Growing community of inventors

Lexington, MA, United States of America

Linda G Cima

Average Co-Inventor Count = 2.59

ph-index = 9

The patent ph-index is calculated by counting the number of publications for which an author has been cited by other authors at least that same number of times.

Forward Citations = 1,786

Linda G CimaMichael John Cima (6 patents)Linda G CimaJoseph P Vacanti (3 patents)Linda G CimaEdward W Merrill (3 patents)Linda G CimaPhilip R Kuhl (3 patents)Linda G CimaRobert Samuel Langer (1 patent)Linda G CimaAntonios Georgios Mikos (1 patent)Linda G CimaGeorgios Sarakinos (1 patent)Linda G CimaLinda G Cima (10 patents)Michael John CimaMichael John Cima (105 patents)Joseph P VacantiJoseph P Vacanti (56 patents)Edward W MerrillEdward W Merrill (23 patents)Philip R KuhlPhilip R Kuhl (3 patents)Robert Samuel LangerRobert Samuel Langer (621 patents)Antonios Georgios MikosAntonios Georgios Mikos (27 patents)Georgios SarakinosGeorgios Sarakinos (4 patents)
..
Inventor’s number of patents
..
Strength of working relationships

Company Filing History:

1. Massachusetts Institute of Technology (9 from 8,393 patents)

2. Children's Medical Center Corporation (2 from 1,038 patents)

3. Other (1 from 832,880 patents)


10 patents:

1. 7008634 - Cell growth substrates with tethered cell growth effector molecules

2. 6530958 - Tissue regeneration matrices by solid free-form fabrication techniques

3. 6176874 - Vascularized tissue regeneration matrices formed by solid free form fabrication techniques

4. 6139574 - Vascularized tissue regeneration matrices formed by solid free form

5. 6045818 - Cell growth substrates with tethered cell growth effector molecules

6. 5906828 - Cell growth substrates with tethered cell growth effector molecules

7. 5869170 - Preparation of medical devices by solid free-form fabrication methods

8. 5518680 - Tissue regeneration matrices by solid free form fabrication techniques

9. 5514378 - Biocompatible polymer membranes and methods of preparation of three

10. 5490962 - Preparation of medical devices by solid free-form fabrication methods

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