Career Highlights

2024 – 2025

Senior Mechanical Engineer

Led the design, development, and validation of advanced biosensor products, driving innovation, cross-functional collaboration, and product excellence from concept to production.

2021, 2024

Product Development Engineer

Led the design, testing, and optimization of microfluidic cartridges, combining advanced engineering analysis, CFD, FEA, FMEA, cross-functional collaboration, and regulatory-compliant product development.

2021, 2021

Mechanical Design Engineer

Led mechanical and electromechanical product development, designing assemblies, fixtures, and microfluidic systems while optimizing thermal, structural, and manufacturability performance.

2017 – 2021

Research & Development Engineer

Led R&D in biomedical engineering, applying CFD, FSI, and experimental methods to design, analyze, and optimize medical devices in collaboration with industry and academic partners.

2018

Erasmus Research Scholar

Conducted advanced numerical and cluster-based simulations in fluid dynamics, analyzing complex flow phenomena and translating results into actionable engineering insights.

2015 – 2017

Mechanical Design & Research Engineer (R&D)

Conducted experimental and CFD studies on 3D-printed medical devices, optimizing airflow and pressure distribution while collaborating with hospitals and international research partners.

2008 – 2013

Research Assistant

Supported the design, prototyping, and testing of innovative eye surgery devices, integrating CAD modeling, material selection, experimental validation, and clinician collaboration.

2008 – 2013

Product Development

Contributed to the end-to-end design and development of precision medical devices, including CAD modeling, prototyping, testing, and iterative optimization for manufacturability and performance.


My career has been defined by hands-on research, international collaboration, and a passion for turning complex engineering challenges into practical, high-impact solutions. From microfluidic device design to advanced computational modeling, I have consistently worked at the intersection of innovation, precision, and problem-solving.

Research Assistant – Tehran University of Medical Sciences, Tehran, Iran
I began my career supporting medical device engineering research, contributing to system design, experimental testing, and precise data documentation. This early experience developed my skills in rigorous research methodology and problem-solving in regulated environments, forming a solid foundation for my future work in product development and biomedical systems.

Product Design & Development Engineer – Dentus Dental & Medical Equipment, Tehran, Iran
At Dentus, I transitioned into product development, leading projects from concept through production. I performed CFD and structural simulations, designed mechanical components, and coordinated cross-functional teams to optimize performance and manufacturability. Key projects included innovative dental training and preclinical devices, where I applied creative engineering solutions to meet real-world clinical requirements.

Research Engineer – CSIRO, Melbourne, Australia
At CSIRO, I contributed to the design and development of microfluidic systems aimed at predicting and preventing Obstructive Sleep Apnea (OSA). My work combined CFD, thermal-fluid modeling, and experimental validation to create patient-specific simulations for airway collapse and therapy optimization. This research resulted in U.S. Patent No. 12,211,209 and multiple peer-reviewed publications in Journal of Biomechanics, highlighting both innovation and practical application in health technology.

Research Assistant – Barcelona Supercomputing Center, Barcelona, Spain
During my tenure at BSC, I leveraged high-performance computing resources to enhance computational models for OSA research, collaborating with interdisciplinary international teams. This role strengthened my expertise in advanced simulation techniques, data analysis, and cross-institutional research collaboration.

Mechanical Design Engineer – Invetech, Melbourne, Australia
At Invetech, I worked on precision automation and medical device systems, focusing on mechanical design, prototyping, and process improvement to enhance reliability and manufacturability. My contributions ensured that design concepts translated seamlessly into high-quality, scalable products.

Product Development Engineer – SCHOTT Minifab, Melbourne, Australia
At SCHOTT Minifab, I designed and optimized miniaturized components and systems for life-science applications. This involved mechanical design, testing, and product validation in a regulated environment, reinforcing my capabilities in precision engineering and compliance-driven product development for cutting-edge diagnostic devices.

Professional Development
Alongside these roles, I earned a Black Belt certification in project management and process improvement, strengthening my leadership, workflow optimization, and problem-solving capabilities – enabling me to deliver innovative, reliable solutions efficiently and at scale.