Micromethods in the analysis of surface active materials in alveoli
Reifenrath, R.
Pflugers Archiv European Journal of Physiology 332 Suppl 332:r4
1972
ISSN/ISBN: 0031-6768 PMID: 5066036 Document Number: 48584
Document emailed within 1 workday
Related Documents
Wiegers, U.; Pomeränke, K.; von Wichert, P. 1976: Studies on the excretion-dynamics of surface active materials on an animal model of fibrosing alveolitis Verhandlungen der Deutschen Gesellschaft für Innere Medizin 82 Pt 2: 1767-1769Zavanelli, A.C.; Mazaro, V.Q.; Silva, C.R.; Zavanelli, R.A.; Mancuso, D.N. 2011: Surface roughness analysis of four restorative materials exposed to 10% and 15% carbamide peroxide International Journal of Prosthodontics 24(2): 155-157
Serikov, V.B.; Beliakov, N.A. 1989: The role of changes in vascular permeability, interstitial relaxation and surface tension forces in the alveoli in disordered filtration-absorption equilibrium in pulmonary edema Patologicheskaia Fiziologiia i Eksperimental'naia Terapiia 5: 37-41
Johannsen, G.; Redmalm, G.; Rydén, H. 1992: Surface changes on dental materials. II. the influence of two different dentifrices on surface roughness measured by laser reflexion and profilometer techniques Swedish Dental Journal 16(1-2): 13-20
Kostrzewski, P. 1993: Micromethods for determining organic solvents in blood by headspace analysis Medycyna Pracy 44(2): 131-139
Wang, X.C. 2001: Analysis of surface-active substances in Sapindus mukurossi by high performance liquid chromatography-mass spectrometry Se Pu 19(6): 529-531
Walsh, J.P.; Green, R.W. 1972: The influence of some surface-active substances on decalcification of enamel surface New Zealand Dental Journal 68(311): 65-72
Outzen, K.E.; Svane-Knudsen, V. 1993: Effect of surface-active substance on nasal mucociliary clearance time: a comparison of saccharin clearance time before and after the use of surface-active substance Rhinology 31(4): 155-157
Griazina, A.G.; Gluzman, E.M.; Andreeva, L.A. 1973: Release of active substances from emulsified ointment bases containing, as emulsifiers, a new class of surface-active substances Vestnik Dermatologii i Venerologii 47(7): 56-58
Sobolewska, E.; Fraczak, B.ła.; Czarnomysy-Furowicz, D.; Ey-Chmielewska, H.; Karakulska, J. 2007: Bacteria adhesion to the surface of various prosthetics materials Annales Academiae Medicae Stetinensis 53(2): 68-71
Li, Q.; Wang, H.; Zhang, L.-x. 2002: The surface treatment of artificial joint metal materials Zhongguo Yi Liao Qi Xie Za Zhi 26(1): 44-47
Lemons, J. 1986: Implant dentistry forefront '85. Surface evaluation of materials Journal of Oral Implantology 12(3): 396-405
Oliscovicz, N.F.; de Castro, D.T.; Valente, M.L.d.C.; Watanabe, E.; Lepri, C.és.P.; Dos Reis, A.éa.C.ân. 2018: Surface treatment of implant materials with antimicrobial nanoparticulates General Dentistry 66(1): 66-73
Beck, L. 1977: The OHN should take an active role in hazardous materials surveillance Occupational Health and Safety 46(6): 36
Krebs, R.; Marx, H. 1972: Problems of measurement technic of surface reproduction of impression materials Deutsche Zahnarztliche Zeitschrift 27(7): 610-615
Estafan, D.; Martin, K.U.; Dussetschleger, F.; Estafan, A. 2000: Morphological effects of surface treatments on ceramic restorative materials American Journal of Dentistry 13(1): 35-38
Hengtrakool, C.; Kukiattrakoon, B.; Kedjarune-Leggat, U. 2011: Gradual surface degradation of restorative materials by acidic agents General Dentistry 59(2): E50-E62
Baquey, C. 2001: New polymers, surface treatments, bioactive materials: value of vascular access devices Nephrologie 22(8): 399-402
Kobyłecki, W.; Piekarczyk, B. 1985: Scanning microscopy of the enamel surface prepared for the bonding of adhesive materials Czasopismo Stomatologiczne 38(9): 644-650
Gonçalves, T.Marques.Simek.Vega.; Teixeira, K.Nunes.; de Oliveira, J.Meller.Dias.; Gama, L.Tavares.; Bortolini, S.; Philippi, A.Gebler. 2018: Surface treatments to improve the repair of acrylic and bis-acryl provisional materials American Journal of Dentistry 31(4): 199-204