يعرض 1 - 8 نتائج من 8 نتيجة بحث عن '"Super-resolution microscopy"', وقت الاستعلام: 1.49s تنقيح النتائج
  1. 1
    رسالة جامعية

    المساهمون: Ahluwalia, Balpreet Singh

    Relation: Paper I: Villegas-Hernández, L.E., Nystad, M., Ströhl, F., Basnet, P., Acharya, G. & Ahluwalia, B.S. (2020). Visualizing ultrastructural details of placental tissue with superresolution structured illumination microscopy. Placenta, 97, 42-45. Also available in Munin at https://hdl.handle.net/10037/20990.Paper II: Villegas-Hernández, L.E., Dubey, V., Nystad, M., Tinguely, J.C., Coucheron, D.A., Dullo, F.T., … Ahluwalia, B.S. (2022). Chip-based multimodal super-resolution microscopy for histological investigations of cryopreserved tissue sections. Light: Science & Applications, 11, 43. Also available in Munin at https://hdl.handle.net/10037/26662.Paper III: Villegas-Hernández, L.E., Dubey, V.K., Mao, H., Pradhan, M., Tinguely, J.C., Hansen, D.H., … Ahluwalia, B.S. Super-resolution histology of paraffin-embedded samples via photonic chip-based microscopy. (Manuscript). Also available on bioRxiv at https://doi.org/10.1101/2023.06.14.544765.

  2. 2
    تقرير

    المساهمون: Øie, Cristina Ionica, Ahluwalia, Balpreet Singh, TInguely, Jean-Claude

  3. 3
    رسالة جامعية

    المؤلفون: Opstad, Ida Sundvor

    المساهمون: Ahluwalia, Balpreet

    Relation: Paper A: Opstad, I.S., Wolfson, D.L., Øie, C.I. & Ahluwalia, B.S. (2018). Multi-color imaging of sub-mitochondrial structures in living cells using structured illumination microscopy. Nanophotonics, 7(5), 935-947. Also available in Munin at https://hdl.handle.net/10037/13868.Paper B: Opstad, I.S., Popova, D.A., Acharya, G., Basnet, P. & Ahluwalia, B.S. (2018). Live-cell imaging of human spermatozoa using structured illumination microscopy. Biomedical Optics Express, 9(12), 5939-5945. Also available in Munin at https://hdl.handle.net/10037/15036.Paper C: Opstad, I.S., Ströhl, F., Birgisdottir, Å.B., Maldonado, S.A.A., Kalstad, T., Myrmel, T., Agarwal, K. & Ahluwalia, B.S. (2019) Adaptive fluctuation imaging captures rapid subcellular dynamics. Proceedings of SPIE, the International Society for Optical Engineering, Advances in Microscopic Imaging II, 11076, 1-3. Published version available at https://doi.org/10.1117/12.2526846. Submitted version available in Munin at https://hdl.handle.net/10037/17740.Paper D: Acuña, S., Ströhl, F., Opstad, I.S., Ahluwalia, B.S. & Agarwal, K. (2020). MusiJ: an ImageJ plugin for video nanoscopy. Biomedical Optics Express, 11(5), 2548-2559. Also available in Munin at https://hdl.handle.net/10037/18593.Paper E: Sekh, A.A., Opstad, I.S., Birgisdottir, Å.S., Myrmel, T., Ahluwalia, B.S., Agarwal, K. & Prasad, D. (2020). Learning nanoscale motion patterns of vesicles in living cells. 2020 IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR), Seattle, WA, USA, 2020, pp. 14011-14020. Published version available at https://doi.org/10.1109/CVPR42600.2020.01403. Accepted manuscript version available in Munin at https://hdl.handle.net/10037/20305.Paper F: Opstad, I.S., Maldonado, S., Villegas, L., Cauzzo, J., Škalko-Basnet, N., Ahluwalia, B.S. & Agarwal, K. Fluorescence fluctuations-based super-resolution microscopy techniques: an experimental comparative study. (Manuscript).Paper G: Opstad, I.S., Ströhl, F., Fantham, M., Hockings, C., Vanderpoorten, O., van Tartwijk, F.W., ... Kaminski, C.F. (2020). A waveguide imaging platform for live-cell TIRF imaging of neurons over large fields of view. Journal of Biophotonics, 13(6), e201960222. Also available in Munin at https://hdl.handle.net/10037/17943.

  4. 4
    دورية أكاديمية

    المصدر: Agarwal, K., Macháň, R. & Prasad, D.K. (2018). Non-heuristic automatic techniques for overcoming low signal-to-noise-ratio bias of localization microscopy and multiple signal classification algorithm. Scientific Reports, 8(1), 4988.

    Relation: Scientific Reports

  5. 5
    دورية أكاديمية

    المصدر: Opstad, I.S., Wolfson, D.L., Øie, C.I. & Ahluwalia, B.S. (2018). Multi-color imaging of sub-mitochondrial structures in living cells using structured illumination microscopy. Nanophotonics, 7(5), 935-947.

    Relation: Opstad, I.S. (2021). Bringing optical nanoscopy to life - Super-resolution microscopy of living cells. (Doctoral thesis). https://hdl.handle.net/10037/20306

  6. 6
    دورية أكاديمية

    المصدر: Ahluwalia BS, Coucheron DA, Helle ØI, Øie CI, Dullo FT. Chip Based Nanoscopy: Towards Integration and High-throughputImaging. Proceedings of SPIE, the International Society for Optical Engineering. 2017;10350

    Relation: Coucheron, D.A. (2021). Waveguide-based Excitation for High-throughput Imaging. (Doctoral thesis). https://hdl.handle.net/10037/20695

  7. 7
    دورية أكاديمية

    المصدر: Diekmann, R., Helle, Ø.I., Øie, C.I., McCourt, P., Huser, T.R, Schüttpelz, M. & Ahluwalia, B.S. (2017). Chip-based wide field-of-view nanoscopy. Nature Photonics, 11, 322-328.

    Relation: Helle, Ø.I. (2019). On-chip optical nanoscopy: towards high throughput and multi-modality. (Doctoral thesis). https://hdl.handle.net/10037/16641.

  8. 8