159.
160.
161.
162.
163,
164.

Harley, N.H., Albert, R.E., Shore, R.E., et al.

Follow-up of patients

treated by x-ray epilation for tinea capitis: Estimate of the dose to
the thyroid and pituitary glands and other structures of the head and
neck. Phys. Med. Biol. 21: 631-42 (1976).
Hempelmann, L.H. Risk of thyroid neoplasms after irradiation in childhood. Science 160: 159-63 (1968).

Hempelmann, L.H., Hall, W.J., Phillips, M., Cooper, R.A., and Ames, W.R.

Neoplasms in persons treated with x rays in infancy: Fourth survey in
20 years. J. Nat. Cancer Inst. 55: 519 (1975).
Hempelmann, L.H. Thyroid neoplasms following irradiation in infancy,
in: Radiation~Associated Thyroid Carcinoma, pp. 221-9, L.J. DeGroot et
al., Eds., Grune & Stratton, New York,
Maxon,

H.R.,

Thomas,

S.R.,

1977.

Saenger,

E.L.,

Buncher,

C.R.,

and Kereiakes,

Thomas,

S.R.,

Buncher,

R.C.,

Kereiakes,

J.G.
Tonizing irradiation and the induction of clinically significant
disease in the human thyroid gland. Am. J. Med. 63: 967-8 (1977).

Maxon, H.R.,

Saenger,

E.L.,

J.G., Shafer, M.L., and McLaughlin, C.A.

Clinically important radia-

165.

Modan, B., Baidatz,

Radiation-induced head and

166.

Modan, B., Ron, E., and Werner, A.

tion-associated thyroid disease:
(1980).

neck tumors.

A controlled study.

D., Mart, H., et al.

Lancet 1: 277 (1974).

Thyroid neoplasms in a population

irradiated for scalp tinea in childhood, in: Radiation-Associated Thy-

roid Carcinoma, pp. 449-57, L.J. DeGroot et al.,

167.
168.
169.
170.

New York,

172.

173.

Pifer, J.W., Toyooka, E.T., Murray, R.W., et al.
Neoplasms in children
treated with x rays for thymic enlargement.
1.
Neoplasms and mortal-

ity.

J. Nat. Cancer Inst. 31: 1333-56 (1963).

Pincus, R.A., Reichlin, S., and Hempelmann, L.H.

after radiation exposure in infancy.

Thyroid abnormalities

Ann. Int. Med. 66: 1154-64 (1967).

Refetoff£, S., Harrison, J., Karanfilski, B.T., et al.

Continuing occur-

rence of thyroid carcinoma after irradiation to the neck in infancy and
childhood. New Eng. J. Med. 292: 171-5 (1975).

Schneider,

A.B.,

Favus,

M.J., Stachura,

M.,

Arnold,

J.,

Arnold,

M.J.,

Incidence, prevalence and characteristics of radia-

tion-induced thyroid tumors.

Am. J. Med. 64: 243-52 (1978).

Vander, J.B., Gaston, E.A., and Dawber, T.R.

toxic thyroid nodules.
of thyroid malignancy.

The significance of non-

Final report of a 15-year study of the incidence
Ann. Int. Med. 69: 537 (1968).

Wood, J.W., Tamagaki, H., Neriishi, S., Sato, T., Shelfon, W.F., Archer,
P.G., Hamilton, H.B., and Johnson, K.G.
Thyroid carcinoma in atomic

bomb survivors of Hiroshima and Nagasaki.
(1969).
Becker,

D.V.,

McConahey,

W.M.,

Dobyns,

thyrotoxicosis therapy follow-up study.
search, Vol.

174.

Eds., Grune & Stratton,

1977.

and Frohman, L.A.
171.

JAMA 244: 1802-7

1971.

1, p.

Am. J. Epidemiol. 89: 4

B.M.,

et

al.

The results of

the

Further Advances in Thyroid Re-

603, K. Fellinger and R. Hofer, Eds., Gistel, Vienna,

Dobyns,
B.M.
Radiation hazard.
Experience with therapeutic and diagnostic 13h 7, in: Radiation-Associated Thyroid Carcinoma, pp. 439-83, L.J.
DeGroot et al.,

Eds.,

Grune & Stratton,

- 98

-

New York,

1977.

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