Milford, CT, United States of America

Sarah Crawford



Average Co-Inventor Count = 1.3

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 2013-2015

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2 patents (USPTO):Explore Patents

Title: Innovations in Cancer Treatment: The Pioneering Work of Sarah Crawford

Introduction: Sarah Crawford, a distinguished inventor based in Milford, CT, has made significant strides in the field of cancer treatment through her innovative research. With two patents to her name, her work focuses on harnessing the potential of primitive plant species to combat cancer.

Latest Patents: Sarah's latest patents revolve around formulations comprising extracts from primitive plant species, such as mosses, ferns, and lichens. These extracts are noted for their anti-cancer properties and are prepared by pulverizing biological matter in a diluent. The extracts can be administered to individuals or animals to kill cancer cells, prevent their growth, and treat cancer. Furthermore, these formulations may be utilized in conjunction with other therapeutic protocols, enhancing their potential effectiveness in treating this formidable disease.

Career Highlights: Sarah Crawford is an esteemed member of the faculty at Southern Connecticut State University, where she contributes to advancing medical and botanical sciences. Her commitment to research and innovation has garnered her recognition in her field, reflecting her passion for finding novel solutions to pressing health challenges, particularly cancer.

Collaborations: One of Sarah's notable collaborators is Erin Boisvert, a fellow researcher and colleague. Together, they share a commitment to exploring and developing new methodologies that leverage the unique properties of primitive plant species for therapeutic purposes.

Conclusion: The contributions of Sarah Crawford to cancer treatment through innovative research are commendable. With her focus on primitive plant extracts, she stands at the forefront of a field that holds immense promise for future therapies in cancer care. As she continues her work at Southern Connecticut State University, her findings have the potential to inspire further breakthroughs in cancer treatment.

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