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59 results
  • Cross-section through a bamboo stem, LM
  • Arabidopsis thaliana plant cells containing chloroplasts, LM
  • Fractal patterns in a Bacillus subtilis biofilm, LM
  • Cross-section through Diospyrus plant stem, LM
  • Cell walls in a Quercus (oak) stem, LM
  • Fractal patterns in a Bacillus subtilis biofilm, LM
  • Plant tissue, LM
  • Fractal patterns in a Bacillus subtilis biofilm, LM
  • Fractal patterns in a Bacillus subtilis biofilm, LM
  • Leaf from Araucaria Araucana (monkey puzzle tree), LM
  • Cross-section through a cluster of maize leaves, LM.
  • Confocal micrograph of Bacillus subtilis. Bacillus subtilis is a Gram-positive, rod-shaped bacterium, commonly found in soil. Fluorescent proteins (TagRFP-T, sfGFP, TagBFP, mKate2 and mOrange2), time-lapse confocal microscopy and biophysical models are being used to understand the organization of bacterial biofilms.
  • Confocal micrograph of E. coli
  • Confocal micrograph of chloroplasts
  • Confocal micrograph of Bacillus subtilis. Bacillus subtilis is a Gram-positive, rod-shaped bacterium, commonly found in soil. Fluorescent proteins (TagRFP-T, sfGFP, TagBFP, mKate2 and mOrange2), time-lapse confocal microscopy and biophysical models are being used to understand the organization of bacterial biofilms.
  • Bacillus subtilis
  • Confocal micrograph of E. coli
  • Gene expression in plants
  • Arabidopsis thaliana embryonic leaf
  • Gene expression in plants
  • Confocal micrograph of Bacillus subtilis. Bacillus subtilis is a Gram-positive, rod-shaped bacterium, commonly found in soil. Fluorescent proteins (TagRFP-T, sfGFP, TagBFP, mKate2 and mOrange2), time-lapse confocal microscopy and biophysical models are being used to understand the organization of bacterial biofilms.
  • Confocal micrograph of Arabidopsis thaliana seedling
  • Soy sauce crystals
  • Confocal micrograph of Arabidopsis thaliana
  • Confocal micrograph of E. coli
  • Confocal micrograph of Bacillus subtilis. Bacillus subtilis is a Gram-positive, rod-shaped bacterium, commonly found in soil. Fluorescent proteins (TagRFP-T, sfGFP, TagBFP, mKate2 and mOrange2), time-lapse confocal microscopy and biophysical models are being used to understand the organization of bacterial biofilms.
  • Wine crystals
  • Confocal micrograph of Arabidopsis thaliana seedling
  • Confocal micrograph of E. coli
  • Confocal micrograph of E. coli