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Min He, 45Pearl City, HI

Min He Phones & Addresses

Pearl City, HI   

Honolulu, HI   

Daly City, CA   

Westminster, CA   

906 Lehua Ave APT 302, Pearl City, HI 96782   

Education

School / High School: University of Pennsylvania Law School

Ranks

Licence: New York - Currently registered Date: 2009

Mentions for Min He

Career records & work history

Lawyers & Attorneys

Min He Photo 1

Min He - Lawyer

Address:
106-5634249 (Office)
Licenses:
New York - Currently registered 2009
Education:
University of Pennsylvania Law School

Min He resumes & CV records

Resumes

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Min He

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Min He

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Min He

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Min He

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Min He

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Min He

Location:
United States

Publications & IP owners

Us Patents

Water Soluble Polymer-Based Rapidly Dissolving Tablets And Production Processes Thereof

US Patent:
6465009, Oct 15, 2002
Filed:
Mar 18, 1998
Appl. No.:
09/044302
Inventors:
Fang-yu Liu - Fremont CA
Min Michael He - Fremont CA
Janaki Ram Nyshadham - Fremont CA
Kuldeepak Sharma - Fremont CA
James Shunnan Chu - Palo Alto CA
Joseph A. Fix - Half Moon Bay CA
Assignee:
Yamanouchi Pharmaceutical Co., Ltd. - Tokyo
International Classification:
A61K 920
US Classification:
424464, 424439, 424465, 424470, 424488, 514772
Abstract:
The invention provides for novel compressed tablets capable of rapidly disintegrating in aqueous solutions, comprising at least one non-saccharide water soluble polymer, which are free of organic solvent residues, and methods of making such pharmaceuticals.

Water Soluble Polymer-Based Rapidly Dissolving Tablets And Production Processes Thereof

US Patent:
2003012, Jul 10, 2003
Filed:
Oct 9, 2002
Appl. No.:
10/269085
Inventors:
Fang-yu Liu - Fremont CA, US
Min He - Fremont CA, US
Janaki Nyshadham - Fremont CA, US
Kuldeepak Sharma - Fremont CA, US
James Chu - Palo Alto CA, US
Joseph Fix - Half Moon Bay CA, US
Assignee:
YAMANOUCHI PHARMA TECHNOLOGIES, INC.
International Classification:
A61K009/20
US Classification:
424/465000
Abstract:
The invention provides for novel compressed tablets capable of rapidly disintegrating in aqueous solutions, comprising at least one non-saccharide water soluble polymer, which are free of organic solvent residues, and methods of making such pharmaceuticals.

Characterization Of The Gsk-3Beta Protein And Methods Of Use Thereof

US Patent:
2004010, May 27, 2004
Filed:
Dec 11, 2003
Appl. No.:
10/450422
Inventors:
Dirksen Bussiere - San Leandro CA, US
Min He - Union City CA, US
Vincent P Le - San Francisco CA, US
Johanna Jansen - San Francisco CA, US
S Chin - Albany CA, US
Eric Martin - El Cerrito CA, US
International Classification:
G01N033/53
G06F019/00
G01N033/48
G01N033/50
US Classification:
435/007100, 702/019000
Abstract:
The invention provides the three-dimensional structure of a construct of human glycogen synthase kinase 3 (GSK3); crystals of a construct of human glycogen synthase kinase 3- (GSK3-); containing the protein's catalytic kinase domain; a domain for crystallizing the protein construct to provide a GSK3 crystal sufficient for structure determination; and a method for using the GSK3 construct's three dimensional structure for the identification of possible therapeutic compounds in the treatment of various disease conditions mediated by GSK3 activity.

Characterization Of The Gsk-3Beta Protein And Methods Of Use Thereof

US Patent:
2008000, Jan 3, 2008
Filed:
Jul 18, 2007
Appl. No.:
11/879719
Inventors:
Dirksen Bussiere - San Leandro CA, US
Min He - Union City CA, US
Vincent Le - San Francisco CA, US
Johanna Jansen - San Francisco CA, US
S. Chin - Albany CA, US
Eric Martin - El Cerrito CA, US
International Classification:
C07K 14/00
C07K 1/00
G06G 7/48
US Classification:
530402000, 703011000
Abstract:
The invention provides the three-dimensional structure of a construct of glycogen synthase kinase 3 (GSK3); crystals of a construct of glycogen synthase kinase 3-β (GSK3-β) containing the protein's catalytic kinase domain; a method for crystallizing the protein construct to provide a GSK3 crystal sufficient for structure determination; and a method for using the GSK3 construct's three-dimensional structure for the identification of possible therapeutic compounds in the treatment of various disease conditions mediated by GSK3 activity.

Computer Implemented Systems And Methods For Automatic Generation Of Data Transformations

US Patent:
2016032, Nov 3, 2016
Filed:
Apr 30, 2015
Appl. No.:
14/701369
Inventors:
Claudia LEHMANN - Palo Alto CA, US
Michael ALEXANDER - Palo Alto CA, US
Phil TINARI - Palo Alto CA, US
Min HE - San Jose CA, US
Vie Ming SEAH - Palo Alto CA, US
Barbara STORTZ - Walldorf, DE
Daniel CULP - Palo Alto CA, US
International Classification:
G06F 17/24
G06T 11/20
Abstract:
The present disclosure includes techniques pertaining to computer implemented systems and methods for automatic generation of data transformations. In one embodiment, a user manipulates a spreadsheet of data in a user interface. On a backend, the user's manipulations trigger actions that cause the data to be modified. Actions may automatically cause data flow objects and data flow graphs to be produced. The transformations defined by the data flow graphs are automatically executed by a software engine and the results are displayed to the user. The user may access and manipulate data from a variety of data sources while the underlying complexities of the transformation process are performed in an automated manner.

Computer Implemented Systems And Methods For Data Usage Monitoring

US Patent:
2016032, Nov 3, 2016
Filed:
Apr 30, 2015
Appl. No.:
14/701387
Inventors:
- Walldorf, DE
Chien YUEH - Palo Alto CA, US
Ying LIU - Milpitas CA, US
Min HE - San Jose CA, US
International Classification:
G06F 17/24
G06F 3/0484
G06F 3/0482
H04L 29/08
Abstract:
The present disclosure includes techniques pertaining to computer implemented systems and methods for data usage monitoring. In one embodiment, user manipulations of spreadsheets are translated into backend actions and executed against spreadsheet data. The actions of users on different spreadsheets automatically generate data records to track each action. The data records are stored in a data structure and portions of the records may be accessed to generate usage information.

Just-In-Time Data Quality Assessment For Best Record Creation

US Patent:
2015000, Jan 1, 2015
Filed:
Jun 27, 2013
Appl. No.:
13/929475
Inventors:
Min He - Palo Alto CA, US
Frank Le - Palo Alto CA, US
Hiren Kotadia - Palo Alto CA, US
Hemant Puranik - Palo Alto CA, US
Abhiram Gujjewar - Palo Alto CA, US
David Kung - Palo Alto CA, US
Assignee:
BUSINESS OBJECTS SOFTWARE LIMITED - Dublin
International Classification:
G06F 17/30
US Classification:
707694
Abstract:
Systems and methods for just-in-time data quality assessment of best records created during data migration are disclosed. A data steward includes tools for creating and editing a best record creation strategy that defines how records from multiple systems will be integrated into target systems. At design time, the data steward can generate best record creation and validation rules based on the best record creation strategy. The data steward can apply the best record creation and validation rules to a sample of matched records from multiple data sources to generate a sample set of best records. The efficacy of the best record creation rules can be evaluated by assessing the number of fields in the sample set that fail the validation rules. During review, the validation rules can be applied to edits to the best records received from a human reviewer to ensure compliance with the best record creation strategy.

System And Method For Data Quality Business Impact Analysis

US Patent:
2014037, Dec 25, 2014
Filed:
Jun 21, 2013
Appl. No.:
13/924152
Inventors:
Abhiram Gujjewar - Palo Alto CA, US
David Kung - Palo Alto CA, US
Ray Kuo - Palo Alto CA, US
Min He - Palo Alto CA, US
Cate Hanson - Palo Alto CA, US
Assignee:
BUSINESS OBJECTS SOFTWARE LTD - Dublin
International Classification:
G06Q 10/06
US Classification:
705 728
Abstract:
A computer implemented method of calculating a cost impact. The method includes associating cost amounts with various rules, using the rules to identify bad data, and calculating an aggregate cost of the bad data. In this manner, the Data Steward can prioritize various data quality improvement projects.

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