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Contact Dermatitis|February 1, 1992
Effect of a new topical cyclosporin formulation on human allergic contact dermatitisC Surber, P Itin, S Büchner, et al.
The Journal of Investigative Dermatology|September 18, 1998
Water diffusion characteristics of human stratum corneum at different anatomical sites in vivoD A Schwindt, K P Wilhelm, H I Maibach
The British Journal of Dermatology|November 1, 1990
Cutaneous sodium lauryl sulphate irritation potential: age and regional variabilityA B Cua, K P Wilhelm, H I Maibach
American Journal of Contact Dermatitis : Official Journal of the American Contact Dermatitis Society|March 13, 2001
Pitfalls of irritant patch testing using different test chamber sizesH Löffler, P Freyschmidt-Paul, I Effendy, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|March 30, 2001
Subclinical, non-erythematous irritation with an open assay model (washing): sodium lauryl sulfate (SLS) versus sodium laureth sulfate (SLES)V Charbonnier, B M Morrison, M Paye, et al.
Contact Dermatitis|April 20, 1999
In vivo nickel allergic contact dermatitis: human model for topical therapeuticsH Zhai, Y C Chang, M Singh, et al.
Biology of the Neonate|January 1, 1977
Skin barrier properties in the newborn. Transepidermal water loss and carbon dioxide emission ratesR L Cunico, H I Maibach, H Khan, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|May 1, 1997
Human skin in vitro percutaneous absorption of gaseous ethylene oxide from fabricR C Wester, T Hartway, S Serranzana, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|May 20, 1999
In vivo skin decontamination of methylene bisphenyl isocyanate (MDI): soap and water ineffective compared to polypropylene glycol, polyglycol-based cleanser, and corn oilR C Wester, X Hui, T Landry, et al.
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