#Fluorescence Microscope

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#Fluorescence Microscope Reel by @drpriyanshu.insights - The beauty of Fluorescence Microscopy 

Fluorescence microscopy is highly sensitive, specific, reliable and extensively used by scientists to observe
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@drpriyanshu.insights
The beauty of Fluorescence Microscopy Fluorescence microscopy is highly sensitive, specific, reliable and extensively used by scientists to observe the localization of molecules within cells, and of cells within tissues. A fluorescence microscope works by combining the magnifying properties of the light microscope with fluorescence emitting properties of compounds. Fluorescence microscopy uses a high-intensity light source that excites a fluorescent molecule called a fluorophore in the sample observed. Principle. The specimen is illuminated with light of a specific wavelength (or wavelengths) which is absorbed by the fluorophores, causing them to emit light of longer wavelengths (i.e., of a different color than the absorbed light). One limitation of fluorescence microscopy is that fluorophores lose their capacity to fluoresce when illumi- nated due to photobleaching. Also, although use of fluorescent reporter proteins enables analysis of living cells, cells are prone to phototoxicity, especially when a short wavelength is used. Follow @sciducate to learn daily
#Fluorescence Microscope Reel by @reactionchamber - Fluorescence in action 🌟💙 Dropping fluorescein solution into isopropyl alcohol under UV light 

#science #research #optics #photomicrograph #imaging
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@reactionchamber
Fluorescence in action 🌟💙 Dropping fluorescein solution into isopropyl alcohol under UV light #science #research #optics #photomicrograph #imaging #photooftheday #microscope #microscopic #objective #microscopes #nature #fluorescent #bioscapes #biology #sciart #cells #chemistry #lookattheblue #cell #colorful #thankyouforsharing #cellbiology #rodent #neuroscience
#Fluorescence Microscope Reel by @brittbakerwanders - I measured a Milnesium Tardigrade for the first time! I ordered this small millimeter instrument that didn't quite fit the scope but I think I figured
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@brittbakerwanders
I measured a Milnesium Tardigrade for the first time! I ordered this small millimeter instrument that didn’t quite fit the scope but I think I figured out a hack to get it to work. Sample: tree lichen 🔬 Motic BA310 w/ polarization #science #biology #microscope #tardigrade #lichen
#Fluorescence Microscope Reel by @0.7microscope - Microscope Under the 
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#microscope #undermicroscope ##zoom #viralreels #Amazing #tranding #instagood #food #fastfood
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@0.7microscope
Microscope Under the . . #microscope #undermicroscope ##zoom #viralreels #Amazing #tranding #instagood #food #fastfood
#Fluorescence Microscope Reel by @mikrohiker - (english version below) Wurmfarn (Dryopteris filix-mas) : Auswerfen der Sporen aus den Sporenkapseln unter dem Mikroskop. Hierbei wurden von einem tro
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@mikrohiker
(english version below) Wurmfarn (Dryopteris filix-mas) : Auswerfen der Sporen aus den Sporenkapseln unter dem Mikroskop. Hierbei wurden von einem trockenen Wedel Sporenkapseln abgekratzt und in wasserfreiem Glycerin eingebettet. Anschließend wurde Wasser unter dem Deckglas hindurchgezogen, dadurch reisst die Sporenkapsel und schleudert die Sporen aus. Unter den kontrollierten Bedingungen kann man die einzelnen Phasen dieses Prozesses gut sehen. Zeitraffer 400%. Musik aus dem Album "What is the opposite of ambivalence" von @dvvvdvvv, Ausschnitt aus track “spending“, vielen Dank ! (english version below) Worm fern (Dryopteris filix-mas) : Ejection of the spores from the spore capsules under the microscope. Spore capsules were scraped from a dry frond and embedded in anhydrous glycerine. Water was then drawn under the cover glass, causing the spore capsule to rupture and eject the spores. The individual phases of this process can be clearly seen under the controlled conditions. Time lapse 400%. Music from the album "What is the opposite of ambivalence" by @dvvvdvvv, excerpt from track "spending", thank you ! microscopy #science #nature #botany #plant #ecology #microscope #garden #biodiversity #naturephotography #photography #biodiversität #plantanatomy #biodiversity #thinsection #neverstopexploring #ray #spore #sporerelease #fern #dryopterisfilixmas @verena_waldwildnis
#Fluorescence Microscope Reel by @scibriefs - Mikroskobik düzeyde yaşamın ritmi!

Bu büyüleyici görüntüde, bir meyve sineği embriyosunda (Drosophila melanogaster) gerçekleşen mitotik dalgaları izl
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@scibriefs
Mikroskobik düzeyde yaşamın ritmi! Bu büyüleyici görüntüde, bir meyve sineği embriyosunda (Drosophila melanogaster) gerçekleşen mitotik dalgaları izliyoruz. Embriyo henüz tek bir hücre kütlesiyken, binlerce çekirdek aynı sitoplazmayı paylaşır. Bu çekirdekler bölünmeye başladığında, süreç tüm embriyo boyunca Meksika dalgası gibi ardışık şekilde yayılır. Bu dalgalar, hücre bölünmelerini senkronize ederek yaşamın ilk düzenini oluşturur. ✨ 📹 Video: Dr. Bruno Vellutini 🏛️ Kurum: Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Almanya 🔬 Teknik: Light Sheet Mikroskopi 🔎 Büyütme: 20× (Objective Lens Magnification) 🌐 Kaynak ve diğer kazanan mikroskopik videolar: 👉 https://www.nikonsmallworld.com/galleries/2024-small-world-in-motion-competition/mitotic-waves-fruit-fly-embryo #NikonSmallWorld #Microscopy #ScienceArt #CellBiology #DevelopmentalBiology #Drosophila #MitoticWaves #MaxPlanck #MicroscopicWorld #ScienceVideo #SmallWorldInMotion
#Fluorescence Microscope Reel by @hhmijanelia - 🧬A new imaging technique developed by the Liu Lab uses a novel DNA barcode system to track hundreds of RNA & protein molecules in single cells within
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@hhmijanelia
🧬A new imaging technique developed by the Liu Lab uses a novel DNA barcode system to track hundreds of RNA & protein molecules in single cells within thick biological samples, providing a full picture of how these structures are organized inside tissues. 💡The new imaging tool, called cycleHCR, builds on a previously developed technique called Hybridization Chain Reaction, or HCR. The technique assembles multiple fluorophores on a target that shine like a bright beacon when imaged by a fluorescence microscope, enabling researchers to see molecules in single cells deep inside tissues. 🌈But HCR is limited by current fluorophores, which, because of the wide spectrum they cover, only allow three or four colors to be used at one time. This means researchers can only detect a handful of molecules in a sample, making it difficult to get a full picture of how they are organized within tissues. 🧃To overcome this, the team designed novel DNA barcodes that they could attach to the targets. Just like barcodes on products in a supermarket, which designate every individual type of item in the store, the unique DNA barcodes allow the researchers to tag each type of molecule in the sample. 🧪Each barcode contains two parts. When the two pieces match, the target is amplified by the HCR technique. The two parts of the barcode ensure the tags are specific enough to detect individual types of RNA molecules. 🔬The barcodes were also designed to be easily removed, so multiple rounds of HCR can be performed on the same sample. The initial round of imaging uses three barcodes, picking up three RNA molecules in three different colors. These barcodes are removed, and a second round of imaging uses three different barcodes and so on for multiple rounds, eventually allowing the discovery of an unlimited number of targets in a single sample. 🧫In addition to detecting RNA, the researchers developed a way to use the same barcodes to detect proteins. 📽️cycleHCR imaging of 8 protein targets in a hippocampal slice, as part of the joint RNA and protein imaging. Credit: Gandin & Kim et al.
#Fluorescence Microscope Reel by @desi_morrison - I missed my opportunity to post this bleeding algae on Halloween (it's unfortunately not actually bleeding)! 

I found some interesting dark globs of
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@desi_morrison
I missed my opportunity to post this bleeding algae on Halloween (it’s unfortunately not actually bleeding)! I found some interesting dark globs of Cyanobacteria growing on the air tube in my stock tank. These globs were shiny and nearly black…until you crushed them. Then they released a deep red pigment. There wasn’t much living inside those mats, but the life on and around them kept me busy: Lacrymaria, Stentor, Dileptus, a few flagellates I didn’t bother trying to identify because I know my limits, some Euglenoids, and a rotifer from the family Notommatidae. It’s one of those samples that reminds me why I love microscopy. 🔬 Olympus BX51 w/ DIC from @mundaymicroscope 🎥 iPhone 14
#Fluorescence Microscope Reel by @learntoupgrade_official - 🔬✨ The World Beneath the Lens: Neil Dust Under a Microscope!

Get ready to dive into the microscopic world of dust particles that exist in our everyd
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@learntoupgrade_official
🔬✨ The World Beneath the Lens: Neil Dust Under a Microscope! Get ready to dive into the microscopic world of dust particles that exist in our everyday surroundings but look truly magical under a microscope! 🔍✨ Witness the fascinating structures and colors of these tiny particles, revealing an unseen universe right beneath our feet. Science is beautiful, even in the smallest of things! #MicroscopeMagic #TinyWorlds #NeilDust #Microscopy #ScienceInEverydayLife #Microbiology #STEM #Curiosity

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