This work deals with a non-destructive method involving image analysis and kinetic modelling to determine fungal biomass in solid-state fermentation (SSF). Fractal dimension, quantifying the morphological changes of mycelia-matrix from culture images, showed correlations with Penicillium decumbens biomass on lignocelluloses substrates. Kinetic models were constructed to describe the variation of fractal dimension of mycelia-matrix along with fungal growth. Fermentations on straw substrates with different particle lengths and moisture contents were carried out to validate the proposed models. Relative errors of the models were 0.541-5.221% for biomass and 0.454-3.885 parts per thousand for fractal dimension. Parameters delta and eta in fract...
This study examines and evaluates a colourimetric technique that could be implemented as a real-time...
Developing improved industrial bioprocesses has been a driver for the growing research attention to ...
Development times for efficient large-scale production, utilizing fungal species, are still very lon...
Abstract Background Fractal geometry estimates have proven useful in studying the growth strategies ...
In solid-state fermentation (SSF) research, it is not possible to separate biomass quantitatively fr...
The development of methods capable of accurately characterising the morphology of filamentous microb...
Filamentous fungal colonies show a remarkable diversity of different mycelial branching patterns. To...
Mycelial morphology is a critically important process property in industrial fermentations of filame...
Mycelial morphology is a critically important process property in fermentations of lamentous micro-o...
The development of methods capable of accurately characterising the morphology of filamentous microbe...
Within the dissertation thesis “Study of Biological Material Attributes by Using Image Analysis Meth...
Aims: In this study, measurement of colour changes during solid state fermentation (SSF) are present...
International audienceFilamentous fungi have a complex morphology that induces fermentation process ...
<p>In solid-state fermentation (SSF) research, it is not possible to separate biomass quantita...
Aims: In solid state fermentation (SSF), estimation of biomass is difficult as fungal mycelium penet...
This study examines and evaluates a colourimetric technique that could be implemented as a real-time...
Developing improved industrial bioprocesses has been a driver for the growing research attention to ...
Development times for efficient large-scale production, utilizing fungal species, are still very lon...
Abstract Background Fractal geometry estimates have proven useful in studying the growth strategies ...
In solid-state fermentation (SSF) research, it is not possible to separate biomass quantitatively fr...
The development of methods capable of accurately characterising the morphology of filamentous microb...
Filamentous fungal colonies show a remarkable diversity of different mycelial branching patterns. To...
Mycelial morphology is a critically important process property in industrial fermentations of filame...
Mycelial morphology is a critically important process property in fermentations of lamentous micro-o...
The development of methods capable of accurately characterising the morphology of filamentous microbe...
Within the dissertation thesis “Study of Biological Material Attributes by Using Image Analysis Meth...
Aims: In this study, measurement of colour changes during solid state fermentation (SSF) are present...
International audienceFilamentous fungi have a complex morphology that induces fermentation process ...
<p>In solid-state fermentation (SSF) research, it is not possible to separate biomass quantita...
Aims: In solid state fermentation (SSF), estimation of biomass is difficult as fungal mycelium penet...
This study examines and evaluates a colourimetric technique that could be implemented as a real-time...
Developing improved industrial bioprocesses has been a driver for the growing research attention to ...
Development times for efficient large-scale production, utilizing fungal species, are still very lon...