Biosystem & Bioprocesses Engineering
From mathematical modeling and computer-aided simulation to design, control and optimization of bioprocesses and biological systems.
The world around us can be explained to a great extent by understanding the systems that compose it and the processes that connect them.
The IIM-CSIC's Biosystem & Bioprocess Engineering group seeks to develop new methods and tools (mainly software) for process systems engineering, which enable the simulation, optimization and control of bioprocesses, such as those involved in food processing and preservation and in industrial biotechnology.
The group applies process systems engineering methods to improve the efficiency of key industrial processes, reducing their environmental impact and improving the quality and safety of their products.
Its focus is model identification, optimization, monitoring and robust control of non-linear dynamic systems, including distributed parameter systems (convection-diffusion-reaction). The group considers a broad spectrum of applications, namely fisheries management, food processing, quality and safety—including antimicrobial resistance—and industrial biotechnology.
- ATOPES -
<p>Programa Ciencias Mariñas: Aplicación de Tecnoloxías Innovadoras para a Obtención de Datos Pesqueiros</p>
Principal investigator:TaboadaAnteloLuisFunding body:El Programa de Ciencias Mariñas de Galicia es 1 de los 5 programas de Ciencias Marinas de los Planes Complementarios de I+D+I con las CCAA del Plan de Recuperación Transformación y Resilencia (NextGenerationEU).Funding for IIM-CSIC:137391€Fromto - DATAMARE -
<p>Programa Ciencias Mariñas: Plataforma integrada de datos mariños</p>
Principal investigator:VeloLanchasAntónFunding body:El Programa de Ciencias Mariñas de Galicia es 1 de los 5 programas de Ciencias Marinas de los Planes Complementarios de I+D+I con las CCAA del Plan de Recuperación Transformación y Resilencia (NextGenerationEU).Funding for IIM-CSIC:112585€Fromto - PreCalA -
<p>Programa Ciencias Mariñas: Ferramentas para a predición da calidade en productos da acuicultura</p>
Principal investigator:VilasFernándezCarlosFunding body:El Programa de Ciencias Mariñas de Galicia es 1 de los 5 programas de Ciencias Marinas de los Planes Complementarios de I+D+I del Plan de Recuperación Transformación y Resilencia. Financiado por FEMP/FEMPA.Funding for IIM-CSIC:100281€Fromto - DigitAlg -
<p>Programa Ciencias Mariñas: Xemelgo dixital do cultivo de algas na acuicultura multitrófica integrada</p>
Principal investigator:BalsaCantoEvaFunding body:El Programa de Ciencias Mariñas de Galicia es 1 de los 5 programas de Ciencias Marinas de los Planes Complementarios de I+D+I del Plan de Recuperación Transformación y Resilencia. Financiado por FEMP/FEMPA.Funding for IIM-CSIC:122667€Fromto - aCIDit -
<p>a-CIDiT - Modelos basados en datos y actualización de modelos para gemelos digitales</p>
Principal investigator:TaboadaAnteloLuisVilasFernándezCarlosFunding body:Ayuda PID2021-123654OB-C32 financiada por MCIN/AEI/10.13039/501100011033 y por la Unión Europea NextGenerationEU/PRTRFunding for IIM-CSIC:94200€Fromto
- Ovalle, J.C.; Vilas, C.; Antelo, L.T. (2022) On the use of deep learning for fish species recognition and quantification on board fishing vessels Marine Policy DOI:10.1016/j.marpol.2022.105015
- Pedreira, A.; Vázquez, J.A.; García, M.R. (2022) Kinetics of Bacterial Adaptation, Growth, and Death at Didecyldimethylammonium Chloride sub-MIC Concentrations Frontiers in Microbiology DOI:10.3389/fmicb.2022.758237
- González, P.; Osorio, R.R.; Pardo, X.C.; Banga, J.R.; Doallo, R. (2022) An efficient ant colony optimization framework for HPC environments Applied Soft Computing Journal DOI:10.1016/j.asoc.2021.108058
- Otero-Muras I; Banga JR (2021) Synthetic Gene Circuit Analysis and Optimization " Computational Methods in Synthetic Biology" Humana Press / Springer ISBN:978-1-0716-0822-7
- Otero-Muras I; Banga JR (2021) Automated Biocircuit Design with SYNBADm " Synthetic Gene Circuits" Springer ISBN:978-1-0716-1031-2
- TFM - Andrea Arribas Jimeno (26/09/2022) Aplicabilidad de la tecnología de imágenes hiperespectrales (HSI) como método no invasivo para la evaluación de la calidad del pescado UNIVERSIDAD DE SANTIAGO DE COMPOSTELA
- TFM - Artai Rodríguez Moimenta (19/07/2020) Desarrollo de un modelo de corte mecanístico que permita describir un proceso de fermentación mixta Universidad de Vigo (UVigo)
- TFG - Laura Honrubia Baamonde (11/07/2019) Optimization of Benzalkonium Chloride treatment in the disinfection of L. Monocytogenes in the Food Industry UNIVERSIDAD DE LLEIDA
- TFM - Pablo de la Torre Fernández (20/09/2018) Modelado del proceso de fermenatición vínica: co-cultivo de especies no convencionales Universidade da Coruña
- PhD - Alejandro López Núñez (18/07/2018) CONTRIBUTIONS TO MATHEMATICAL MODELLING AND NUMERICAL SIMULATION OF BIOFILMS UdC
- WASHTOP -
<p>Water Associated Safety Hazards in the Treatment of Produce</p>
Principal investigator:RodríguezGarcíaMíriamFunding body:European Food Safety Authority (EFSA)Funding for IIM-CSIC:80000€Fromto
- Capabilities | Development of intelligent sensors for the optimization of food processing and conservation
Development of non-invasive methods and technologies (i.e. hyperspectral imaging technology) for quality inspection of food products.
- Capabilities | Development of integrated plant-wide control and optimization for food industry
Multi-scale modeling for flexible decision-making and optimization of complex processes (i.e., sterilization) based on safety and quality control of food products using non-invasive techniques (software sensors, etc).
- Capabilities | Design of disinfection procedures and modeling for the prevention of antimicrobial resistance
Development of chemical (combinations of disinfectants, essential oils) and biological (enzymes, phages) strategies that are effective for removing monospecific and mixed microbial biofilms from surfaces in the food industry. Biocide testing and development of better biocide dosage strategies for the food industry, ensuring food safety while avoiding antimicrobial resistance acquisition.
- Capabilities | Modeling and optimization of fermentative processes and other bioprocesses with industrial utilization
Development of mathematical algorithms and simulation software for global optimization and control of bioprocesses in the food and biotechnological industry
- Capabilities | Assessment of nutritional value in seafood and design of personalized nutrition treatments and products
Design and development of seafood products for target consumers (elderly, young, diabetic, allergic to seafood, etc.) that guarantee specific nutritional requirements, safety and sustainability. Development of techniques (i.e. metabolomics, proteomics, genomics, lipidomics, etc.), using animal models and cell cultures, to characterize the response of a patient/consumer to diet and to design personalized nutrition treatments and products (i.e. nutraceutics, hypoallergenic fish products, immunostimulants, functional foods, etc).
- Prototype | Morbidostat: Unraveling Antimicrobial Resistance
Morbidostat is a computer-controlled continuous culture device that automatically adjusts drug concentration to maintain constant growth inhibition in microbial cultures. As bacteria acquire mutations that give them resistance against drugs, they are able to tolerate higher drug concentrations and grow faster, thus removing selective pressure, the driving force of evolution. To compensate for this, morbidostat increases drug concentration sufficiently to keep bacteria at their original growth rate, therefore maintaining selective pressure over time. This system allows for data acquisition to model microbial evolution under antimicrobial stress, optimize biocide dosage strategies and develop highly antimicrobial-resistant strains used to test the performance of new biocides, among other applications.
- Software | Fish-T-TaB Simulator: Temperature simulator for fish stored in tubs and boxes
This model was developed and applied by members of the EFSA Working Group on the transport/storage of fresh fishery products during the preparatory work on the BIOHAZ Scientific Opinion on the use of "tubs" for transporting and storing fresh fishery products (EFSA-Q-2019-00053). Heat transfer modeling was applied to estimate surface temperature of fish during the temperature-related processes of cooling and subsequently maintaining the chill temperature of the fish (‘cooling’ process) and/or maintaining the chill temperature (‘keeping’ process) for fish kept in ice (in boxes) versus in water and ice (in tubs) under similar transport/storage conditions.
More information here.
- Software | CRNreals: distinguishability analysis of biochemical reaction networks
A software toolbox that supports the distinguishability analysis of chemical reaction network (CRN) models.
More information here.
- Software | Kinetics of E. coli inactivation by benzalkonium chloride v1.0
This model and associated code was developed to optimize disinfection protocols and minimize bacterial resistance. This model was applied in the following journal article: Optimization of E. coli Inactivation by Benzalkonium Chloride Reveals the Importance of Quantifying the Inoculum Effect on Chemical Disinfection. Front. Microbiol., 26 June 2018. https://doi.org/10.3389/fmicb.2018.01259
More information and access to the code here.
- Software | GenSSI: toolbox for structural identifiability analysis of biological models
GenSSI is a toolbox that requires MATLAB and Symbolic Math Toolbox. It offers a technique for studying structural identifiability using iterative Lie derivatives and identifiability tableaus.
More information here,