# of Displayed Technologies: 5 / 5

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Self-Regulating Platform for Drug-Eluting Medical Meshes
TS-074223 — Researchers at The Ohio State University have developed a self‑regulating manufacturing platform for porous polymer meshes that integrates mesh formation and drug loading in a single step, enabling controlled local delivery from implantable materials.
Technology Overview Implantable meshes and porous polymer films are widely used in surgical, regenerative, and device‑based applications, but current products often separate structural support from drug delivery functions. This platform uses a reaction‑diffusion‑driven process to form poro…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Puskas, Judit; Polyak, Peter
  • Licensing Officer: Panic, Ana

Real‑Time Water Management Technology for Agricultural Drainage and Irrigation
TS-074217 — An OSU innovation may enable farmers to actively manage water at the field scale to improve crop performance, input efficiency, and operational profitability.
Overview Ohio State University researchers have developed a real‑time, low‑cost sensing and control system that addresses a critical challenge in agriculture: limited ability to actively manage water in tile‑drained fields and controlled irrigation systems under variable weather and soil c…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Tirpak, Andrew
  • Licensing Officer: Panic, Ana

Bioremediation for Sustainable Plastic Waste Reduction
TS-074040 — Unlocking a low‑energy, scalable biological platform for degrading for reducing bioplastic and microplastic accumulation. Overview Plastic and bioplastic residues continue to build up in water, soil, and composting systems, creating long‑term environmental and regulatory challenges. Althoug…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Somasundaram, Sripoorna; Ghosh, Rinky; Vodovotz, Yael; Yu, Zhongtang
  • Licensing Officer: Panic, Ana

Apparatus and Method for Enhanced Determination of Optimal Operational Separation for Collaborative Robotic Systems
TS-063983 — Collaborative robotic systems, often referred to as cobots, represent a transformative advancement in industrial automation. Unlike traditional robots that are typically large, heavy, and designed to work in insolation behind safety barriers, cobots are designed to work alongside human operators c…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Tkach, Chris
  • Licensing Officer: Ashouripashaki, Mandana

A Non-Chemical Method for Algal Bloom Treatment and Prevention
TS-059099 — SS+MEF technology to both prevent and treat algal bloom growth, as well as neutralize algal toxins.
The Need Climate change and human practices have led to an increased frequency and intensity of Harmful Algal Blooms (HABs). These HABs, particularly those dominated by cyanobacteria, produce harmful toxins, which result in serious health issues when ingested, inhaled, or contacted. The stability of
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Sastry, Sudhir; Davis, Angela; Lee, Jiyoung; Mok, Jin Hong
  • Licensing Officer: Panic, Ana

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