Growing community of inventors

Scotts Valley, CA, United States of America

Denise Ann Miller

Average Co-Inventor Count = 3.02

ph-index = 6

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 = 69

Denise Ann MillerJoan Savall (18 patents)Denise Ann MillerAnette Lia Freiin Von Kapri (11 patents)Denise Ann MillerJohn Harry Magnasco (6 patents)Denise Ann MillerPaolo Invernizzi (6 patents)Denise Ann MillerJagadish Venkataraman (5 patents)Denise Ann MillerGeoffrey Robert Russell (3 patents)Denise Ann MillerHamid Reza Sani (2 patents)Denise Ann MillerRandall Blake Hellman (2 patents)Denise Ann MillerKaran Handa (2 patents)Denise Ann MillerPablo E Garcia Kilroy (1 patent)Denise Ann MillerAlan B Miller (1 patent)Denise Ann MillerMufaddal Jhaveri (1 patent)Denise Ann MillerRichard Edward DeMartini (1 patent)Denise Ann MillerJoan Savaii (1 patent)Denise Ann MillerPaolo Invernizzi (0 patent)Denise Ann MillerDenise Ann Miller (25 patents)Joan SavallJoan Savall (68 patents)Anette Lia Freiin Von KapriAnette Lia Freiin Von Kapri (22 patents)John Harry MagnascoJohn Harry Magnasco (24 patents)Paolo InvernizziPaolo Invernizzi (18 patents)Jagadish VenkataramanJagadish Venkataraman (30 patents)Geoffrey Robert RussellGeoffrey Robert Russell (6 patents)Hamid Reza SaniHamid Reza Sani (5 patents)Randall Blake HellmanRandall Blake Hellman (2 patents)Karan HandaKaran Handa (2 patents)Pablo E Garcia KilroyPablo E Garcia Kilroy (85 patents)Alan B MillerAlan B Miller (7 patents)Mufaddal JhaveriMufaddal Jhaveri (4 patents)Richard Edward DeMartiniRichard Edward DeMartini (1 patent)Joan SavaiiJoan Savaii (1 patent)Paolo InvernizziPaolo Invernizzi (0 patent)
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Inventor’s number of patents
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Strength of working relationships

Company Filing History:

1. Verb Surgical Inc. (23 from 300 patents)

2. Verily Life Sciences LLC (1 from 942 patents)

3. Johnson & Johnson Innovation-jjdc, Inc. (1 from 2 patents)


25 patents:

1. 12290327 - Adjustable user console for a surgical robotic system

2. 12213756 - Interlock mechanisms to disengage and engage a teleoperation mode

3. 12175018 - Methods for determining if teleoperation should be disengaged based on the user's gaze

4. 12133704 - Mitigating electromagnetic field distortion for a surgical robotic system

5. 12108928 - Machine-learning-based visual-haptic system for robotic surgical platforms

6. 11960645 - Methods for determining if teleoperation should be disengaged based on the user's gaze

7. 11944402 - System and method of verifying user interface device function

8. 11826115 - Adjustable user console for a surgical robotic system

9. 11819188 - Machine-learning-based visual-haptic system for robotic surgical platforms

10. 11806104 - Interlock mechanisms to disengage and engage a teleoperation mode

11. 11786315 - Surgical robotic system having grip-dependent control

12. 11723515 - Surgical tool having integrated microphones

13. 11696807 - Drop detection of ungrounded master controller for a surgical robot

14. 11653988 - Mitigating electromagnetic field distortion for a surgical robotic system

15. 11576743 - Machine-learning-based visual-haptic system for robotic surgical platforms

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12/3/2025
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