Mr. Ibna Kawsa – Structure improvement – Young Scientist Award

Mr. Ibna Kawsa - Structure improvement - Young Scientist Award

Chongqing University - China 

Author Profile 

GOOGLE SCHOLAR  

🎓 Early academic pursuits

Ibna Kawsar began his academic journey with a bachelor's degree in mechanical design, manufacturing, and automation from chongqing jiaotong university, where he graduated with an impressive gpa of 89.00. his undergraduate years were marked by a strong interest in machinery and equipment design, with a thesis focused on the innovative development of an electric battery lift table for efficient handling in electric vehicles. driven by a passion for mechanical engineering and vehicle safety, he advanced his studies with a master's degree in mechanical and vehicle engineering at chongqing university, achieving a remarkable gpa of 89.40. his master's thesis centered on enhancing the side-impact safety of battery pack systems, reflecting his growing dedication to crashworthiness and energy-absorbing structures.

🏭 Professional endeavors

Ibna has actively contributed to the field of vehicle safety through his role as a research assistant at the vehicle dynamics and intelligent control laboratory in chongqing, china. since november 2023, he has been deeply involved in crash simulations and impact analysis using advanced software tools like abaqus and hypermesh. his work focuses on improving electric vehicle (ev) battery safety and optimizing structural designs to withstand crashes and external impacts. in addition to his research, ibna has taken on responsibilities as a reviewer for the annals of robotics and automation since january 2024, where he evaluates scholarly articles related to robotics, automation, and structural optimization, demonstrating his commitment to academic excellence.

🧠 Contributions and research focus

Ibna’s research primarily revolves around crashworthiness, structural optimization, and battery safety in electric vehicles. as the first author of significant studies under review, he has Structure improvement proposed innovative designs that achieved a 45% reduction in shell intrusion during battery crash simulations, with findings submitted to the european journal of mechanics a/solids. he has also contributed a comprehensive review on the mechanical reliability of ev batteries under vibration, shock, and collision scenarios, currently under review in etransportation. his work has explored the potential of multi-cell square tube structures in reducing deformation by up to 48%, showcasing his expertise in designing safer, impact-resistant battery systems for automotive applications.

🏅 Accolades and recognition

Throughout his academic and professional journey, ibna has been recognized for his technical skills and impactful research. his consistent academic excellence, reflected in high gpas during both his bachelor's and master's programs, underscores his dedication to mastering complex engineering concepts. his selection as a reviewer for an international journal at an early career Structure improvement stage further highlights his standing in the scientific community and his contributions to the advancement of knowledge in robotics and structural safety.

🌍 Impact and influence

Ibna's work is contributing to the future of safer electric vehicles by addressing critical challenges in battery crashworthiness and structural durability. his research outcomes have the potential Structure improvement to significantly enhance vehicle safety standards, minimize damage during collisions, and protect passengers by optimizing the design of battery pack systems. through his involvement in peer review and scholarly publishing, he is also influencing the broader scientific discourse around automation and mechanical reliability, supporting innovation in automotive engineering.

🚀 Legacy and future contributions

Looking ahead, ibna aspires to deepen his research through a ph.d. program focused on crashworthiness and design optimization. his goal is to pioneer high-performance safety systems that not only meet but exceed current industry standards, driving forward the development of next-generation electric vehicles. by integrating advanced simulation techniques and innovative structural solutions, he aims to leave a lasting impact on automotive safety research, ensuring that future vehicles are not only more efficient but also fundamentally safer for all road users.

Notable Publications 

1️⃣ Title: Trajectory optimization of an electric vehicle with minimum energy consumption using inverse dynamics model and servo constraints
Authors: C Min, Y Pan, W Dai, I Kawsar, Z Li, G Wang
Journal: Mechanism and Machine Theory, 2023


2️⃣ Title: Deep-learning-based inverse structural design of a battery-pack system
Authors: X Zhang, Y Xiong, Y Pan, D Xu, I Kawsar, B Liu, L Hou
Journal: Reliability Engineering & System Safety, 2023


3️⃣ Title: Enhanced traffic safety and efficiency of an accelerated LC decision via DNN-APF technique
Authors: H Du, Y Pan, I Kawsar, Z Li, L Hou, A Glowacz
Journal: Measurement, 2023


4️⃣ Title: Combined recurrent neural networks and particle-swarm optimization for sideslip-angle estimation based on a vehicle multibody dynamics model
Authors: Y Sun, Y Pan, I Kawsar, G Wang, L Hou
Journal: Multibody System Dynamics, 2024


5️⃣ Title: Longitudinal Predictive Control for Vehicle-Following Collision Avoidance in Autonomous Driving Considering Distance and Acceleration Compensation
Authors: HDYP Shutong Yin, Chunlin Yang, Ibna Kawsar
Journal: MDPI (Research Progress on Intelligent Electric Vehicles)

Prof. Dr.  Canan G. Nebigil-Désaubry  – Cardiovascular – Best Researcher Award

Prof. Dr.  Canan G. Nebigil-Désaubry  - Cardiovascular - Best Researcher Award

INSERM, UMR1260 University of Strasbourg - France

Author Profile 

ORCID 

Early academic pursuits 🎓

Canan G. Nebigil-Désaubry embarked on her academic journey with a pharm.d. from ankara university, where her interest in pharmacology and molecular biology began to take shape. she further pursued a ph.d. at the university of tennessee, delving deeper into molecular signaling pathways. her academic excellence and passion for biomedical research led her to postdoctoral training under nobel laureate professor robert lefkowitz at duke university, where she gained invaluable insights into g protein-coupled receptors (gpcrs), setting the stage for her future research.

Professional endeavors 💼

After completing her postdoctoral training, dr. nebigil-désaubry's career flourished as a senior scientist at the national institutes of health (nih) and later at the institute of genetics and molecular and cellular biology (igbmc). her exemplary work earned her an atip/avenir award, enabling her to join the european school of biotechnology (esbs) at the university of strasbourg. currently, she serves as the director of research at cnrs, inserm umr1260 regenerative nanomedicine, where she continues to make significant contributions to cardiovascular and metabolic research.

Contributions and research focus 🔬

Dr. Nebigil-désaubry's research primarily explores the role of gpcrs, particularly serotonin and prokineticin receptors, in cardiovascular development and disease. she established the critical Cardiovascular roles of these receptors in heart development and pathology, notably identifying the serotonin 5-ht2b receptor's pivotal role in embryonic cardiac development. her team was also the first to investigate prokineticin signaling in cardiac and metabolic disorders, revealing its potential as a therapeutic target for heart disease, obesity, and diabetes. her groundbreaking discovery of the first non-peptidic pkr1 agonist, is20, marked a significant milestone in cardioprotection and cardio-oncology.

Accolades and recognition 🏆

Dr. Nebigil-désaubry's innovative research has earned her numerous accolades, including the prestigious atip/avenir award. her contributions to cardiovascular and metabolic research are Cardiovascular recognized globally, with multiple drug discovery patents to her name. the inclusion of is20 in the international union of basic and clinical pharmacology (iuphar) guide to pharmacology as a selective pkr1 agonist further underscores the significance of her work in the scientific community.

Impact and influence 💡

The impact of dr. nebigil-désaubry's research extends beyond academic circles, influencing clinical practices and therapeutic strategies in cardiology and oncology. her identification of the Cardiovascular prokineticin/pkr1 signaling pathway as a regulator of epicardial adipose tissue development has provided new avenues for managing heart failure with preserved ejection fraction (hfpef) and cardiometabolic disorders. her work in cardio-oncology aims to address the pressing need for early biomarkers and cardioprotective therapeutics in chemotherapy-induced heart failure.

Legacy and future contributions 🕊️

Dr. Nebigil-désaubry's legacy is one of innovation and excellence in cardiovascular research. her pioneering work in cardiac regeneration and metabolic disease management has laid the foundation for future advancements in precision medicine. with her recent development of a 3d cardiac organoid-tumor system, she is poised to accelerate drug discovery and biomarker identification, ultimately improving patient outcomes and shaping the future of regenerative medicine and cardio-oncology.

Notable Publications 

  • Title: Flavaglines: Their Discovery from Plants Used in Traditional Chinese Medicine, Synthesis, and Drug Development Against Cancer and Immune Disorders
    Author(s): Dong Wang, Mustafa Ali Tezeren, Hussein Abou Hamdan, Peng Yu, Canan Nebigil-Désaubry, Laurent Désaubry
    Journal: Current Chinese Chemistry, 2022

  • Title: Prohibitin ligands: a growing armamentarium to tackle cancers, osteoporosis, inflammatory, cardiac and neurological diseases
    Author(s): Dong Wang, Redouane Tabti, Sabria Elderwish, Hussein Abou-Hamdan, Amel Djehal, Peng Yu, Hajime Yurugi, Krishnaraj Rajalingam, Canan G. Nebigil, Laurent Désaubry
    Journal: Cellular and Molecular Life Sciences, 2020

  • Title: SFPH proteins as therapeutic targets for a myriad of diseases
    Author(s): Dong Wang, Redouane Tabti, Sabria Elderwish, Amel Djehal, Nora Chouha, Franck Pinot, Peng Yu, Canan G. Nebigil, Laurent Desaubry
    Journal: Bioorganic and Medicinal Chemistry Letters, 2020

  • Title: Flavaglines as natural products targeting eIF4A and prohibitins: From traditional Chinese medicine to antiviral activity against coronaviruses
    Author(s): Canan G. Nebigil, Christiane Moog, Stéphan Vagner, Nadia Benkirane-Jessel, Duncan Smith, Laurent Désaubry
    Journal: European Journal of Medicinal Chemistry, 2020

  • Title: Prokineticin signaling in heart-brain developmental axis: Therapeutic options for heart and brain injuries
    Author(s): Laurent Désaubry, Anumantha Kanthasamy, Canan G. Nebigil
    Journal: Pharmacological Research, 2020

Dr. Michael Bekele Maru  – Civil Engineering – Best Paper Award

Dr. Michael Bekele Maru  - Civil Engineering - Best Paper Award

Sungkyunkwan University, Suwon Campus,2nd Engineering Complex,26220 - South Korea 

Author Profile 

GOOGLE SCHOLAR 

🎓 Early academic pursuits

Michael Bekele maru embarked on his academic journey at addis ababa university in ethiopia, where he earned a b.sc in civil, architectural, and environmental system engineering. his undergraduate thesis focused on the structural design of a multi-story building, laying the foundation for his future endeavors in structural engineering. his quest for advanced knowledge led him to sungkyunkwan university in south korea, where he pursued a combined m.sc and ph.d. in civil, architectural, and environmental system engineering. under the guidance of professor seunghee park, michael's dissertation on enhancing lidar data processing for building facade segmentation and 3d reconstruction showcased his innovative approach to integrating technology with civil engineering.

💼 Professional endeavors

Michael's professional journey began as a site engineer with addis gedle general contractor, where he honed his skills in quality supervision, project monitoring, and construction planning. his role as a project engineer at nasew construction plc further expanded his expertise in project synchronization, scheduling, and quality assurance. transitioning to academia, michael served as a graduate researcher at sungkyunkwan university's smart construction it lab, where he contributed significantly to optical sensor applications in structural health monitoring. currently, as a postdoctoral researcher at the same institution, he continues to explore cutting-edge technologies for structural assessment and digital twin applications.

🔬 Contributions and research focus

Michael's research is characterized by its innovative use of lidar technology, computer vision, and augmented reality in structural health monitoring. his work on algorithmic-based damage Civil Engineering detection, 3d reconstruction techniques, and point cloud analysis has advanced the field significantly. he has developed detailed 3d models for crack detection, utilized lidar for shape change analysis, and integrated ar applications for real-time structural assessments. his ongoing projects include camera-lidar feature-based fusion for bridge monitoring, close-up imaging for crack assessment, and semantic-driven 3d model generation using ar.

🏆 Accolades and recognition

Michael's contributions to structural health monitoring have earned him recognition within the academic and engineering communities. his innovative research has been showcased in Civil Engineering numerous conferences and publications, highlighting his expertise in lidar technology, computer vision, and ar integration. his work has not only enhanced structural assessment methodologies but also set new standards for efficiency and accuracy in the field.

💡 Impact and influence

Michael's research has had a profound impact on the field of structural health monitoring, particularly in the integration of advanced technologies for damage detection and assessment. his Civil Engineering development of 3d reconstruction techniques and point cloud analysis has improved the accuracy and efficiency of structural evaluations, influencing both academic research and practical applications in civil engineering.

🌍 Legacy and future contributions

Michael Bekele maru's legacy is one of innovation, precision, and technological integration in civil engineering. his work continues to inspire future researchers and engineers, setting a benchmark for excellence in structural health monitoring. as he advances in his career, michael aims to further explore the potential of digital twins, augmented reality, and deep learning in structural assessments, contributing to safer and more efficient infrastructure management worldwide.

Notable Publications 

  • Title: Comparison of depth camera and terrestrial laser scanner in monitoring structural deflections
    Author(s): MB Maru, D Lee, KD Tola, S Park
    Journal: Sensors, 2020

  • Title: Beam deflection monitoring based on a genetic algorithm using LiDAR data
    Author(s): MB Maru, D Lee, G Cha, S Park
    Journal: Sensors, 2020

  • Title: Improved building facade segmentation through digital twin-enabled RandLA-Net with empirical intensity correction model
    Author(s): MB Maru, Y Wang, H Kim, H Yoon, S Park
    Journal: Journal of Building Engineering, 2023

  • Title: Unsupervised domain adaptation-based crack segmentation using transformer network
    Author(s): DA Beyene, MB Maru, T Kim, S Park, S Park
    Journal: Journal of Building Engineering, 2023

  • Title: Improved building MEP systems semantic segmentation in point clouds using a novel multi-class dataset and local-global vector transformer network
    Author(s): Shuju Jing, Gichun Cha, Michael Bekele Maru, Byoungjoon Yu, Seunghee Park
    Journal: Journal of Building Engineering