Rodrigo González Linares
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Español Native or bilingual proficiency
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Inglés Native or bilingual proficiency
Topline Score
Bio
Credentials
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MathMod1x: Mathematical Modelling Basics
edXJul, 2017- Nov, 2024 -
7.QBWx: Quantitative Biology Workshop
MITx on edXAug, 2014- Nov, 2024 -
Learn to Program: The Fundamentals
CourseraJan, 2014- Nov, 2024 -
Virology I: How Viruses Work
CourseraNov, 2013- Nov, 2024 -
7.00x: Introduction to Biology - The Secret of Life
MITx on edXOct, 2013- Nov, 2024
Experience
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CRIDA A.I.E.
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Spain
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Airlines and Aviation
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1 - 100 Employee
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Internship
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Sep 2023 - Present
Development of a digital image-based surveillance system for vertiport environments using Artificial Intelligence. Development of a digital image-based surveillance system for vertiport environments using Artificial Intelligence.
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University of Southampton
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United Kingdom
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Higher Education
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700 & Above Employee
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Research project
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Sep 2020 - Sep 2021
Designed and developed a novel nucleic acid amplification method based on rolling circle replication. Performed In silico searches and characterizations of CRISPR-associated transposons. Participated in the development of a CRISPR-based diagnostic method for the detection of nucleic acids with a naked-eye readout resulting in a publication (see below). Was the research project and dissertation supervisor of a Master’s student. Designed and developed a novel nucleic acid amplification method based on rolling circle replication. Performed In silico searches and characterizations of CRISPR-associated transposons. Participated in the development of a CRISPR-based diagnostic method for the detection of nucleic acids with a naked-eye readout resulting in a publication (see below). Was the research project and dissertation supervisor of a Master’s student.
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Delft University of Technology
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Netherlands
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Research Services
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700 & Above Employee
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Master end project
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Sep 2019 - Jul 2020
During my time at the Stan Brouns lab (Kavli Institute of Nanoscience) I found a CRISPR-associated transposase is unable to integrate its genetic cargo in transcriptionally highly active regions, while being able to do so in non-coding regions. I proposed a biophysical model to explain this observation. During my time at the Stan Brouns lab (Kavli Institute of Nanoscience) I found a CRISPR-associated transposase is unable to integrate its genetic cargo in transcriptionally highly active regions, while being able to do so in non-coding regions. I proposed a biophysical model to explain this observation.
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Delft University of Technology
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Netherlands
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Research Services
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700 & Above Employee
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Research Internship
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Feb 2019 - Jun 2019
During my time at the Chirlmin Joo lab (Kavli Institute of Nanoscience) I investigated a putative alternative activity of Cas13a (an endonuclease) as an exonuclease by using single-molecule FRET and TIRF microscopy. During my time at the Chirlmin Joo lab (Kavli Institute of Nanoscience) I investigated a putative alternative activity of Cas13a (an endonuclease) as an exonuclease by using single-molecule FRET and TIRF microscopy.
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Education
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Universidade de Vigo
Master of Science - MS, Artificial Intelligence -
Technische Universiteit Delft
Master of Science - MS, Nanobiology (joint degree) -
Erasmus Universiteit Rotterdam
Master of Science - MS, Nanobiology (joint degree) -
Tecnológico de Monterrey
Bachelor of Science - BS, Biotechnology Engineering