[HTML][HTML] Multi-scale fractal Fourier Ptychographic microscopy to assess the dose-dependent impact of copper pollution on living diatoms

V Bianco, L Miccio, D Pirone, E Cavalletti, J Behal… - Scientific Reports, 2024 - nature.com
Accumulation of bioavailable heavy metals in aquatic environment poses a serious threat to
marine communities and human health due to possible trophic transfers through the food …

Multi-scale fractal Fourier Ptychographic microscopy to assess the dose-dependent impact of copper pollution on living diatoms.

V Bianco, L Miccio, D Pirone, E Cavalletti, J Behal… - Scientific …, 2024 - europepmc.org
Accumulation of bioavailable heavy metals in aquatic environment poses a serious threat to
marine communities and human health due to possible trophic transfers through the food …

Multi-scale fractal Fourier Ptychographic microscopy to assess the dose-dependent impact of copper pollution on living diatoms

V Bianco, L Miccio, D Pirone, E Cavalletti… - Scientific …, 2024 - pubmed.ncbi.nlm.nih.gov
Accumulation of bioavailable heavy metals in aquatic environment poses a serious threat to
marine communities and human health due to possible trophic transfers through the food …

Multi-scale fractal Fourier Ptychographic microscopy to assess the dose-dependent impact of copper pollution on living diatoms.

V Bianco, L Miccio, D Pirone, E Cavalletti… - Scientific …, 2024 - search.ebscohost.com
Accumulation of bioavailable heavy metals in aquatic environment poses a serious threat to
marine communities and human health due to possible trophic transfers through the food …

Multi-scale fractal Fourier Ptychographic microscopy to assess the dose-dependent impact of copper pollution on living diatoms

V Bianco, L Miccio, D Pirone, E Cavalletti… - Scientific …, 2024 - ui.adsabs.harvard.edu
Accumulation of bioavailable heavy metals in aquatic environment poses a serious threat to
marine communities and human health due to possible trophic transfers through the food …