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Cell polarity, the regulated asymmetric organization of eukaryotic cells, is essential for tissue homeostasis and development. Although scientists have identified the proteins involved and their interactions in vitro, the precise mechanism of how these proteins organize into signaling complexes within living cells remains a significant biological mystery.
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Most quantum biosensing applications must work within biologically relevant temperatures. Under these conditions, the biological mess bombards the sensor with information and noise. Thus, maintaining the sensor’s coherence is one of quantum biosensing’s key challenges. The other is isolating or interpreting signals, distinguishing noise from what operators want to measure.
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Fluorescence microscopy has revolutionized our view of biological processes, but the introduction of micromirror TIRF microscopy takes this even further. By overcoming traditional signal limitations, this advanced technique unveils unprecedented clarity in molecular assemblies.
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Turnkey microscope solutions — engineered to excel in specific applications — perform established techniques exceptionally well. Find out how to determine whether a DIY microscope is an appropriate solution for your application.
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The MicroMirror TIRF microscope is a unique single molecule microscope. Spatial separation of the excitation and emission beams and the use of broadband micromirrors leads to superior signal-to-noise ratios for multi-wavelength TIRF microscopy.
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