Mauricio Adolfo Ramírez-Moreno

dblp:259/5071 · DBLP profile ↗
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5ranked-venue papers
1as first author
4since 2021 · last 2025
0000-0003-0306-2971ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Applied, interdisciplinary, general and emerging computing · 5 · 1 first-author · 4 since 2021Human-computer interaction and ubiquitous computing · 4 · 1 first-author · 3 since 2021Artificial intelligence and machine learning · 1 · 1 since 2021
YearPublicationVenuePosition
2025 Task Resolution Time Estimation through Cognitive Load: An EEG Study of Chess Players
Milton O. Candela-Leal, Mauricio Adolfo Ramírez-Moreno, Jorge de-J. Lozoya-Santos
CogSci2
2025 Innovative Spaces with Advanced Technologies such as Research Activity Simulators for Engineering Education
abstract
Innovative learning spaces represent a pioneering educational environment engineered to investigate and exhibit varied pedagogical practices through the application of advanced technologies and versatile classroom configurations. Since its objective is to prepare students for future complexities by incorporating interactive digital tools, promoting cooperation, and facilitating active learning experiences, Science, Technology, Engineering, Arts, and Mathematics workshops are essential in actively involving undergraduate students in research activities. On the other hand, wearable biosensors are making a substantial impact in education, acting as valuable resources for educators and useful tools for students. For instance, bio-metric signals have the potential to optimize academic practices, providing valuable insights into the teaching-learning process. In this context, it is vital for engineering students to acquire the skills and knowledge necessary for the cognitive process of collecting, processing, and modeling data using various wearable sensor technologies. This work presents a case study on project-based learning in engineering education, focusing on a biomechanical analysis project. The project involves analyzing a dancer's performance of improvisations expressing joy or sadness, with the presence of an immersive space. This activity enhances students' understanding of experimental design, signal processing tasks, angular acceleration in joint per participant, and environment-dependent accelerations, while also exploring the user experience of biosensors as a brain-computer interface for electroencephalogram signal monitoring, a medical-grade wearable device that provides real-time physiological data acquisition and streaming, and a camera for tracking joint movements during dance improvisation. In this evaluation, two sets of engineering students were taken into account: a group that attended the course in a traditional classroom setting, and another group that participated in an innovative space. The results suggest that innovative learning environments and medical-grade instruments can positively impact student engagement and understanding of advanced concepts in neuroengineering. Both groups shared positive feedback on the learning experience and expressed their willingness to recommend the course to others.
Alejandro Arceo, Milton O. Candela-Leal, Rodrigo Gutiérrez-Garza, Juan Carlos Tudón-Martínez, Mauricio Adolfo Ramírez-Moreno, Jorge de-J. Lozoya-Santos, Manuel Cebral-Loureda
EDUCON5
2024 Conscious Technologies Projects as a Hub for Real Life Challenges in Engineering Education
abstract
Traditionally, research and scientific endeavors have predominantly involved graduate students, often sidelining participation of undergraduate students. However, integrating under-graduate students into leading cutting-edge projects significantly enhances their academic experience and professional growth. This manuscript delves into the case study of Conscious Technologies, an innovative research group comprising the Campus City initiative and the IUCRC International BRAIN Affiliate Site at Tecnologico de Monterrey. The group's focus encompasses smart city solutions, computer vision, robotic operating systems, neuroengineering, biometry, and biomechanics, all powered by artificial intelligence. The group efficiently manages a diverse array of projects by employing methodologies such as agile project management and a progressive-phased research approach, which leads to beneficial outcomes for all stakeholders. Undergraduate students gain hands-on experience, increasing their prospects for admission into prestigious graduate programs abroad, while at the same time, research professors expand their international presence through impactful publications. High research output gradually fosters collaboration, including exchanges and stays abroad, further catalyzing the centre's growth. By tackling real-world challenges within a well-structured framework, supplemented with intrinsic and extrinsic rewards and regular meetings, students enjoy autonomy within guided projects, culminating in the publication of 26 scientific works over a span of three years.
Milton O. Candela-Leal, Aime J. Aguilar-Herrera, Mauricio Adolfo Ramírez-Moreno, Jorge de-J. Lozoya-Santos, Luis Carlos Félix-Herrán, Juan Carlos Tudón-Martínez
EDUCON3
2024 An Automotive Design, Challenge Based Learning Activity for Undergraduate Engineering Students: An ICE Vehicle Conversion into EV
abstract
A Challenge based Learning (CBL) activity, with the participation of an industry partner, regarding automotive design for undergraduate engineering students is presented. During an academic semester, senior students in an specialization course became familiar with technical aspects regarding electric vehicles (EV) and learned about battery pack sizing and motor sizing as well. Students worked on a challenging case study to convert a VW Type 1 sedan with an internal combustion engine (ICE) into an EV. The work done by the students involved real-data, simulations, cost analysis, 3D scanning, multiple CAD design iterations, and manufacturing processes. The achieved outcomes of the case were: an improved dynamic behavior and more sym-metrical weight distribution compared with the original vehicle, as well as a comparable power and energy delivery were also achieved at a lower cost compared with commercial conversion solutions. These results are evidence of the skills developed by the students as the CBL activity was developed and shows a promising project option for engineering students. It is observed how challenging students through a motivating situation that demands their intellectual curiosity, seeking to solve problems of global interest, and focusing on an application in their area of expertise, contributes to their professional development. This is an option for future final capstone projects in engineering.
Carlos Jose Anastas Ruy Sánchez, Sergio Paul Verboonen Partida, Jorge de-J. Lozoya-Santos, Luis Carlos Félix-Herrán, Juan Carlos Tudón-Martínez, Jonathan Rivas, Mauricio Adolfo Ramírez-Moreno, Alejandro Arceo
EDUCON7
2020 Advanced Learning Assistant System (ALAS) for Engineering Education
abstract
This study aims to develop a biofeedback tool to assess the efficiency of different learning and teaching techniques. Here, neuroengineering tools are used to detect and compare the level of learning obtained through two different modalities: a traditional text and an interactive video. Electroencephalographic signals were recorded in two groups during learning tasks, and performance was evaluated with an exam. Results showed better performance on the video group, as well as power changes in theta and beta bands, mainly in frontal and occipital cortices. A real time monitoring protocol of these features could be implemented to develop a learning evaluation tool based on biometric signals.
Mauricio Adolfo Ramírez-Moreno, Mariana Díaz-Padilla, Karla Daniela Valenzuela-Gómez, Adriana Vargas-Martínez, Armando Roman, Rubén Morales-Menéndez, Ricardo Ramírez-Mendoza, Jorge de-J. Lozoya-Santos
EDUCON1