnographic ap-
piv y cs seemed not to have been unusual.
S: . , n,1"3 in 1928, reported two deaths
am< 1 asbestos mill workers in South
Atm a with autopsy findings. The first
man a mkeel only one year and died of
miliar-- tuberculosis. 1 he lungs showed
found in three of these cases, and in two,
bacilli had been found in the sputum before death. Haddow,36 in 1929, reported on the
deaths of Oliver's two cases, and on two others. He stated that the certificate of the last one, March, 1928, brought about the
publicity and official recognition of the condition. Since then, the workmen's com- '
pensation act of Great Britain has been ex
tended to include asbestosis.93 Haddow
states that one of Oliver's patients had
tubercle bacilli in the sputum.
t
Simson103 quotes Hoffman^3 as reporting
13 deaths in 1918 and Collis,12 5 deaths in
1910. These were in health reports, and will
be referred to again under predisposition to
tuberculosis. Mereweather
and
Price,73 in
. their
recent
comprehensive report on the asbestos in
dustry state that approximately 2,200 in dividuals are exposed to practically pure asbestos dust in the factories of Great
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H enry K.. Pancoast and Eugene P. Pendergrass
v.u
Britain. These authors examined jh.l in dividuals among the workers. Of this num ber, 230 had been employed less than ten years, and only 21 over twenty years. All but one of the 363 individuals had been working at the time of the examinations. Ninety-five, or 26.2 per cent, showed defi nite evidences of fibrosis, due apparently to asbestos dust solely. Their table of the time incidence of the condition is of interest.
Years at Work
Cases Examined
0 to 4
89
i to 9
141
10 to 14
4
15 to UJ
28
20 and over
2 i
Showing Eihrosis
0
A
15
'7
Per Cent
0.0
W -5
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80.9
tercsting to compare the findings in ! ese cases and those of Simson with the cln al table of Merewether and Price. It is o ute possible that protective measures pi. :d an important part in the incidence oi 'lie condition, as shown in the report of ;he last named authors.
Appearance of Asbestos Dust. Cooke six has described the microscopic appearance
of the components of asbestos dust in some
what the following manner: (1) Small fragments of asbestos fiber.
The bulk of the fiber is translucent and
glistening, with here and there within it opaque particles and minute black gran ules. These appear to be actually parts of the fiber, but their appearance suggests dif ferent chemical composition and physical
characteristics. (2) 'Translucent spicules split off from the
A )
I This table does not apply to any one group
of workers in the factories. The authors have collected also, outside of these sta tistical cases, records of t o deaths resulting from asbestosis, 9 of which were verified by autopsy and the tenth by repeated clinical and roentgenographic examinations. Nine of these deaths occurred from 1927^0 1929. The exposure of the 10 cases varied from nine to twenty-four years.
At the time of this writing, Lynch and Smith67 (1930) are among the latest exten sive contributors to the subject, and their report has been the first one in this coun try, at least in medical literature, to deal specifically with the subject. One of their cases, a negro, flied as a result of a gunshot injury after working twenty-eight months in a mill during a period of three years. His lungs showed definite interlobular, peri vascular and peribronchial fibrosis, and also the various asbestos bodies. I he sec ond case, also a negro, died of lobar pneu * monia after four and a half years of con tinuous work in a mill. His lungs showed everywhere a definite increase of young
fibrous tissue, in addition to the various as bestos bodies. Reference will be made to ' other cases examined by these authors in . the.description of asbestos bodies. It is in-
fibers. (3) Black, brown and blue particulate
matter. The black particles are iron. They are few in the finished asbestos product but are numerous in the dusts of the carding rooms. The iron in the finished product was only 0.1 percent, whereas in the dust of the
carding rooms it was 18.4 per ceftt. Asbestos Bodies. 'This is, perhaps, the most
interesting feature of pulmonary asbesto sis. The various bodies found in the lungs of asbestos workers have been described m detail by numerous authors, notabb H Cooke,16'17'18McDonald,68Simson,in-' Glo) re,-1" Merewether and Price73 and L\nch and Smith.67 The description given by Cooke of the various asbestos bodies is as coniniehensive as that of any other author and is abstracted as follows:
(1) Enormous amounts of fine granular pigment like that seen in the asbestos dust fiber. Much of this may be carbonaceous.
(2) Large or moderate sized angula! par tides, 10 to 360 microns in size, corre,spun ing to the black, brown and blue particuLjte
matter found in the dust. These partu eS are found in fibrous and necrotic amas.
singly or in clumps. Because of then size, they might occlude small bronchi.
(3) Almost complete absence of the ' e '
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of course, as in any fairly well advanced case of pneumoconiosis. 1 he most unusual feature of the condition seemed to us to be the fact that in both sets of roentgeno grams the appearance seemed to begin more often on the left side than the right and progressed more on that side. This is the reverse of what is the rule in all other
occupations we have studied. Merewcthcr7states that it begins on the right side, as one would expect, and the cases we ob served may have been examples of the ex ceptions which arc occasionally observed in
cases on careful analysis resolves itself to a fine mottling and linear shadows \v! eh. tow.ird the base, may look like cobwct ,.
It is evident that the nature of ttvse changes in the lungs requires the ' 'St type of roentgenograms for their portra, ,t|. Also, the seriousness of what may sen , to
be minor changes to the uninitiated re quires a roentgenoscopic study of diaphrag matic movements to make one realize the actual state of disabilitv present. It is evi dent also, as Mcrewethcr states,77 that an opinion as to the degree and intensity of an
pi, i .igii
asbestosis fibrosis based upon a comparison
of roentgcnographic changes with those
f .i,, \
shown in standard silicosis films will be an underestimate.
Of the 36] cases examined by Mere-
- wether and Price, 133 had roentgeno-
graphic studies. O f these, 5- were said to
have presented appearances of diffuse
fibrosis and 22 were suspicious.
We have had the opportunity recently of
examining in consultation the roentgeno
grams of 58 men employed at the mines in
many occupations and during periods vary
ing from eight months to forte vears. Of
this number, 15 showed definite evidence
of pneumoconiosis, one was doubtful and
42 showed no lung changes. The longest
Fte. g. Pneumoconiosis in an asbestos worker. Male, worker showed a moderate nodular stage
aged forty-three, employed for seventeen years
and a superintendent at the time of examination. There are two predominant types of fibrosis in
this case pcnvascular-peribronchial-lvmph node and fairly advanced interstitial. The latter is indi cated by the general haze toward the bases, and more on the left side. Note the partial obliteration
which definite changes were indicated were four years for one first stage case , live years for another and five vears f>i one early second or nodular stage case- i he worst case showed a diffuse third : tee
of the left heart border. The size of the cardiac
'
shadow is due to ago. Diaphragm
etxhceurosldiontec7hinnicqhueeaocfhmsaidney,
years ordi
nary respiration, and i f inch on forced respiration.
fibrosis after thirty-one vears' occupy m o i l . Asbestos mine dust is not comp:; table
to that of the factories for manv res OI1S. Some silica is present, but there is n-' rh e
any industrial pneumoconiosis. We noted the same tendency to obliteration of the left cardiac border as mentioned by Wood, because of the diffuse fibrosis and the prominent trunk shadows. Wood states that the late stage may or may not show consolidations. Wood and Glovnc1"1 state that the ground glass appearance in late
great concentration of asbestos dust ' .he
mine as compared to the factory, him o u r own experience so far, wc would not u j anl
the hazard at the mine as vervgreat. Prognosis. It seems to be the rs tlier
general opinion that the prognosis m p u l monary asbestosis among factorv wot kers is to be regarded as grave without adcq ante protection, in a large number of c uses
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Vol ,\\1. N" i
Review of Pneumoconiosis
59.3
Tnionti those who work where there is great concentration of dust. The condition is qipnrcntlv progressive even after cessation of occupation. Merewcther and Price state (h.u with continued exposure to high conccntiation dust fibrosis may be fully devclo;xd in from seven to nine years and Jerh mat result in about thirteen years. With 1-ss concentration, fibrosis may not be fuli developed for fifteen, twenty or
:\-five years. Inhalation of dust in |Vi,oi concentration results in a more n i .cd degree of fibrosis in a shorter time t|r n when the concentration is lower.
, 'position to Tuberculosis. The cont|jt,, n of pulmonary asbestosis being a new chiu m the pneumoconiosis family, a great ;lll1,,>int of interest centers around the in cidence of tuberculosis. Among the early case reports referred to in the beginning of this occupational section, pulmonary tuberculosis was reported as an accom panying condition in a few instances. Cooke's case had advanced tuberculosis. Simson reported one case which died with tuberculosis and one without evidences of the infection, He thought that we could not as >et formulate any definite opinion as to the frequency or the predisposition. Simson quoted Hoffman4" as reporting 13 deaths among asbestos workers, 3 of whom had tuberculosis. He also quoted Collis12 as reporting 5 deaths from tuberculosis among less than 40 workers at a factory. Wood and Gloyne1'-'1 referred to 3 cases showing evidences of tuberculosis at au topsy. Haddow,!Bobserved many asbestosis cases and among them 4 died. He did not believe that the condition predisposed to the infcct'on, at least not as a rule. Merewether and Price stated that asbestosis ililfi rs from silicosis in the distribution of the fibrous tissue, in more rapid developi r c i n roenrgenographic features and P' s I Is in a evened susceptibility to tuber a 1 , . Merewcther7" states that out of ,r '^e1- examined, evidence of active tn' ilosis was found in three. He thinks tl 'dills there is no outstanding sus ce, !it> proved, he does not agree that
the question has been finally settled as
yet.
.
Compensation Laws. Legislation iri,,rnany .
countries and states provides for com pensation for silicosis, which is a condition
produced by silica. Asbestos is a silicate, and if we arc to regard asbestosis as a
silicosis, as has been suggested but not
proved,- the latter condition is only in
directly caused by the asbestos. Certainly
the legal status of asbestosis as silicosis has
not been established. In some instances
asbestosis has had to be made a compensa
ble disease. H ard R ock M ining. This group of
workers comprises the largest engaged in
any single hazardous industry through
out the world, provided the rock is of a si
liceous nature. The large amount of dust
evolved in the various processes of mining
is always dangerous unless adequate pro
tective measures are adopted. The drillers
and those working with them or near them
are prone to be the most exposed. If the
fine dust is allowed to escape, it remains
suspended in the air for hours. Blasting al
ways stirs it up. Without protection, the
usual typical symptom-complex and the
roentgenographic appearances develop ear
ly and progress rapidly, and the Workers are predisposed to tuberculosis. More has been written upon the hazards of this in
dustry than those of any other. Numerous
writers have been extensively quoted else where. Many more or less similar indus
tries and their hazards have been described in detail, such as the drilling in coal mines,
granite cutting and sandstone quarrying.
The most detailed descriptions of hard rock mining have emanated from South
Africa through individuals associated in
medical work or other ways with the Rand
gold mines. These mines are so often re
ferred to in the literature that a short ab
stract of the description of the region and
of the character of the rock may be of in
terest. O liv e r10 states that the first gold
mining in South Africa started in the
Transvaal in the 70's, and the first gold
was taken from the Witwatersrand in 1885.