International audiencePlant cells are elaborate three-dimensional polymer nano-constructs with complex chemistry. The bulk response of plants to light, in the far-field, is ultimately encoded by optical scattering from these nano-constructs. Their chemical and physical properties may be acquired through their interaction with a modulated nano-tip using scattering scanning near-field optical microscopy. Here, using this technique, we present 20 nm spatial resolution mechanical, spectral and optical mappings of plant cell walls. We first address the problem of plant polymers tracking through pretreatment and processing. Specifically, cellulose and lignin footprints are traced within a set of delignified specimen, establishing the factors hind...
Detailed imaging of the three‑dimensionally complex architecture of xylary plants is important for s...
<div><p>In astronomy, adaptive optics (AO) can be used to cancel aberrations caused by atmospheric t...
International audienceThe plant cell wall, a form of the extracellular matrix, is a complex and dyna...
International audiencePlant cells are elaborate three-dimensional polymer nano-constructs with compl...
Post regarding the impact of near field optical microscopy for plant cell walls investigation
Background: Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Lignocellulosic biomass is a complex network of polymers making up the cell walls of plants. It repr...
Lignocellulosic resources have been recognized to be the most promising sustainable and renewable so...
The physicochemical properties of plant fibres are determined by the fibre morphology and structural...
International audienceThe complex organic polymer, lignin, abundant in plants, prevents the efficien...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
The application of second harmonic generation (SHG) microscopy to plant materials has been neglected...
This poster demonstrates coherent anti-Stokes Raman scattering and stimulated Raman scattering of pl...
Detailed imaging of the three‑dimensionally complex architecture of xylary plants is important for s...
<div><p>In astronomy, adaptive optics (AO) can be used to cancel aberrations caused by atmospheric t...
International audienceThe plant cell wall, a form of the extracellular matrix, is a complex and dyna...
International audiencePlant cells are elaborate three-dimensional polymer nano-constructs with compl...
Post regarding the impact of near field optical microscopy for plant cell walls investigation
Background: Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Lignocellulosic biomass is a complex network of polymers making up the cell walls of plants. It repr...
Lignocellulosic resources have been recognized to be the most promising sustainable and renewable so...
The physicochemical properties of plant fibres are determined by the fibre morphology and structural...
International audienceThe complex organic polymer, lignin, abundant in plants, prevents the efficien...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
The application of second harmonic generation (SHG) microscopy to plant materials has been neglected...
This poster demonstrates coherent anti-Stokes Raman scattering and stimulated Raman scattering of pl...
Detailed imaging of the three‑dimensionally complex architecture of xylary plants is important for s...
<div><p>In astronomy, adaptive optics (AO) can be used to cancel aberrations caused by atmospheric t...
International audienceThe plant cell wall, a form of the extracellular matrix, is a complex and dyna...