OrlowskiJ.P.NodarR.H., and LonsdaleD., Abnormal brainstem auditory evoked potentials in infants with threatened sudden infant death syndrome, Cleve. Clin. Q., 46:77–81, 1979.
2.
LonsdaleD.NodarR.H., and OrlowskiJ.P., The effects of thiamine on abnormal brainstem auditory evoked potentials, Cleve. Clin. Q., 46:83–88, 1979.
3.
CooperJ.R.ItokawaY., and PincusJ.H., Thiamine triphosphate deficiency in subacute necrotizing encephalomyelopathy, Science, 164:74–75, 1969.
4.
MassodM.F.McGuireS.L., and WernerK.R., Analysis of blood transketolase activity, Am. J. Clin. Pathol., 55:465–70, 1971.
5.
BrinM.TaiM.OstasheverA.S., The effect of thiamine deficiency on the activity of erythrocyte hemolysate transketolase, J. Nutr., 71:273–81, 1960.
6.
DreyfusP.M., Clinical application of blood transketolase determinations, N. Engl. J. Med., 267:596–98, 1962.
7.
HecoxK., and GalambosR., Brainstem auditory evoked responses in human infants and adults, Arch. Otolaryngol., 99:30–33, 1974.
8.
StarrA., and AchorJ., Auditory brainstem responses in neurological disease, Arch. Neurol., 32:761–68, 1975.
9.
StockardJ.J.StockardJ.E., and SharbroughF.W., Detection and localization of occult lesions with brainstem auditory responses, Mayo Clin. Proc., 52:761–69, 1977.
10.
GuilleminaultC., and KorobkinR., Sudden infant death: Near miss events and sleep research. Some recommendations to improve comparability of results among investigators, Sleep, 1:423–33, 1979.
11.
PincusJ.H.CooperJ.R.MurphyJ.V., Thiamine derivatives in subacute necrotizing encephalomyelopathy, Pediat., 51:716–21, 1973.
12.
FehilyL., Human milk intoxication due to B1 avitaminosis, Br. Med. J., 2:590–92, 1944.
ReadD.J.C.WilliamsA.L.HensleyW.EdwardsM., and BealS., Sudden infant deaths: Some current research strategies, Med. J. Aust., 2:236–44, 1979.
15.
DavisR.E.IckeG.C., and HiltonJ.M.N., High thiamine levels in sudden infant death syndrome, N. Engl. J. Med., 303:462, 1980.
16.
PetersonD.R.LabbeR.F.van BelleG., and ChinnN.M., Erythrocyte transketolase activity and sudden death, Am. J. Clin. Nutr., 34:65–67, 1981.
17.
LonsdaleD., and ShambergerR.J., The potential value of red cell transketolase in the metabolic evaluation of disease, Cleve. Clin. Q., 45:267–74, 1978.
18.
IsraelsS.HaworthJ.C.DunnH.G., and ApplegarthD.A., Lactic acidosis in childhood, Adv. Pediat., 22:267–303, 1975.
19.
BrunetteM.G.DelvinE.HazelB., and ScriverC.R., Thiamine-responsive lactic acidosis in a patient with deficient low-Km pyruvate carboxylase activity in liver, Pediat., 50:702–711, 1972.
20.
LonsdaleD.FaulknerW.R.PriceJ.W., and SmebyR.R., Intermittent cerebellar ataxia associated with hyperpyruvic acidemia, hyperalaninemia and hyperalaninuria, Pediat., 43:1025–34, 1969.
21.
WellsD.G.BaylisE.M.HolowayL., and MarksV., Erythrocyte-transketolase activity in megaloblastic anemia, Lancet, 11:543–45, 1968.
22.
FujiwaraM., and WatanabeH., Allithiamine, a newly found compound of vitamin B1, Proc. Japan Acad., 28:156, 1952.
23.
ThomsonA.D.FrankO.BakerH., and LeevyC.M., Thiamine propyl disulfide: Absorption and utilization, Ann. Int. Med, 74:529–34, 1971.
24.
TazoeK.Effect of allithiamine on acute potassium cyanide poisoning, Vitamins, 20:97–112, 1960.
25.
AramakiY.IshikawaI.KaziwaraK., and IshidateM., Chronic toxicity of thiamine tetrahydrofurfuryl disulfide, Vitamins, 16:245–49, 1959.
26.
IidaS., Rapid formation of thiamine triphosphate in heart muscle after administration of disulfide derivatives of thiamine, Biochem. Pharmacol, 15:1139–45, 1966.
27.
GovierW.M., and GreigM.E., Studies on shock induced by hemorrhage. The effect of cellular damage on in vitro hydrolysis and synthesis of cocarboxylase by liver tissue, J. Pharmacol. Exp. Ther., 79:240–245, 1943.
28.
MarxJ.L.Question marks for SIDS test, Science, 213:323, 1981.
29.
NaeyeR.L.Hypoxemia and the sudden infant death syndrome, Science, 186:837–838, 1974.