Work with thought leaders and academic experts in Medical Devices

Companies can benefit from collaborating with academic researchers in the field of Medical Devices in several ways. Firstly, academic researchers bring a deep understanding of the latest advancements and trends in the field, allowing companies to stay at the forefront of innovation. Secondly, researchers have access to state-of-the-art facilities and equipment, enabling companies to leverage cutting-edge technology without heavy investment. Thirdly, academic researchers possess specialized knowledge and expertise, providing valuable insights and guidance for product development and improvement. Additionally, collaboration with researchers can lead to the development of new patents and intellectual property, enhancing a company's competitive advantage. Lastly, academic partnerships can open doors to funding opportunities, grants, and government support for research and development projects.

Researchers on NotedSource with backgrounds in Medical Devices include Alex Holland, PhD, Amelia Triplett, Amir Shakouri, PhD, Guerry Grune, Sami Alkadri, Amir Manbachi, and Daniel Greenfield.

Alex Holland, PhD

Broadly experienced advanced instrument product development - signal processing, algorithms, & software, strategic management, best papers and product awards
Education

PhD Applied Mathematics

Claremont, California, United States of America

Massachusetts Institute of Technology

MS Electrical Engineering and Computer Science

Cambridge, Massachusetts, United States of America

Massachusetts Institute of Technology

BS Electrical Engineering

Cambridge, Massachusetts, United States of America
Experience

Holland AI LLC

Edwards Lifesciences

Welch Allyn

Most Relevant Research Expertise
medical devices
Other Research Expertise (5)
machine learning
signal processing
biotechnology
Biomedical Engineering
Computer Science Applications
About
Dr. Alex Holland is an expert in applying machine learning, signal processing, and mathematics to provide product differentiation for advanced instruments and sensors, such medical monitors or biotechnology nano sensors. Throughout his academic and professional career, Dr. Holland has gained extensive experience in advanced instrument development. He has worked on a variety of projects, from developing algorithms for data analysis to designing and implementing mathematical models for signal processing and control, to the full practical embedded systems software implementations. He has also published numerous papers in peer-reviewed journals, showcasing his expertise and contributions to the field. He holds a PhD in Applied Mathematics from a prestigious university and has a strong background in practical applications of mathematical concepts. Prior to obtaining his doctorate, Dr. Holland received his Master's degree in Electrical Engineering and Computer Science from the Massachusetts Institute of Technology, where he also completed his Bachelor's degree in Electrical Engineering. Dr. Holland is an avid researcher and enjoys exploring new and challenging engineering and mathematical problems. He is also dedicated to sharing his knowledge and experience with others, mentoring students and giving lectures at various academic institutions. Dr. Holland has primarily worked in industry, supplying competitive advantage to many market leading products consisting of sensors, instruments, and medical devices. He has collaborated with companies in various sectors, such as technology, healthcare, and defense, providing valuable insights and solutions. With his strong background in both theoretical and applied mathematics, as well as his extensive experience, Dr. Holland is a valuable asset in any project or research endeavor. He continues to push the boundaries of engineering and is committed to making a positive impact in the field of applied mathematics.

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Amelia Triplett

9 Years Experience
Scientist and Engineer
Education

Johns Hopkins University

Master of Science in Materials Science and Engineering / December, 2025

University of Illinois Urbana-Champaign

Bachelor of Science in Chemistry / May, 2020

Experience

Medline Industries LP

Associate Quality Engineer / April, 2025July, 2025

Quickly coordinated deviation rework activities in response to volatile tariff requirements ensuring supply continuity and quality. Supported design changes and CAPA completion efforts via careful documentation and review. Managed supplier quality reevaluations and customer quality information requests.

BISCO Inc.

Associate Research Scientist / March, 2021April, 2025

Served as technical lead and project leader on product development, technology development, and technical service projects following quality management system (ISO 13485) and design control procedures for medical devices. Created optimized and thoroughly documented formulations that include methacrylate-based polymer chemistry, photoinitiator systems, and inorganic materials resulting in successful regulatory submissions compliance audits and product realizations. Utilized material testing instrumentation and wet chemistry techniques to study the properties of new formulations. Responsible for writing technical documentation, training others in ISO standards and SOPs/QOPs, and ensuring traceability.

Dental Technologies Inc.

Quality Control Chemist / October, 2020March, 2021

Performed comprehensive analytical testing on drug products and cosmetics including use of wet chemistry techniques according to quality operating procedures to ensure products were within specifications and safe for use. Maintained meticulous documentation of testing data in accordance with quality system procedures.

Most Relevant Research Expertise
Medical Devices
Other Research Expertise (5)
Color Science
Dental Materials
Polymeric Materials
Composite Materials
Material Informatics
About
Amelia Triplett is a highly skilled materials scientist with a strong background in chemistry and astronomy. She obtained her Bachelor of Science in Chemistry with a minor in Astronomy from the University of Illinois Urbana-Champaign in 2020. She then went on to pursue her Master of Science in Materials Science and Engineering at Johns Hopkins University, which she completed in 2025. Throughout her academic career, Amelia has gained valuable research experience through various roles. As an undergraduate, she worked as a research assistant in the Jonathan V. Sweedler Research Group, where she assisted in analyzing and interpreting data for various projects. She also served as a teaching assistant in the University of Illinois Urbana-Champaign Department of Chemistry, where she helped students understand complex concepts and perform laboratory experiments. In addition to her research experience, Amelia has also gained hands-on experience in the industry. She has worked as an Associate Quality Engineer at Medline Industries LP, where she helped ensure the quality and safety of medical products. She also served as an Associate Research Scientist at BISCO Inc., where she conducted experiments and analyzed data to develop new materials for dental applications. Prior to these roles, Amelia worked as a Quality Control Chemist at Dental Technologies Inc., where she performed tests and inspections to ensure the quality and integrity of dental products. Amelia is passionate about using her skills and knowledge to make a positive impact in the field of materials science and engineering. She is detail-oriented, analytical, and has a strong understanding of scientific principles. With her diverse background and experience, she is well-equipped to take on new challenges and make significant contributions in her field.

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Guerry Grune

31 Years Experience
Adjunct Associate Professor at Duke University
Education

North Carolina State University

PhD, Chemical Engineering / 1992

Raleigh, North Carolina, United States of America

University of Massachusetts Amherst

MS, Chemical Engineering / 1982

Amherst Center, Massachusetts, United States of America

Duke University

1978, Mechanical Engineering and Chemistry / 1978

Durham, North Carolina, United States of America
Experience

Patent Development

Patent Creator / 1992Present

Duke University

Adjunct Associate Professor / 2002Present

Professor within the Pratt School Of Engineering - Lectures on Intellectual Asset Management for the Masters of Engineering Management Program. *Independent Research & Intern Options Available ERGMGMT 590.01 - All major corporations, mid-sized firms, and small or start-up ventures including University efforts involved in any technology field have basic needs that include considering all forms of intangible assets. The field of intellectual property and the associated need to value that intellectual property has evolved to the point that all Merger and Acquisition (M&A), venture capital, and R&D activities should include a thorough understanding and review of patents, copyrights, trademarks, trade secrets, etc. to strategically determine how to proceed with these activities. A complete review of the US and international patent processes including writing and obtaining a patent, licensing and licensing negotiations, technology transfer, as well as a full understanding of valuation and valuation techniques to manage the intellectual property (IAM - Intellectual Asset Management) are the primary focal activities of this course. Students normally work in teams with existing technologies to develop an IP portfolio, which is valued and presented at the end of the semester.

Research Expertise (0)
About
Software development and testing, Chemistry and Polymer Science, Chemical Engineering Technology, Oil & Gas Technologies including fracking, Biotechnology including Pharmaceuticals, Mechanical Technology, Medical Devices, Environmental Sciences and Technology, Biofuels, Personal Health Care Products, Anti-Bacterial/Anti-Microbial Platforms, Optical Fiber and Optics, Wire and Cable and Connector Technology, Air-Liquid Separations, Semiconductors and Microlithography, Electrophotography, Securitization and Encryption, Firearms and Munitions, Emerging e-business

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Sami Alkadri

PhD Candidate
Education

McGill University

PhD, Mechanical Engineering / July, 2024 (anticipated)

Montreal
Most Relevant Research Expertise
Medical Devices
Other Research Expertise (6)
Machine Learning
VR/AR Surgical Simulation
Biomechanics
Health Informatics
Computer Science Applications
And 1 more
About
Hello! I'm a Mechanical Engineering Ph.D. Candidate at McGill University. My research interests lie at the intersection of machine learning, engineering, and medicine. Currently, I'm engaged in developing and validating novel surgical training simulators through state-of-the-art VR/AR technologies. #### Academic Research As a published author, my work has been accepted and presented at world-renowned conferences such as the ORS PSRS 6th International Spine Research Symposium and the 11th Interdisciplinary World Congress on Low Back & Pelvic Girdle Pain. I focus on rigorous methodological approaches and the application of machine learning algorithms in the healthcare domain. #### Technical Skills * Proficient in Developing Machine Learning Algorithms: From initial conceptualization to full functionality. * Specialized in Validating VR/AR Surgical Simulations: Conducting face, content, and construct validity studies. * Experienced in medical/surgical device development including surgical robotics. * Expertise in Conducting Randomized Controlled Trials: From preparation (writing protocols, designing questionnaires, IRB applications) to execution (participant recruitment, data collection) and analysis (data post-processing, statistical analyses). #### Business Acumen My experience as the Business Development and Operations Director at Alkadri Trading Co. has honed my strategic business mindset, optimizing ROI and capitalizing on organizational strengths to drive growth. #### Awards & Distinctions I have consistently been in the top 5% of my graduate class in the faculty of Engineering at McGill University. Among my accolades are the best graduating Honours thesis, first place in the final departmental examinations, and multiple graduate scholarships including the Vadasz Scholar McGill Engineering Doctoral Award and the McGill Engineering Undergraduate Student Masters Award. #### Teaching & Mentorship Besides research, I've mentored bioengineering students in their capstone projects and have served as a Teaching Assistant at McGill. #### Let's Connect I'm always open to collaborating on impactful research, discussing innovative solutions in machine learning and medical simulation, and exploring business aspects in these fields. Feel free to reach out!

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Example Medical Devices projects

How can companies collaborate more effectively with researchers, experts, and thought leaders to make progress on Medical Devices?

Design and Development of a Novel Medical Device

An academic researcher can collaborate with a company to design and develop a novel medical device that addresses a specific healthcare need. The researcher's expertise in Medical Devices and access to research facilities can accelerate the product development process and ensure compliance with regulatory standards.

Validation and Testing of Medical Devices

Companies can collaborate with academic researchers to validate and test their medical devices. Researchers can conduct rigorous testing, analyze data, and provide valuable feedback to improve the device's performance, safety, and efficacy.

Clinical Trials and Evaluation

Academic researchers can assist companies in conducting clinical trials and evaluating the effectiveness of their medical devices. Their expertise in study design, data analysis, and ethical considerations ensures reliable results and compliance with regulatory requirements.

Biocompatibility and Material Science

Collaboration with academic researchers specializing in biocompatibility and material science can help companies ensure that their medical devices are safe and compatible with the human body. Researchers can provide insights on material selection, testing methods, and regulatory compliance.

Human Factors and User Experience

Academic researchers can contribute to the improvement of medical devices' usability and user experience. Through user studies, surveys, and ergonomic evaluations, researchers can identify design flaws, optimize user interfaces, and enhance overall user satisfaction.