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    • 1. 发明专利
    • SKIN COSMETIC
    • JP2001261543A
    • 2001-09-26
    • JP2000076006
    • 2000-03-17
    • KAO CORP
    • KONDO TOMOKOKATO YURIYAMAKI KAZUHIRO
    • A61K8/00A61K8/68A61K8/96A61K8/97A61Q19/00A61K7/48A61K7/00
    • PROBLEM TO BE SOLVED: To provide a skin cosmetic excellent in barrier-reinforcing function for the skin. SOLUTION: This skin cosmetic contains (A) a ceramide production- accelerating agent and (B) tannin. The above (A) is the extract material, compressed material or their products of Eucaliputus globulus, Humulus lupulus, Zingiberis rhizoma, Uncaria gambir Roxburgh, Rosa multiflora Thunberg, Aesculus hippocastanum L., Lilium candidum, Coix lacryma-jobi L. var. ma-yuen Stapf, Typha angustifolia L., Eriobotrya japonica Lindley, Gardenia jasminoides Ellis, Pananx ginseng C.A. Meyer, Saponaria officinalis L., Betula pendula Roth., Hydrangea serrata Seringe var. thunbergil Sugimoto, Syzygium aromaticum Merrill et Perry, Carthamus tinctorius L., Sanguisorba offisinalis, Iris germania, etc., and Sophoraflavescens Aiton. The above (B) is originated from Hamamelis virginiana, Camellia sinensis, Hypericum erectum, Salvia officinalis, Metha piperita, Rosemarinus officinalis, Paeonia latiflora, Paeonia suffruticosa, Geranium nepalense var. thunbergii, Diospyros kaki, a gall, a gallnut, etc.
    • 5. 发明专利
    • METHOD AND APPARATUS FOR MEASUREMENT OF TRANSMISSION AND SCATTERING CAPABILITY
    • JPH09210848A
    • 1997-08-15
    • JP3896796
    • 1996-01-31
    • KAO CORP
    • KONDO TOMOKOTAKEMA YOSHINORI
    • G01M11/00
    • PROBLEM TO BE SOLVED: To obtain the transmission and scattering characteristic of a sample as separate information separated from an absorption characteristic while a simple apparatus is used. SOLUTION: The transmission and scattering capability of a sample 1 is found in such a way that parallel light L0 at a constant intensity is made incident on the sample 1 and that the quanitity of light of transmitted and scattered light L1 by the sample 1 is detected by using an integrating sphere 2 having a hole 2h on an optical axis L and by using a detector 4 which is connected to the integrating sphere. In this case, the ratio I1 /I2 of the quantity of detected light I1 of the transmitted and scattered light, at a time when the distance between the sample 1 and the integrating sphere 2 is d1 , to the quantity of detected light I2 of the transmitted and scattered light, at a time when the distance between the sample 1 and the integrating sphere 2 is d2 , is found as a straight advance ratio, and the straight advance ratio I1 /I2 is evaluated as the transmission and scattering capability of the sample 1.