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PhD Primož Peterlin [12531]

Representative bibliographic units

ARTICLES AND OTHER COMPONENT PARTS

1.01 Original scientific article

1. PETERLIN, Primož, ARRIGLER, Vesna, KOGEJ, Ksenija, SVETINA, Saša, WALDE, Peter. Growth and shape transformations of giant phospholipid vesicles upon interaction with an aqueous oleic acid suspension. Chemistry and physics of lipids. [Print ed.]. 2009, letn. 159, str. 67-76. ISSN 0009-3084. DOI: 10.1016/j.chemphyslip.2009.03.005. [COBISS.SI-ID 25598681]
2. PETERLIN, Primož, JAKLIČ, Gašper, PISANSKI, Tomaž. Determining membrane permeability of giant phospholipid vesicles from a series of videomicroscopy images. Measurement science & technology. [Print ed.]. 2009, vol. 20, no. 5, str. 055801-1-055801-7. ISSN 0957-0233. http://dx.doi.org/10.1088/0957-0233/20/5/055801, DOI: 10.1088/0957-0233/20/5/055801. [COBISS.SI-ID 25510361]
3. PETERLIN, Primož, ARRIGLER, Vesna. Electroformation in a flow chamber with solution exchange as a means of preparation of flaccid giant vesicles. Colloids and surfaces. B, Biointerfaces. [Print ed.]. 2008, letn. 64, št. 1, str. 77-87. ISSN 0927-7765. DOI: 10.1016/j.colsurfb.2008.01.004. [COBISS.SI-ID 24221401]
4. PETERLIN, Primož, SVETINA, Saša, ŽEKŠ, Boštjan. The prolate-to-oblate shape transition of phospholipid vesicles in response to frequency variation of an AC electric field can be explained by the dielectric anisotropy of a phospholipid bilayer. Journal of physics. Condensed matter. 4. April 2007, letn. 19, št. 13, str. [1-17]; 136220. ISSN 0953-8984. [COBISS.SI-ID 22619865]
5. KRALJ-IGLIČ, Veronika, IGLIČ, Aleš, HÄGERSTRAND, Henry, PETERLIN, Primož. Stable tabular microexovesicles of the erythrocyte membrane induced by dimeric amphiphiles. Physical review. E. 2000, vol. 61, no. 4, str. 4230-4234, ilustr. ISSN 1063-651X. [COBISS.SI-ID 1816148]