acrolein has been researched along with geraniol in 10 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (10.00) | 18.7374 |
1990's | 5 (50.00) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 4 (40.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Moleyar, V; Narasimham, P | 1 |
Ii, Y; Matsuoka, H; Takekawa, Y; Teraoka, T | 1 |
Hansen, J; Kreilgård, B | 1 |
Andersen, KE; Burrows, D; Camarasa, JG; Dooms-Goossens, A; Ducombs, G; Frosch, PJ; Fuchs, T; Hannuksela, M; Lachapelle, JM; Pilz, B | 1 |
Johansen, JD; Menné, T; Rastogi, SC | 1 |
Andersen, KE; Bruze, M; Dreier, B; Frosch, P; Johansen, JD; Lepoittevin, JP; Menné, T; Rastogi, SC; White, IR | 1 |
Ahmad, I; Khan, MS | 1 |
Friedman, M; Nowotarska, SW; Nowotarski, KJ; Situ, C | 1 |
Campos, EVR; de Andrade, DJ; de Oliveira, JL; do Nascimento, J; Fraceto, LF; Germano-Costa, T; Gonçalves, KC; Lima, R; Polanczyk, RA; Soares, ST; Vechia, JFD | 1 |
Chandre, F; Deletre, E; Duménil, C; Martin, T | 1 |
10 other study(ies) available for acrolein and geraniol
Article | Year |
---|---|
Antibacterial activity of essential oil components.
Topics: Acrolein; Acyclic Monoterpenes; Bacillus; Bacteria; Enterobacter; Eugenol; Food Preservatives; Humans; Menthol; Micrococcus; Monoterpenes; Oils, Volatile; Staphylococcus; Terpenes | 1992 |
Evaluation of antifungal volatile compounds on the basis of the elongation rate of a single hypha.
Topics: Acrolein; Acyclic Monoterpenes; Antifungal Agents; Aspergillus niger; Benzaldehydes; Cyclohexanols; Cyclohexenes; Eucalyptol; Limonene; Menthol; Microbial Sensitivity Tests; Monoterpenes; Rhizoctonia; Salicylates; Terpenes; Volatilization | 1990 |
Aspects of pharmaceutical and chemical standardization of patch test materials.
Topics: Acrolein; Acyclic Monoterpenes; Allergens; Benzocaine; Cellulose; Dermatitis, Contact; Dibucaine; Eugenol; Humans; Patch Tests; Pharmaceutical Vehicles; Povidone; Propanols; Quality Control; Skin Tests; Terpenes; Tetracaine; Thiazoles | 1989 |
Patch testing with fragrances: results of a multicenter study of the European Environmental and Contact Dermatitis Research Group with 48 frequently used constituents of perfumes.
Topics: Acrolein; Acyclic Monoterpenes; Aldehydes; Allergens; Cyclohexenes; Dermatitis, Allergic Contact; Dermatitis, Irritant; Eugenol; Europe; Household Products; Humans; Irritants; Monoterpenes; Myristates; Patch Tests; Perfume; Petrolatum; Pharmaceutical Vehicles; Phthalic Acids; Pilot Projects; Plants; Soaps; Terpenes; United States; Xylenes | 1995 |
Natural ingredients based cosmetics. Content of selected fragrance sensitizers.
Topics: 1-Propanol; Acrolein; Acyclic Monoterpenes; Aldehydes; Allergens; Cosmetics; Coumarins; Emollients; Eugenol; Hair Preparations; Humans; Monoterpenes; Perfume; Propanols; Terpenes | 1996 |
Deodorants on the European market: quantitative chemical analysis of 21 fragrances.
Topics: Acrolein; Acyclic Monoterpenes; Aldehydes; Allergens; Deodorants; Dermatitis, Contact; Eugenol; Europe; Gas Chromatography-Mass Spectrometry; Humans; Perfume; Propanols; Terpenes | 1998 |
In vitro antifungal, anti-elastase and anti-keratinase activity of essential oils of Cinnamomum-, Syzygium- and Cymbopogon-species against Aspergillus fumigatus and Trichophyton rubrum.
Topics: Acrolein; Acyclic Monoterpenes; Antifungal Agents; Aspergillus fumigatus; Cinnamomum; Cymbopogon; Eugenol; Monoterpenes; Oils, Volatile; Pancreatic Elastase; Peptide Hydrolases; Phytotherapy; Plants, Medicinal; Protease Inhibitors; Spores, Fungal; Syzygium; Terpenes; Trichophyton | 2011 |
Effect of structure on the interactions between five natural antimicrobial compounds and phospholipids of bacterial cell membrane on model monolayers.
Topics: Acrolein; Acyclic Monoterpenes; Anti-Infective Agents; Benzaldehydes; Cymenes; Membranes, Artificial; Monoterpenes; Phospholipids; Surface Properties; Terpenes | 2014 |
Association of zein nanoparticles with botanical compounds for effective pest control systems.
Topics: Acaricides; Acrolein; Acyclic Monoterpenes; Animals; Cell Line; Cricetulus; Drug Carriers; Eugenol; Insecticides; Larva; Mice; Moths; Nanoparticles; Temperature; Terpenes; Tetranychidae; Zein | 2019 |
Insecticide resistance modifies mosquito response to DEET and natural repellents.
Topics: Acrolein; Acyclic Monoterpenes; Animals; Anopheles; Cymenes; DEET; Female; Humans; Insect Repellents; Insecticide Resistance; Insecticides; Malaria; Male; Monoterpenes; Mosquito Control; Mosquito Vectors; Mutation; Permethrin; Pyrethrins; Terpenes | 2019 |