Michael Shribak

Michael Shribak
Senior Scientist

Phone (508) 289-7242
贰-尘补颈濒听mshribak@mbl.edu


LAB MEMBERS:
Elena Iourieva, Research Assistant

Research Interests:

Research of the Shribak lab is focused on development of advanced light microscopy and computation imaging techniques, which should serve as advanced tools for biological discoveries and would answer to the live image challenges. As member of a small team, which was lead by Dr. Inou茅 and Dr. Shimomura, Michael Shribak contributed to discovery of the polarization fluorescence of GFP crystals (PNAS, 99(7), 4272-4277 (2002)). Together with Dr. Oldenbourg, he developed a scanned-aperture PolScope, which generated a map of birefringence in the 3-dimensional orientation - a world-first (US Patent 6924893). Michael Shribak proposed new computation algorithms, which are currently used in LC-PolScope (US patents 7372567, 7239388, 7202950). He also elaborated on a theory of polarization aberration in light microscopes and polarization rectifiers (Opt. Eng., 41(5), 943-954 (2002)).

The orientation-independent differential interference contrast (OI-DIC) microscope, which was proposed in 2002 (US Patents 7564618, 7233434), allows the bias to be modulated and shear directions to be switched rapidly without mechanically rotating the specimen or the DIC prisms. A set of raw DIC images with orthogonal shear directions and different biases is captured within a second, which then used to compute the high-resolution quantitative phase image. An example of OI-DIC image of the crane fly spermatocyte (full metaphase of meiosis-I) is shown in Fig. 1. The three autosomal bivalent chromosomes are pulled apart at the spindle equator, along with one of the X-Y sex univalents located on the right. The distribution of tubular mitochondria surrounding the spindle and granual chromosome structure is clearly visible.

The new polychromatic polarizing microscopy (PPM) technique, which exploits a vector polarization interference of white light, was proposed in 2009 (US Patent 9625369). Unlike the traditional polarizing microscope, the full spectrum interference colors in the PPM appears even in specimens with low retardance levels of only a few nanometers, which was not possible before. The image brightness shows the phase distribution and the hue depicts the birefringence orientations. Simultaneous direct observation of phase and polarization images is another unique advantage first introduced by the PPM. Fig. 2 demonstrates a PPM image of spatial orientation of neurons in thin section of the mouse midbrain. Neurons oriented at 0-degrees appear green, while those a 45-degrees are purplish-blue and those at -45 degrees are pinkish-red. These colors don秘色视频檛 involve staining or tagging the cells with fluorescent markers: the colors are generated strictly from the light interacting with the physical orientation of each neuron. Not only does this image neurons at single-cell resolution, this image shows how these cells are interconnected. Such information is critical for learning more about how a brain works or about what might be going wrong with those interconnections during Alzheimer秘色视频檚 disease and other neurological conditions.

The both OI-DIC and PPM assemblies are implemented as add-ons, which can be used for extension of functionality of a regular light microscope without its modification. These new imaging modalities allow the users to observe and record unstained living cells with extremely fine details, some of which have never been seen with any other mode of microscopy before. The both assemblies are available for dissemination. They can be manufactured for other users per request.

Galleries of micrographs obtained with quantitative orientation-independent DIC and polarization microscopy techniques can be found here.

PROJECTS
Quantitative orientation independent DIC microscopy
Polychromatic polarization microscopy

DISSEMINATION
The both quantitative orientation-independent DIC (OI-DIC) and polychromatic polarization microscope (PPM) assemblies are available for dissemination. We can manufacture them for other users per request. We are also interesting in licensing or partnership in order to bring the OI-DIC and PPM technologies to the market.

SELECTED PEER-REVIEWED ARTICLES:

  • J.E. Malamy,听M. Shribak*, 秘色视频淗igh resolution imaging of epithelial cell migration and wound healing in a Cnidarian model using an orientation-independent DIC microscope秘色视频 Journal of Microscopy, vol. 270, No. 3, p. 290-301 (2018).
  • R. Imai, T. Nozaki, T. Tani, K. Hibino, S. Idea, S. Tamura, K. Takahashi,听M. Shribak*, K. Maeshima*, 秘色视频淒ensity秘色视频 imaging of heterochromatin in live mouse cells using OI-DIC microscopy秘色视频, Molecular Biology of the Cell, vol. 28, No. 23, p. 3349-3359 (2017).
  • M. Shribak*, K. Larkin, D. Biggs, 秘色视频淢apping of optical path length and image enhancement using orientation-independent differential interference contrast microscopy秘色视频, Journal of Biomedical Optics, vol. 22, No. 1, 16006 (2017)
  • M. Shribak, 秘色视频淧olychromatic polarization microscope: bringing colors to a colorless world秘色视频, Nature/ Scientific Reports,听5, 17340 (2015).
  • M. Shribak, 秘色视频淨uantitative orientation-independent DIC microscope with fast switching shear direction and bias modulation秘色视频, The Journal of the Optical Society of America A, vol.30, No.4, p.769-782 (2013)
  • M. Shribak, 秘色视频淐omplete polarization state generator with one variable retarder and its application for fast and sensitive measuring of two-dimensional birefringence distribution秘色视频, The Journal of the Optical Society of America A, vol.28, No.3, p.410-419 (2011).
  • M. Shribak*, J. LaFountain, D. Biggs, S. Inou茅, 秘色视频淥rientation-independent differential interference contrast (DIC) microscopy and its combination with orientation-independent polarization system秘色视频, Journal of Biomedical Optics, vol. 13, No.1, 14011 (2008).
  • M. Shribak*, S. Inou茅, 秘色视频淥rientation-Independent Differential Interference Contrast Microscopy秘色视频, Applied Optics, vol. 45, No.3, p. 460-469 (2006).
  • M. Shribak*, R. Oldenbourg, 秘色视频淭echniques for fast and sensitive measurements of two-dimensional birefringence distributions秘色视频, Applied Optics, vol. 42, No.16, p. 3009-3017 (2003).
  • S. Inou茅*, O. Shimomura, M. Goda,听M. Shribak, P.T. Tran, 秘色视频淔luorescence polarization of green fluorescence protein秘色视频, Proceedings of the National Academy of Sciences of the USA, vol.99, No.7, p.4272 秘色视频 4277 (2002).
  • M. Shribak*, S. Inou茅, R. Oldenbourg, 秘色视频淧olarization aberrations caused by differential transmission and phase shift in high NA lenses: theory, measurement and rectification秘色视频, Optical Engineering, vol. 41, No. 5, p.943-954, (2002).
  • (*corresponding authors)

SELECTED PATENTS:

  • M. Shribak, 秘色视频淧olychromatic polarization state generator and its application for real-time birefringence imaging秘色视频, US Patent #9,625,369 (2017).
  • M. Shribak, 秘色视频淥rientation-independent differential interference contrast microscopy technique and device秘色视频, US Patents #7,564,618 (2009), and #7,233,434 (2007).
  • M. Shribak, and R. Oldenbourg 秘色视频淩etardance measurement system and method秘色视频, US Patents #7,372,567 (2007), #7,239,388 (2007), #7,202,950 (2007).
  • M. Shribak, R. Oldenbourg, P.J. Cronin, C.C. Hoyt, and P.J. Miller 秘色视频淚nstantaneous polarization measurement system and method秘色视频, US Patent #7,079,247 (2006).
  • R. Oldenbourg,听M. Shribak, C. Hoyt, and P. Torok 秘色视频淓nhancing polarized light microscopy秘色视频, US Patent #6,924,893, (2003).
  • M. I. Shribak听秘色视频淎pparatus for measuring birefringence秘色视频, Patents of the USSR #1,431,484, (1986), #1,414,097 (1986), #1,390,636 (1985), #1,290,091 (1985), #1,290,090 (1985), #1,282,202 (1985).

SELECTED BOOK CHAPTERS:

  • M. Shribak, 秘色视频淧olarization秘色视频 (revised). In:听Handbook of Optical Metrology: Principles and Applications, 2nd听别诲颈迟颈辞苍听(ed. T. Yoshizawa), CRC Press, Boca Raton, FL, USA, pp. 373-388 (2015).
  • M. Shribak, 秘色视频淒ifferential interference contrast microscopy秘色视频. In:听Biomedical Optical Phase Microscopy and Nanoscopy听(eds. N. T. Shaked, Z. Zalevsky and L. L. Satterwhite), Elsevier, (2012).
  • R. Oldenbourg, and听M. Shribak, 秘色视频淢icroscopes秘色视频. In:听Handbook of Optics, Third Edition, Volume I: Geometrical and Physical Optics, Polarized Light, Components and Instruments听(ed. Michael Bass), McGraw-Hill Professional, (2010).

Selected Image Awards:

2017: .听

2017:

2012:

2011: The first prize in the MBL Scientific Photography Contest

2010:

Selected Movies: