JasperH. H., Cortical excitatory state and synchronism in the control of bioelectric autonomous rhythms, Colo. Spr. Harb. Sym. Quant. Biol., 1936, 4: 320–338 (see page 329).
2.
GerardR. W., Factors including brain potentials, Trans. Amer. Neurol. Assoc, 1936, 62: 55–60 (see page 56).
3.
RossD. A., and SchwabR. S., The cortical alpha rhythm in thyroid disorders, Endocrinology, 1939, 25: 75–79.
4.
GibbsF. A., and GibbsE. L., Atlas of Electroencephalography, Neurological and Psychiatric Disorders, Vol. 3, Addison-Wesley, Reading, Mass., 1964.
5.
NishitaniH., and KooiK. A., Cerebral evoked responses in hypothyroidism, Electroenceph. Clin. Neurophysiol., 1967, 24: 266–269.
6.
KalesA.HeuserG.JacobsonA., All night sleep studies in hypothyroid patients, before and after treatment. J. Coin. Endocr., 1967, 27: 1593–1599.
7.
NeimanE. A., The electroencephalogram in congenital hypothyroidism, J. Neurol. Neurosurg., 1961, 24: 50.
8.
BradleyP. B.EayrsJ. T.GlassA. and HeathR. W., The maturational and metabolic consequences of neonatal thyroidectomy upon the recruiting response in the rat, Electroenceph. Clin. Neurophysiol., 1961, 13: 577–586.
9.
BradleyP. B.EayrsJ. T., and SchmalbackK., The Electroencephalogram of normal and hypothyroid rats, Electroenceph. Clin. Neurophysiol., 1960, 12: 467–477.
10.
KleeC. V., and SokoloffL., Mitochondrial differences in mature and immature brain. Influence on rats of amino acid incorporation into protein and responses to thyroxine, J. Neurochem., 1964, 11: 709–716.
11.
PickeringD. E., and FisherD. A., Therapeutic concepts related to hypothyroidism in childhood, J. Chron. Dis., 1958, 7: 242.
12.
ReierP. J., and HughesA. F., An effect of neonatal radiothalamectomy, Brain Res., 1972, 41: 263–283.
13.
JacobsonS., Sequence of myelinization in the brain of the albino rat. J. Comp. Neurol., 1963, 121: 5–29.
14.
RosmanN. P.MaloneM. J., and HelfensteinM., The effect of thyroid deficiency on myelination of brain: A morphological and biochemical study, Neurology, 1972, 22: 99–106.
15.
SokoloffL., Action of thyroid hormones and cerebral development, Amer. J. Dis. Child., 1967, 114: 498–506.
16.
BlazsR.KovacsS.TeichgraberP., Biochemical effects of thyroid deficiency on the developing brain, J. Neurochem, 1968, 15: 1335–1349.
17.
LansingR. W., and TrunnelJ. B., Electroencephalographic changes accompanying thyroid deficiency occurring in man, J. CI. Endoc., 23: 470, 1963.
18.
WayneE. J.BluhmM. M., and CrokksJ., Studies of body composition in normal and pathological states using isotope dilution techniques. Peaceful Uses of Atomic Energy Proc. 2nd Int. Conference (Geneva).
19.
HimwichH. E.DalyC.FazekasJ. F., Effect of thyroid medication on brain metabolism of cretins, Amer. J. Psychiat., 1942, 98: 489–493.
20.
ScheinbergP.SteadE. A.Jr.BrannonE. S., Correlative observations on cerebral metabolism and cardic output in myxedema, J. Clin. Invest., 1950, 29: 1139–1146.
21.
EayrsJ. T., The vascularity of the cerebral cortex in normal and cretinous rats, J. Anat. (London), 1954, 88: 164–173.
22.
GeelS. E., and TimirasP. S., The influence of neonatal hypothyroidism and thyroxine on the ribonucleic acid and deoxyribonucleic acid of concentrations of rat cerebral cortex, Brain Res., 1967, 4: 135–142.
23.
EayrsJ. T., The cerebral cortex of normal and hypothyroid rats, Acta Anat. (Basel), 1955, 25: 160–183.
24.
BassN. H., and YoungE., Effects of hypothyroidism on the differentiation of neurons and glia in developing rat cerebrum, J. Neurol. Sci., 1973, 18: 155–173.
25.
BertrandI.DelayJ., and GuillianJ., L'Electroencephalogramme dans le mysoedeme, C. R. Soc. Biol. (Paris), 1938, 129: 395–398.
26.
BrowningT. B.AtkinsR. W., and WeinerH., Cerebral metabolic disturbances in hypothyroidism: Clinical and electroencephalographic studies of the psychosis of myxedema and hypothyroidism, Arch. Intern. Med. (Chicago), 195493: 938–950.
27.
MiyakeT.NishitaniH., and YamashikiY., Electroencephalogram in myxedema, Clin. Neurol., (Tokyo), 1964, 4: 608–610.
28.
MaiH., and SchaperG., Neitrau zur klinik der hypothyreose. Studie uber ide nach langdauernder thyreodinbehandlung errichte intelligenz und uber das verhalten des hirnstrombildes, Ann Paediat., (Basel)1953, 180: 65.
29.
ChaptalJ.PassousantP.JeanR., La souffrance cerebrate dans le myxodeme de I'enfant; etude electroencephalographique, Presse Med., 1956, 64: 2257.
30.
HarrisR.Della RevereM., and PriorP. F., Electroencephalographic studies in infants and children with hypothyroidism, Arch. Dis. Child., 1965, 40: 612.
31.
ReissM., Fundamentals of endocrine therapy in mental illness, In RinkelM., (Ed.) Etiological Treatment of Mental Illness, New York, L C Page & Co., 1966, pp. 645–655.
32.
ViukariM., Serum protein-bound iodine and electroencephalography as diagnostic aids in cretinism, J. Ment. Defic. Res., 1965, 9: 260–264.
33.
BarlowJ. S., Intrinsic and induced EEG rhythms in severe hypothyroidism secondary to panhypopituitarism, a case report, Electroenceph. Clin. Neurophysiol., 1967, 22: 266–269.
34.
Dreyfus-BrisacC.Samson-DollfusD., and FischgoldH., L'Activite electrique cerebrale du premature et du nouveau-ne, Sem. Hop. Paris, 1955B, 31: 1783–1790.
35.
AndersonP., and EcclesJ., Inhibitory phasing of neuronal discharge, Nature (Lond.), 1962, 196: 645–647.
36.
AndersonP., and SearsT. A., The role of inhibition in the phasing of spontaneous thalamo-cortical discharges, J. Physiol. (Lond.), 1964, 173: 459–480.
37.
AndersonP., Rhythmic thalamic activity, in CurtisD. R. and McIntyreA. K. (Eds.), Studies in Physiology, Springer, New York, 1965: 1–7.