ExLibris header image
SFX Logo
Title: The spatial variation of the refractive index in biological cells
Source:

Physics in Medicine and Biology [0031-9155] Beuthan, J yr:1996


Collapse list of basic services Basic
Full text
Full text available via EZB-NALIM-00482 IOP Archive NL
GO
Document delivery
Request document via Library/Bibliothek GO
Users interested in this article also expressed an interest in the following:
1. Curl, C. "Refractive index measurement in viable cells using quantitative phase-amplitude microscopy and confocal microscopy." Cytometry Part A 65A.1 (2005): 88-92. Link to SFX for this item
2. Song, W. "Refractive index measurement of single living cells using on-chip Fabry-Perot cavity." Applied physics letters 89.20 (2006): 203901-1. Link to Full Text for this item Link to SFX for this item
3. Wang, Z. "Attomole sensitivity for unlabeled proteins and polypeptides with on-chip capillary electrophoresis and universal detection by interferometric backscatter." Electrophoresis 24.5 (2003): 865-873. Link to Full Text for this item Link to SFX for this item
4. Almsherqi, Zakaria A A. "Cubic membranes: a legend beyond the Flatland* of cell membrane organization." The Journal of cell biology 173.6 (2006): 839-844. Link to Full Text for this item Link to SFX for this item
5. Galle, J. "Individual cell-based models of the spatial-temporal organization of multicellular systems - Achievements and limitations." Cytometry Part A 69A.7 (2006): 704-710. Link to SFX for this item
6. Galle, J. "Modeling the effect of deregulated proliferation and apoptosis on the growth dynamics of epithelial cell Populations in vitro." Biophysical journal 88.1 (2005): 62-75. Link to Full Text for this item Link to SFX for this item
7. Swinney, K. "Detection in capillary electrophoresis." Electrophoresis 21.7 (2000): 1239-1250. Link to Full Text for this item Link to SFX for this item
8. Bodnar, M. "Derivation of macroscopic equations for individual cell-based models: A formal approach." Mathematical methods in the applied sciences 28.15 (2005): 1757-1779. Link to Full Text for this item Link to SFX for this item
9. Feld, A. "In situ detection of neoplastic transformation and chemopreventive effects in rat esophagus epithelium using angle-resolved low-coherence interferometry." Cancer research 63.13 (2003): 3556-9. Link to SFX for this item
10. Tearney, G.J. J. "Determination of the refractive index of highly scattering human tissue by optical coherence tomography." Optics letters 20.21 (1995): 2258-2260. Link to SFX for this item
11. Bellair, C. "Quantitative phase amplitude microscopy IV: imaging thick specimens." Journal of microscopy 214.Pt 1 (2004): 62-69. Link to Full Text for this item Link to SFX for this item
12. KUCKLING, D. "Bilayer hydrogel assembly." Polymer 49.6 (2008): 1435-1439. Link to SFX for this item
13. Choi, W. "Tomographic phase microscopy." Nature methods 4.9 (2007): 717-719. Link to Full Text for this item Link to SFX for this item
14. Ishizuka, K. "Phase measurement of atomic resolution image using transport of intensity equation." Journal of Electron Microscopy 54.3 (2005): 191-197. Link to SFX for this item
15. Szmajda, Brett A A. "Geniculocortical relay of blue-off signals in the primate visual system." Proceedings of the National Academy of Sciences of the United States of America 103.51 (2007): 19512-7. Link to Full Text for this item Link to SFX for this item
16. Swinney, K. "Noninvasive picoliter volume thermometry based on backscatter interferometry." Electrophoresis 22.10 (2001): 2032-2036. Link to Full Text for this item Link to SFX for this item
17. Okamoto, Y. "Low-pH-ffnduced transformation of bilayer membrane into bicontinuous cubic phase in dioleoylphosphatidylserine/monoolein membranes." Langmuir 24.7 (2008): 3400-3406. Link to Full Text for this item Link to SFX for this item
18. Paganin, D. "Noninterferometric Phase Imaging with Partially Coherent Light." Physical review letters 80.12 (1998): 2586-2589. Link to Full Text for this item Link to SFX for this item
19. Cattaneo, F. "Digitally tunable microfluidic optical fiber devices." Journal of microelectromechanical systems 12.6 (2003): 907-912. Link to SFX for this item
20. Drasdo, D. "A single-cell-based model of tumor growth in vitro: monolayers and spheroids." Physical biology 2.3 (2005): 133-147. Link to Full Text for this item Link to SFX for this item
View More...
View Less...
Select All Clear All

Expand list of advanced services Advanced