May 2018 References

May 1, 2018

1. A. Mullard, Nat. Rev. Drug Discov., 15, 7, 447 (2016).

2. E. Michelini, L. Cevenini, L. Mezzanotte, A. Coppa, and A. Roda, Anal. Bioanal. Chem., 398, 1, 227-238 (2010).

3. S. M. Paul et al., Nat. Rev. Drug Discov., 9, 203 (2010).

4. A. Adan, Y. Kiraz, and Y. Baran, Curr. Pharm. Biotechnol., 17, 14, 1213-1221 (2016).

5. B. M. Baker and C. S. Chen, J. Cell Sci., 125, 13, 3015-3024 (2012).

6. C. R. Thoma, M. Zimmermann, I. Agarkova, J. M. Kelm, and W. Krek, Adv. Drug Deliv. Rev., 69-70, 29-41 (2014).

7. M. Ravi, A. Ramesh, and A. Pattabhi, J. Cell. Physiol., 232, 10, 2679-2697 (2017).

8. L.C. Kimlin, G. Casagrande, and V. M. Virador, Mol. Carcinog., 52, 3, 167-182 (2013).

9. E. R. Shamir and A. J. Ewald, Nat. Rev. Mol. Cell Biol., 15, 10, 647-664 (2014).

10. H. Clevers, Cell, 165, 7, 1586-1597 (2016).

11. M. Simian and M. J. Bissell, J. Cell Biol., 216, 1, 31-40 (Jan. 2, 2017).

12. M. Zanoni et al., Sci. Rep., 6, 19103 (2016).

13. V. J. Pansare, S. Hejazi, W. J. Faenza, and R. K. Prud’homme, Chem. Mater., 24, 5, 812-827 (2012).

14. E. A. Specht, E. Braselmann, and A. E. Palmer, Annu. Rev. Physiol., 79, 93-117 (2017).

15. J. Lippincott-Schwartz, N. Altan-Bonnet, and G. H. Patterson, Nat. Cell Biol. Suppl., S7-14 (2003).

16. R. A. Hoebe et al., Nat. Biotechnol., 25, 2, 249-253 (2007).

17. H. Schneckenburger et al., J. Microsc., 245, 3, 311-318 (2012).

18. R. Strack, Nat. Methods, 12, 12, 1111 (2015).

19. S. Waldchen, J. Lehmann, T. Klein, S. van de Linde, and M. Sauer, Nat. Sci. Rep., 5, 15348 (2015).

20. S. Douthwright and G. Sluder, J. Cell Physiol., 232, 9, 2461-2468 (2017).

21. P. P. Laissue, R. A. Alghamdi, P. Tomancak, E. G. Reynaud, and H. Shroff, Nat. Methods, 14, 7, 657-661 (2017).

22. F. Zernike, Science, 121, 345 (1955).

23. M. Pluta, "Nomarski's DIC microscopy: a review," Proc. SPIE, 18046 (May 3, 1994); https://doi.org/10.1117/12.171873.

24. V. V. Tuchin, "Tissue optics: light scattering methods and instruments for medical diagnosis," SPIE Press, PM166 (Sep. 18, 2007).

25. V. Ntziachristos, Nat. Methods, 7, 8, 603-614 (2010).

26. J. Pawley, Handbook of Biological Confocal Microscopy, Springer US (2006).

27. J. M. Schmitt, A. Knuttel, and M. Yadlowsky, J. Opt. Soc. Am. A. Opt. Image Sci. Vis., 11, 8, 2226-2235 (1994).

28. W. Denk, J. H. Strickler, and W. W. Webb, Science, 248, 4951, 73-76 (1990).

29. W. R. Zipfel, R. M. Williams, and W. W. Webb, Nat. Biotechnol., 21, 11, 1369-1377 (2003).

30. R. M. Power and J. Huisken, Nat. Methods, 14, 360 (2017).

31. T. A. Planchon et al., Nat. Methods, 8, 5, 417-423 (2011).

32. J. Andilla et al., Sci. Rep., 7, 44939 (2017).

33. G. Popescu, "Quantitative phase imaging of cells and tissues," New York, McGraw-Hill (2011).

34. G. Popescu, T. Ikeda, R. R. Dasari, and M. S. Feld, Opt. Lett., 31, 6, 775-777 (2006).

35. Z. Wang, Opt. Express, 19, 2, 1016-1026 (2011).

36. E. Cuche, F. Bevilacqua, and C. Depeursinge, Opt. Lett., 24, 5, 291-293 (1999).

37. P. Bon, G. Maucort, B. Wattellier, and S. Monneret, Opt. Express, 17, 15, 13080-13094 (2009).

38. J. Marrison, L. Raty, P. Marriott, and P. O'Toole, Sci. Rep., 3, 2369 (2013).

39. A. Barty, K. A. Nugent, D. Paganin, and A. Roberts, Opt. Lett., 23, 11, 817-819 (1998).

40. Y. Sung et al., Opt. Express, 17, 1, 266-277 (2009).

41. M. Shribak and S. Inoue, Appl. Opt., 45, 3, 460-469 (2006).

42. M. A. Model, Cytometry A, 93, 3, 281-296 (2018).

43. R. Barer, Nature, 169, 4296, 366-367 (1952).

44. H. G. Davies and M. H. Wilkins, Nature, 169, 4300, 541 (1952).

45. W. Choi et al., Nat. Methods, 4, 9, 717-719 (2007).

46. T. S. Ralston, D. L. Marks, P. S. Carney, and S. A. Boppart, Nat. Phys., 3, 2, 129-134 (2007).

47. Y. Cotte, Nat. Photonics, 7, 113 (2013).

48. T. Kim et. al., Nat. Photonics, 8, 3, 256-263 (2014).

49. H. Ding, Z. Wang, F. Nguyen, S. A. Boppart, and G. Popescu, Phys. Rev. Lett., 101, 23, 238102 (2008).

50. T. Kim, R. Zhou, L. L. Goddard, and G. Popescu, Laser Photonics Rev., 10, 1, 13-39 (2015).

51. H. F. Ding and G. Popescu, Opt. Express, 18, 2, 1569-1575 (2010).

52. Z. Wang, Opt. Express, 19, 21, 19907-19918 (2011).

53. D. B. Murphy and M. W. Davidson, "Fundamentals of light microscopy and electronic imaging," Hoboken, NJ, Wiley-Blackwell (2013).

54. M. Mir, Proc. Natl. Acad. Sci. USA, 108, 32, 13124-13129 (2011).

55. M. Mir, A. Bergamaschi, B. S. Katzenellenbogen, and G. Popescu, PLoS ONE, 9, 2, e89000 (2014).

56. B. Bhaduri, M. Kandel, C. Brugnara, K. Tangella, and G. Popescu, Sci. Rep., 4: 6211 (2014).

57. M. Mir et al., PLoS ONE, 7, 6, e39816 (2012).

58. S. Sridharan, V. Macias, K. Tangella, A. Kajdacsy-Balla, and G. Popescu, Sci. Rep., 5, 9976 (2015).

59. S. Sridharan et al., Sci. Rep., 6, 33818 (2016).

60. T. H. Nguyen, M. E. Kandel, M. Rubessa, M. B. Wheeler, and G. Popescu, Nat. Commun., 8, 1, 210 (2017).

Sponsored Recommendations

How to Tune Servo Systems: Force Control

Oct. 23, 2024
Tuning the servo system to meet or exceed the performance specification can be a troubling task, join our webinar to learn to optimize performance.

Laser Machining: Dynamic Error Reduction via Galvo Compensation

Oct. 23, 2024
A common misconception is that high throughput implies higher speeds, but the real factor that impacts throughput is higher accelerations. Read more here!

Boost Productivity and Process Quality in High-Performance Laser Processing

Oct. 23, 2024
Read a discussion about developments in high-dynamic laser processing that improve process throughput and part quality.

Precision Automation Technologies that Minimize Laser Cut Hypotube Manufacturing Risk

Oct. 23, 2024
In this webinar, you will discover the precision automation technologies essential for manufacturing high-quality laser-cut hypotubes. Learn key processes, techniques, and best...

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!