
معرفی
Assistant Professor Mahla Poudineh is a researcher at the University of Waterloo, affiliated with the Integrated Devices and Early Awareness Lab. Her work focuses on advanced biosensing technologies, particularly hydrogel microneedles and microfluidic platforms for real-time, non-invasive monitoring of biomarkers such as glucose, insulin, and toxins. She designs wearable devices and integrates nanomaterials like quantum dots and perovskites to enhance sensor performance and functionality. Her research also addresses challenges in plasma separation, continuous pH measurements, and antibiotic treatment assessment using novel materials and engineering approaches.
Education details are not explicitly provided in the text. However, her research contributions indicate a strong background in biomedical engineering and materials science. Her affiliations include the University of Waterloo's faculty and full-time academic position.
Her research interests span electrochemical biosensors, nanostructured architectures, and lab-on-a-chip systems, with a focus on applications in personalized healthcare and disease diagnosis. She develops technologies for rapid detection of biomolecules in live subjects, emphasizing enzyme-free sensing and in situ monitoring.
Recent work trends highlight innovations in self-powered biomarker sensing, multiplexed detection systems, and optimization of sensor stability using materials like polydopamine and agarose-gel. Her contributions address both fundamental and applied aspects of biosensing, including device fabrication, signal processing, and clinical validation.
No scientific awards were explicitly mentioned in the provided text. Her academic profile emphasizes technical contributions rather than award recognition.
Advising and grants details are not listed here, but her role as an Assistant Professor suggests involvement in graduate student supervision and research funding. She leads the Integrated Devices and Early Awareness Lab, which focuses on next-generation health monitoring technologies, including microneedle-based assays and microfluidic platforms for biomedical applications.



