Search Results - "Retterer, S T"

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  1. 1

    Modular microfluidics for point-of-care protein purifications by Millet, L J, Lucheon, J D, Standaert, R F, Retterer, S T, Doktycz, M J

    Published in Lab on a chip (01-01-2015)
    “…Biochemical separations are the heart of diagnostic assays and purification methods for biologics. On-chip miniaturization and modularization of separation…”
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    Journal Article
  2. 2

    Optic imaging of single and two-phase pressure-driven flows in nano-scale channels by Wu, Qihua, Ok, Jeong Tae, Sun, Yongpeng, Retterer, S T, Neeves, Keith B, Yin, Xiaolong, Bai, Baojun, Ma, Yinfa

    Published in Lab on a chip (21-03-2013)
    “…Microfluidic and nanofluidic devices have undergone rapid development in recent years. Functions integrated onto such devices provide lab-on-a-chip solutions…”
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    Journal Article
  3. 3

    Model neural prostheses with integrated microfluidics: a potential intervention strategy for controlling reactive cell and tissue responses by Retterer, S.T., Smith, K.L., Bjornsson, C.S., Neeves, K.B., Spence, A.J.H., Turner, J.N., Shain, W., Isaacson, M.S.

    “…Model silicon intracortical probes with microfluidic channels were fabricated and tested to examine the feasibility of using diffusion-mediated delivery to…”
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    Journal Article
  4. 4

    Comparison of the indentation and elasticity of E. coli and its spheroplasts by AFM by Sullivan, C.J., Venkataraman, S., Retterer, S.T., Allison, D.P., Doktycz, M.J.

    Published in Ultramicroscopy (01-10-2007)
    “…Atomic force microscopy (AFM) provides a unique opportunity to study live individual bacteria at the nanometer scale. In addition to providing accurate…”
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    Journal Article
  5. 5

    Magnetic domain formation in ultrathin complex oxide ferromagnetic/antiferromagnetic bilayers by Bang, A. D., Olsen, F. K., Slöetjes, S. D., Scholl, A., Retterer, S. T., Vaz, C. A. F., Tybell, T., Folven, E., Grepstad, J. K.

    Published in Applied physics letters (24-09-2018)
    “…In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned micro- and nanostructures of ferromagnetic (FM)…”
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    Journal Article
  6. 6

    Néel vector reorientation in ferromagnetic/antiferromagnetic complex oxide nanostructures by Bang, A. D., Hallsteinsen, I., Olsen, F. K., Slöetjes, S. D., Retterer, S. T., Scholl, A., Arenholz, E., Folven, E., Grepstad, J. K.

    Published in Applied physics letters (13-05-2019)
    “…In this study, we report on a temperature-driven antiferromagnetic (AF) spin reorientation transition in micro- and nanostructures of AF/ferromagnetic (FM)…”
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    Journal Article
  7. 7

    Controlling the switching field in nanomagnets by means of domain-engineered antiferromagnets by Folven, E., Linder, J., Gomonay, O. V., Scholl, A., Doran, A., Young, A. T., Retterer, S. T., Malik, V. K., Tybell, T., Takamura, Y., Grepstad, J. K.

    “…Using soft x-ray spectromicroscopy, we investigate the magnetic domain structure in embedded nanomagnets defined in La0.7Sr0.3MnO3 thin films and…”
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    Journal Article
  8. 8

    Constant pressure fluid infusion into rat neocortex from implantable microfluidic devices by Retterer, S T, Smith, K L, Bjornsson, C S, Turner, J N, Isaacson, M S, Shain, W

    Published in Journal of neural engineering (01-12-2008)
    “…Implantable electrode arrays capable of recording and stimulating neural activity with high spatial and temporal resolution will provide a foundation for…”
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    Journal Article
  9. 9

    Néel vector reorientation in ferromagnetic/antiferromagnetic complex oxide nanostructures by Bang, A. D., Hallsteinsen, I., Olsen, F. K., Slöetjes, S. D., Retterer, S. T., Scholl, A., Arenholz, E., Folven, E., Grepstad, J. K.

    Published in Applied physics letters (13-05-2019)
    “…In this study, we report on a temperature-driven antiferromagnetic (AF) spin reorientation transition in micro- and nanostructures of AF/ferromagnetic (FM)…”
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    Journal Article
  10. 10
  11. 11

    An integrated portable Raman sensor with nanofabricated gold bowtie array substrates for energetics detection by Hatab, Nahla A, Rouleau, C M, Retterer, Scott T, Eres, Gyula, Hatzinger, Paul B, Gu, Baohua

    Published in Analyst (London) (21-04-2011)
    “…An integrated field-portable surface enhanced Raman scattering (SERS) sensing system has been developed and evaluated for quantitative analysis of energetics…”
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    Journal Article
  12. 12

    Gratings on porous silicon structures for sensing applications by Liscidini, M., Wei, X., Kang, C., Rong, G., Retterer, S.T., Patrini, M., Sipe, J.E., Weiss, S.M.

    “…We investigate the use of gratings on porous silicon structures for sensing applications. Examples of two classes of systems are studied: grating-coupled…”
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    Conference Proceeding
  13. 13
  14. 14

    Photonic crystal biosensor with in-situ synthesized DNA probes for enhanced sensitivity by Hu, S., Zhao, Y., Retterer, S. T., Kravchenko, I. I., Weiss, S. M.

    Published in 2013 IEEE Photonics Conference (01-09-2013)
    “…We report on a nearly 8-fold increase in multi-hole defect photonic crystal biosensor response by incorporating insitu synthesis of DNA probes, as compared to…”
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    Conference Proceeding
  15. 15

    Analysis of tight junction formation and integrity by Karakaya, M., Kerekes, R. A., Morrell-Falvey, J. L., Foster, C. M., Retterer, S. T.

    “…In this paper, we study segmentation of tight junctions and analyze the formation and integrity of tight junctions in large-scale confocal image stacks, a…”
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    Conference Proceeding Journal Article
  16. 16

    Direct Casting of Polymer Membranes into Microfluidic Devices by Russo, A. Peter, Retterer, Scott T., Spence, Andrew J., Isaacson, Michael S., Lepak, Lori A., Spencer, Michael G., Martin, David L., MacColl, Robert, Turner, James N.

    Published in Separation science and technology (01-08-2004)
    “…Fully functional lab-on-a-chip devices for biological analyses require the capability for cell culture, separation, and purification, as well as analyses to be…”
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    Journal Article
  17. 17

    Cell mimics created from the controlled synthesis and directed assembly of carbon nanofibers by Doktycz, M.J., Fletcher, B.L., Hullander, E.D., Fowlkes, J.D., Retterer, S.T., McKnight, T.E., Melechko, A.V., Simpson, M.L.

    Published in 2006 Bio Micro and Nanosystems Conference (01-01-2006)
    “…Biological cells represent an engineering ideal. They are the fundamental unit of all biological systems, perform virtually any function, and operate with…”
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    Conference Proceeding