Search

Maxim Mikheev Phones & Addresses

  • 814 Snapper Ter, Fremont, CA 94536
  • North Potomac, MD
  • Elkridge, MD
  • Pittsburgh, PA
  • Clairton, PA
  • Bethesda, MD

Work

Company: Biomedican Nov 2017 Position: Chief executive officer and co-founder

Education

Degree: Doctorates, Doctor of Philosophy School / High School: State Research Center of Virology and Biotechnology "Vector" 1998 to 2006 Specialities: Molecular Biology

Skills

Genomics • Bioinformatics • Molecular Biology • Biotechnology • Pcr • Dna Sequencing • Elisa • Proteomics • Molecular Cloning • Computational Biology • Laboratory • Tissue Culture • Biochemistry • Flow Cytometry • Dna • Genetics • Project Management • Recombinant Dna Technology • Start Ups • Sequencing • Life Sciences • Cell • Hplc • Entrepreneurship • Cloud Computing • Java • Medical Diagnostics • Cancer Research • Microarray • Mpi • Big Data • Virology • Genetic Testing • High Throughput Calculations • Ngs • C# • Next Generation Sequencing • Hadoop • Customer Service • Research Project Management • Genetic Engineering • Openmp • Viruses • Clinical Diagnostics • Project Planning • Enterprise Software • Product Management • Strategy • Management • Software As A Service

Languages

English • Russian

Interests

Start Ups • Computational Biology • Entrepreneurship • High Throughput • Big Data • Science and Technology • Ngs • Genomics

Industries

Research

Resumes

Resumes

Maxim Mikheev Photo 1

Chief Executive Officer And Co-Founder

View page
Location:
814 Snapper Ter, Fremont, CA 94536
Industry:
Research
Work:
Biomedican
Chief Executive Officer and Co-Founder

Viar.live Nov 2015 - Mar 2017
Co-Founder

Biodatomics Sep 1, 2012 - Mar 2017
Chief Technology Officer and Co-Founder

Upmc Sep 2008 - Aug 2011
Postdoctoral Research Fellow

National Institutes of Health Mar 2006 - Aug 2008
Postdoctoral Research Fellow
Education:
State Research Center of Virology and Biotechnology "Vector" 1998 - 2006
Doctorates, Doctor of Philosophy, Molecular Biology
Novosibirsk State Medical University (Nsmu) 1999 - 2004
Doctor of Medicine, Doctorates
Novosibirsk State University, Department of Economics 1994 - 1999
Master of Science, Masters, Molecular Biology
Skills:
Genomics
Bioinformatics
Molecular Biology
Biotechnology
Pcr
Dna Sequencing
Elisa
Proteomics
Molecular Cloning
Computational Biology
Laboratory
Tissue Culture
Biochemistry
Flow Cytometry
Dna
Genetics
Project Management
Recombinant Dna Technology
Start Ups
Sequencing
Life Sciences
Cell
Hplc
Entrepreneurship
Cloud Computing
Java
Medical Diagnostics
Cancer Research
Microarray
Mpi
Big Data
Virology
Genetic Testing
High Throughput Calculations
Ngs
C#
Next Generation Sequencing
Hadoop
Customer Service
Research Project Management
Genetic Engineering
Openmp
Viruses
Clinical Diagnostics
Project Planning
Enterprise Software
Product Management
Strategy
Management
Software As A Service
Interests:
Start Ups
Computational Biology
Entrepreneurship
High Throughput
Big Data
Science and Technology
Ngs
Genomics
Languages:
English
Russian

Business Records

Name / Title
Company / Classification
Phones & Addresses
Maxim Mikheev
Principal
Nimbus Biolab
Commercial Physical Research
1566 Vlg Grn Dr, Floreffe, PA 15025
Maxim Mikheev
Co-Founder
BioDatomics
Research · Computer Programming Svc · Custom Computer Programming Services, Nsk
4405 E West Hwy #309, Bethesda, MD 20814
7900 Wisconsin Ave, Bethesda, MD 20814
Maxim Mikheev
Director
Data Integrated Solutions, Inc
Data Processing/Preparation
173 Fairfax Rd, Pittsburgh, PA 15221

Publications

Us Patents

Self-Regulating Device For Modulating Inflammation

View page
US Patent:
20110190680, Aug 4, 2011
Filed:
Sep 29, 2009
Appl. No.:
13/121013
Inventors:
Yoram Vodovotz - Sewickley PA, US
Gregory Constantine - Baden PA, US
Jorg Christian Gerlach - Pittsburgh PA, US
Qi Mi - Pittsburgh PA, US
Maxim Mikheev - Clairton PA, US
David Okonkwo - Pittsburgh PA, US
Alexey Solovyev - Pittsburgh PA, US
International Classification:
A61M 1/34
C12M 3/00
US Classification:
604 609, 4352891, 4352971
Abstract:
A bioreactor is provided which contains cells capable of producing cytokine inhibitors in response to cytokines, in a manner regulated by the local or systemic milieu of an individual patient and predicted by mechanistic computational simulations. The bioreactor transfers the cytokine inhibitors to a patient in need of control of the inflammation process as part of a disease or condition in the patient, such as sepsis, trauma, traumatic brain injury, or wound healing. Related methods also are provided.

Production Of Cannabinoids

View page
US Patent:
20220403346, Dec 22, 2022
Filed:
Aug 18, 2020
Appl. No.:
17/636322
Inventors:
- Fremont CA, US
Maxim Mikheev - Fremont CA, US
International Classification:
C12N 9/10
C12N 15/52
C12N 15/10
C12P 19/34
Abstract:
The present disclosure relates to the production of cannabinoids in either recombinant microorganism or in cell-free systems using a combination of enzymes, including but not limited to a PKS enzyme, a npgA enzyme, a cs-OLAS-1, a pp-DVAS-1, a cs-HEX-1 and/or Butiryl synthase.

Visual Effects System For "Big Data" Analysis Workflow Editors, Distribution Platforms, Execution Engines, And Management Systems Comprising Same

View page
US Patent:
20190196672, Jun 27, 2019
Filed:
Mar 4, 2019
Appl. No.:
16/291935
Inventors:
- Bethesda MD, US
Maxim Mikheev - Fremont CA, US
Assignee:
Biodatomics, LLC - Bethesda MD
International Classification:
G06F 3/0482
G06F 16/28
G06F 16/25
G06Q 10/06
G06F 9/48
G06F 16/26
Abstract:
Provided are methods and systems for the visualization, distribution, and event-driven management of elements of a workflow that defines an analysis of very large data sets using multi-node compute clusters. A method for visualization of elements of such a workflow may include displaying the workflow via a user interface, collapsing groups of elements, adding further elements, removing elements, and modifying elements in the workflow. A digital workflow distribution platform comprises a user interface configured to allow a user to select a workflow, to acquire the workflow, to import the workflow into a user environment, and to develop the workflow imported into the user environment. An event-driven management engine for workflows may activate one or more computational modules in response to triggering events wherein the computational modules may be allocated non-sequentially in a distributed cloud computing environment to process a data set according to predetermined criteria.

Self-Regulating Device For Modulating Inflammation

View page
US Patent:
20190125955, May 2, 2019
Filed:
Oct 10, 2018
Appl. No.:
16/156277
Inventors:
- Pittsburgh PA, US
Alexey Solovyev - Pittsburgh PA, US
David Okonkwo - Pittsburgh PA, US
Maxim Mikheev - Clairton PA, US
Qi Mi - Pittsburgh PA, US
Jorg Gerlach - Pittsburgh PA, US
Gregory M. Constantine - Baden PA, US
International Classification:
A61M 1/34
A61M 1/36
A61M 1/00
B01D 63/02
Abstract:
A bioreactor is provided which contains cells capable of producing cytokine inhibitors in response to cytokines, in a manner regulated by the local or systemic milieu of an individual patient and predicted by mechanistic computational simulations. The bioreactor transfers the cytokine inhibitors to a patient in need of control of the inflammation process as part of a disease or condition in the patient, such as sepsis, trauma, traumatic brain injury, or wound healing. Related methods also are provided.

Visual Effects System For "Big Data" Analysis Workflow Editors, Distribution Platforms, Execution Engines, And Management Systems Comprising Same

View page
US Patent:
20160313874, Oct 27, 2016
Filed:
Dec 6, 2014
Appl. No.:
15/102026
Inventors:
- Bethesda MD, US
Maxim Mikheev - Elkridge MD, US
International Classification:
G06F 3/0482
G06F 9/48
G06F 17/30
Abstract:
Provided are methods and systems for the visualization, distribution, and event-driven management of elements of a workflow that defines an analysis of very large data sets using multi-node compute clusters. A method for visualization of elements of such a workflow may include displaying the workflow via a user interface, collapsing groups of elements, adding further elements, removing elements, and modifying elements in the workflow. A digital workflow distribution platform comprises a user interface configured to allow a user to select a workflow, to acquire the workflow, to import the workflow into a user environment, and to develop the workflow imported into the user environment. An event-driven management engine for workflows may activate one or more computational modules in response to triggering events wherein the computational modules may be allocated non-sequentially in a distributed cloud computing environment to process a data set according to predetermined criteria.

Scientific Workflow Distribution Platform

View page
US Patent:
20160196512, Jul 7, 2016
Filed:
Mar 15, 2016
Appl. No.:
15/070571
Inventors:
- Bethesda MD, US
Maxim Mikheev - Elkridge MD, US
International Classification:
G06Q 10/06
Abstract:
Provided are methods and systems for scientific workflow distribution. A digital scientific workflow distribution platform comprises a user interface configured to allow a user to select a scientific workflow based on one or more parameters associated with the scientific workflow. Based on the selection, a distribution module enables acquiring the scientific workflow and importing the scientific workflow into a user environment. The digital scientific workflow distribution platform further comprises a management engine for scientific workflows configured to support development of the scientific workflow imported into the user environment.

Visual Effects For Scientific Workflow Editors

View page
US Patent:
20160170628, Jun 16, 2016
Filed:
Feb 25, 2016
Appl. No.:
15/053332
Inventors:
- Bethesda MD, US
Maxim Mikheev - Elkridge MD, US
International Classification:
G06F 3/0484
Abstract:
Provided are methods and systems for the visualization of elements of a scientific workflow. A method for visualization of elements of a scientific workflow may include displaying the scientific workflow via a user interface. Based on predetermined grouping criteria, one or more collapsible groups of elements are defined within the scientific workflow. Upon receiving a request to collapse the collapsible groups of elements, the collapsible groups of elements are collapsed into collapsed groups of elements. After collapsing, a layout of the plurality of elements and the collapsed groups of elements is selectively readjusted. The method can further include adding further elements to the scientific workflow, removing elements from the scientific workflow, and modifying elements in the scientific workflow.

Visual Effects For Scientific Workflow Editors

View page
US Patent:
20150160809, Jun 11, 2015
Filed:
Dec 6, 2013
Appl. No.:
14/099884
Inventors:
- Bethesda MD, US
Maxim Mikheev - Elkridge MD, US
Assignee:
BIODATOMICS, LLC - Bethesda MD
International Classification:
G06F 3/0484
G06F 3/0482
G06Q 10/06
Abstract:
Provided are methods and systems for the visualization of elements of a scientific workflow. A method for visualization of elements of a scientific workflow may include displaying the scientific workflow via a user interface. Based on predetermined grouping criteria, one or more collapsible groups of elements are defined within the scientific workflow. Upon receiving a request to collapse the collapsible groups of elements, the collapsible groups of elements are collapsed into collapsed groups of elements. After collapsing, a layout of the plurality of elements and the collapsed groups of elements is selectively readjusted. The method can further include adding further elements to the scientific workflow, removing elements from the scientific workflow, and modifying elements in the scientific workflow.
Maxim Mikheev from Fremont, CA, age ~46 Get Report