Vishal Shah
About
Vishal Shah is from Mumbai, Maharashtra, India. Vishal is currently Executive Director at Inventia Healthcare Limited, located in Mumbai Area, India. Vishal also works as Director at Nutriventia, a job Vishal has held since Apr 2017. Another title Vishal currently holds is Director, Operations at Inventia Healthcare Private Limited. In Vishal's previous role as a Management Executive at Inventia Healthcare Pvt Ltd., Vishal worked in Mumbai, India until Mar 2013. Prior to joining Inventia Healthcare Pvt Ltd., Vishal was a Sr Process Engineer at FLexMedical Disposables and held the position of Sr Process Engineer at Dallas/Fort Worth Area. Prior to that, Vishal was a Product Development Quality Engineer at Terumo Cardiovascular Systems from Dec 2006 to Jun 2008. Vishal started working as Graduate Research Assistant at Texas Scottish Rite Hospital for Children in Jan 2005.
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Vishal Shah's current jobs
Vishal Shah's past jobs
Trained in areas of corporate Finance and MIS and Budgetary controls. Used Financial modeling to create 5 year business plans. Part of in-house Capital Expenditures Committee to select and negotiate high value Capex equipment.
Involved in design of manufacturing process for Class II and III medical devices using lean manufacturing principles. Responsible for designing and qualifications of manufacturing equipment and also designed in-process and final process testing. Responsible for Risk Analysis activities per ISO 14971. Mentored junior engineers on DOE's, Gauge RnR, Process Capabilities etc using minitab.
Worked with Product Development teams to plan and execute the key elements of Design Control Cycle.Lead efforts to create and maintain hazard analysis, Design FMEA’s and risk management plans for new product development. Lead Design Validation activities: drafting and executing protocols to ensure released product adheres to user needs and intended use. Provided sustaining engineering support for released Vein Harvesting system. Created product/process documentation to ensure a robust transfer to manufacturing and into the market.
Developed and tested an implantable device for reconstructive surgery in the spinal cord and peripheral nervous systems. Hands on experience in designing polymeric and hydrogel implantable devices. Conducted biomechanical analysis, Cell Culturing of Schwann cells, immunocytochemistry and histology of implanted device and tissue, data evaluation using a confocal microscope