el Campo-Alicante, Spain

Inmaculada Perez Pedron


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 300(Granted Patents)


Company Filing History:

goldMedal1 out of 832,718 
Other
 patents

Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: Innovations in Spinal Implant Technology: The Work of Inmaculada Perez Pedron

Introduction

Inmaculada Perez Pedron, an inventive spirit based in El Campo-Alicante, Spain, has made significant contributions to the field of spinal implant technology. With one patent to her name, she embodies the role of an innovator dedicated to improving medical devices that enhance patient care and quality of life.

Latest Patents

Her notable patent describes a multiaxial connector for spinal implants. This innovation provides a method for securing a connecting rod of a spinal implant to a vertebra anchor. The design includes a first element that attaches to the vertebra anchor and a second element that accommodates the connecting rod. Central to this invention is a ball joint member that allows for relative angular adjustment between the two elements, facilitating better adaptability and strength in spinal surgeries.

Career Highlights

Inmaculada's commitment to innovation is reflected in her patent, showcasing her technical expertise and dedication to advancing medical technology. Her work in developing effective solutions for spinal implants marks her as a key figure in this specialized field.

Collaborations

Throughout her career, Inmaculada has collaborated with esteemed professionals, notably Antonio Martin Benlloch and Jean-Yves Leroy. Their teamwork fosters an environment of creativity and innovation, contributing to advancements in spinal implant technology.

Conclusion

Inmaculada Perez Pedron exemplifies the innovative spirit that drives advancements in medical technology. Her patented multiaxial connector for spinal implants is a testament to her commitment to improving healthcare solutions. As she continues to work with notable colleagues, the future of spinal implant technology looks promising with her contributions.

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