Joined February 2019
32 Photos and videos
✨ Now out in Biomedical Optics Express: Cleared tissue dual-view oblique plane microscopy 🔬: doi.org/10.1364/BOE.572592 (🧵 1/6).

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We demonstrate our method on biological samples with a range of RIs, including a whole fly brain 🧠 (imaged in < 3 min⚡) and > 1 cm long mouse bone 🐭🦴 (🧵 5/6).
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We hope this will open up further applications for fast 3D imaging of tissues and complex structures with sub-cellular resolution, using conventional sample mounting techniques. Full details 👉 doi.org/10.1364/BOE.572592 (🧵 6/6)

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Liuba Dvinskikh retweeted
🔬Our preprint list is now up on FocalPlane. This week we focus on new tools and techniques in imaging. Let us know if we are missing any recent preprints that you've enjoyed reading. focalplane.biologists.com/20…
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Liuba Dvinskikh retweeted
6 Oct 2024
Doing good science is 90% finding a science buddy to constantly talk to about the project.
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Liuba Dvinskikh retweeted
Superresolution microscopy at sub zero temperature: 2 year post doc position available in @group_laser in @cebcambridge and @BAS_News doc to build instruments to study life in the Antarctic. 🔬🥶🐟🧑‍🔬 jobs.cam.ac.uk/job/48053/

NEW JOB: Postdoc Research Associate to work alongside the British Antarctic Survey on a game-changing project aiming to develop high-resolution microscopes to study biological processes at sub-zero temperatures. For more information and to apply: jobs.cam.ac.uk/job/48053/
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Had a great time at #FOM2023 🔬in Porto with others from @ImperialPhysics Biophotonics group, meeting new people and seeing familiar faces offline. Interesting talks and posters, lots of microscopy discussions and sunshine☉.
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Liuba Dvinskikh retweeted
Alignment and Characterisation of Remote-Refocusing Systems. (arXiv:2304.00075v1 [physics.optics]) (relevance: 56%) arxiv.org/abs/2304.00075 #biophotonics #biomedicaloptics
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Enjoying day 2 of #FOM2023🔬with lots of light-sheet talks. Visit poster P1-G/3 to learn more about dual-view oblique plane microscopy (dOPM) and its application to high-content imaging of 3D cancer organoid models as part of the @MACH3Cancer CRUK Accelerator.
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Further work from my PhD out in @SciReports : nature.com/articles/s41598-0… With Hugh Sparks, @liliana_brito91 , Ken MacLeod, @sian_harding, and Chris Dunsby Many thanks to @ImperialPhysics @impchemistry @icbcdt @NHLI @EPSRC @TheBHF A mini-tweetorial (1/6):

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We also observed maintained electrical coupling in immobilized cells, without mechanotransduction, however further work is necessary to characterize the coupling mechanism. Video: Orthoslices through adult-CM on iPSC-CM with synchronized spontaneous Ca transients (5/6).
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We hope that visualizing iPSC-CM & adult-CM coupling through fast 3D LSFM imaging of Ca dynamics is a step towards better understanding of iPSC-CM electromechanical integration with native tissue🫀, and identifying potential sources of arrhythmia in stem cell grafts💓(6/6)
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Study from my PhD work recently out: doi.org/10.3389/fphys.2023.1… With Hugh Sparks, Ken MacLeod and Chris Dunsby (1/2)

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2D #LSFM at ∼400 fps enabled spatial mapping of the ms-timescale dyssynchrony of calcium spark and transient dynamics in correlation with the t-tubule structure in ventricular cardiomyocytes. 🫀🔬 (Magenta - CellMask Orange, membrane stain, Green - Fluo-4, Ca indicator) (2/2)
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