David A. Bell
29Patents
8h-index
15Co-inventors
72Inventor score
Filing activity: Dec 29, 2000 → Oct 25, 2022
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US6725072B2 | Sensor for transcutaneous measurement of vascular access blood flow | Physics | 59 | Expired |
| US6746407B2 | Method of measuring transcutaneous access blood flow | Human Necessities | 21 | Expired |
| US6804543B2 | Sensor for transcutaneous measurement of vascular access blood flow | Human Necessities | 16 | Expired |
| US7247143B2 | Bladder-based cuff for measuring physiological parameters and method of measuring physiological parameters using same | Human Necessities | 13 | Expired |
| US6937882B2 | Sensor for transcutaneous measurement of vascular access blood flow | Physics | 10 | Expired |
| US11304972B2 | Nitric oxide topical application apparatus and methods | Human Necessities | 10 | Active |
| US10751364B2 | Nitric oxide topical application apparatus and methods | Human Necessities | 10 | Active |
| US6987993B2 | Sensor for transcutaneous measurement of vascular access blood flow | Physics | 9 | Expired |
| US10052348B2 | Nitric oxide topical application apparatus and methods | Human Necessities | 7 | Active |
| US9005404B2 | Controlled-gradient, accelerated-vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 5 | Active |
| US10159914B2 | Fractionator annular drain apparatus and method | Chemistry; Metallurgy | 4 | Active |
| US8986509B2 | Controlled-gradient, accelerated-vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 3 | Active |
| US10994224B2 | Fractionator annular drain apparatus and method | Chemistry; Metallurgy | 2 | Active |
| US9205347B2 | Controlled-gradient, accelerated vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 2 | Active |
| US8845865B2 | Controlled-gradient, accelerated-vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 2 | Active |
| US10974171B2 | Compact, inflatable, snorkel-float apparatus and method | Chemistry; Metallurgy | 2 | Active |
| US9908065B2 | Hybrid scavenger, separator system and method | Chemistry; Metallurgy | 1 | Active |
| US9737831B2 | Unvented, back-pressure-controlled, laminar-annular-velocity-distribution, continuous centrifugal separator apparatus and method | Chemistry; Metallurgy | 1 | Active |
| US9533238B2 | Controlled-gradient, accelerated vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 1 | Active |
| US10011505B2 | Hydrodynamically isolated, ion-generator apparatus and method | Chemistry; Metallurgy | 1 | Active |
| US11478728B2 | Fractionator annular drain apparatus and method | Chemistry; Metallurgy | 1 | Active |
| US9044693B2 | Controlled-gradient, accelerated-vapor-recompression apparatus and method | Mechanical Engineering; Lighting; Heating | 0 | Active |
| US12150953B2 | Nitric oxide topical application apparatus and methods | Human Necessities | 0 | Active |
| US11980834B2 | Fractionator annular drain apparatus and method | Chemistry; Metallurgy | 0 | Active |
| US11052327B2 | Unvented, back-pressure-controlled, laminar-annular-velocity-distribution, continuous centrifugal separator apparatus and method | Chemistry; Metallurgy | 0 | Active |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.