Anatoly Yakovlev
24Patents
9h-index
26Co-inventors
71Inventor score
Filing activity: Aug 21, 2012 → Aug 23, 2022
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US10238872B2 | Method and apparatus for versatile minimally invasive neuromodulators | Human Necessities | 43 | Active |
| US10335596B2 | Method and apparatus for neuromodulation treatments of pain and other conditions | Electricity | 23 | Active |
| US11331493B2 | Apparatus for peripheral or spinal stimulation | Electricity | 21 | Active |
| US10967183B2 | Method and apparatus for neuromodulation treatments of pain and other conditions | Electricity | 20 | Active |
| US9433750B2 | Method of making and using an apparatus for a locomotive micro-implant using active electromagnetic propulsion | Electricity | 16 | Active |
| US10898719B2 | Apparatus for peripheral or spinal stimulation | Electricity | 13 | Active |
| US10644539B2 | Method of making and using an apparatus for a locomotive micro-implant using active electromagnetic propulsion | Electricity | 13 | Active |
| US10411760B2 | Method and apparatus for efficient communication with implantable devices | Emerging Cross-Sectional Technologies | 11 | Active |
| US10320232B2 | Method of making and using an apparatus for a locomotive micro-implant using active electromagnetic propulsion | Electricity | 11 | Active |
| US11133709B2 | Method of making and using an apparatus for a locomotive micro-implant using active electromagnetic propulsion | Electricity | 8 | Active |
| US11018721B2 | Method and apparatus for efficient communication with implantable devices | Emerging Cross-Sectional Technologies | 8 | Active |
| US11633151B2 | Method and apparatus for versatile minimally invasive neuromodulators | Human Necessities | 7 | Active |
| US11451265B2 | Method and apparatus for efficient communication with implantable devices | Emerging Cross-Sectional Technologies | 6 | Active |
| US11429895B2 | Predicting machine learning or deep learning model training time | Physics | 4 | Active |
| US11620568B2 | Using hyperparameter predictors to improve accuracy of automatic machine learning model selection | Physics | 3 | Active |
| US11989657B2 | Automated machine learning pipeline for timeseries datasets utilizing point-based algorithms | Physics | 1 | Active |
| US12186563B2 | Method and apparatus for neuromodulation treatments of pain and other conditions | Electricity | 1 | Active |
| US12094841B2 | Distributing on chip inductors for monolithic voltage regulation | Emerging Cross-Sectional Technologies | 0 | Active |
| US11561923B2 | Method for training multichannel data receiver timing | Physics | 0 | Active |
| US11562178B2 | Adaptive sampling for imbalance mitigation and dataset size reduction in machine learning | Physics | 0 | Active |
| US10983944B2 | Method for training multichannel data receiver timing | Physics | 0 | Active |
| US11024589B2 | Distributing on chip inductors for monolithic voltage regulation | Emerging Cross-Sectional Technologies | 0 | Active |
| US12040848B2 | Method and apparatus for efficient communication with implantable devices | Emerging Cross-Sectional Technologies | 0 | Active |
| US11979028B2 | Method of making and using an apparatus for a locomotive micro-implant using active electromagnetic propulsion | Electricity | 0 | Active |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.