A system and method for fast peak finding in an optical spectrum prioritizes the information it first generates and how the information is then forwarded from the system to a host computer, for example. A spectrum detection subsystem generates a spectrum of an optical signal. An analog-to-digital converter converts the spectrum into sample data. Finally, a data processing subsystem first detects the spectral locations of peaks in the spectrum using the sample data and then uploads the peak information to a host computer before performing processing to determine the shapes of the peaks and/or noise information for the optical signal, for example. The system is thus able to quickly find some information, such as whether or not channels or carriers are present, at what frequency the carriers are operating, and the carriers power level, and send this information to the host computer. In contrast, information concerning spectral shape or the noise floor is sent later in time.
System And Method For Optical Spectrum Fast Peak Reporting
Yu Li - Newton MA, US Peter S. Whitney - Lexington MA, US Jeffrey A. Korn - Lexington MA, US
Assignee:
Axsun Technologies, Inc. - Billerica MA
International Classification:
G01N 21/25
US Classification:
356416
Abstract:
A system and method for fast peak finding in an optical spectrum prioritizes the information it first generates and how the information is then forwarded from the system to a host computer, for example. A spectrum detection subsystem generates a spectrum of an optical signal. An analog-to-digital converter converts the spectrum into sample data. Finally, a data processing subsystem first detects the spectral locations of peaks in the spectrum using the sample data and then uploads the peak information to a host computer before performing processing to determine the shapes of the peaks and/or noise information for the optical signal, for example. The system is thus able to quickly find some information, such as whether or not channels or carriers are present, at what frequency the carriers are operating, and the carriers' power level, and send this information to the host computer. In contrast, information concerning spectral shape or the noise floor sent later in time.
Antibodies Specific For Phosphorylated Insulin Receptor Substrate-1/2 (Ser1101/Ser1149) And Uses Thereof
Roberto Polakiewicz - Lexington MA, US Jiong Wu - Reading MA, US Yu Li - Andover MA, US
Assignee:
Cell Signaling Technology, Inc. - Danvers MA
International Classification:
A61K 39/00 A61K 39/395 C07K 16/00
US Classification:
4241391, 4241411, 5303879
Abstract:
The invention discloses newly-discovered phosphorylation sites in human IRS-1 and IRS-2, serine 1101 (Ser1101) and serine 1149 (Ser1149) respectively, and provides antibodies, both polyclonal and monoclonal, that selectively bind to IRS-1 and/or IRS-2 when phosphorylated at these respective sites, but do not bind to IRS-1 and/or IRS-2 when not phosphorylated at these respective sites. The sites are relevant to insulin-resistance in type 2 diabetes. Also provided are methods for determining the phosphorylation of IRS-1/2 or activity of PKC theta in a biological sample, by using a detectable reagent, such as the disclosed antibodies, that binds to IRS-1/2 only when phosphorylated at Ser1101/Ser1149. Kits comprising the phosphor-IRS-1/2 (Ser1101/1149) antibodies of the invention are also provided.
Reagents For The Detection Of Protein Phosphorylation In Egfr-Signaling Pathways
Ailan Guo - Burlington MA, US Kimberly Lee - Seattle WA, US Klarisa Rikova - Reading MA, US Charles Farnsworth - Concord MA, US Albrecht Moritz - Salem MA, US Yu Li - Andover MA, US Robert Polakiewicz - Lexington MA, US
The invention discloses 168 novel phosphorylation sites identified in signal transduction proteins and pathways downstream of, and including, EGFR kinase, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Actin Binding proteins, Adaptor/Scaffold proteins, Calcium-Binding Proteins, Cell Cycle Regulation proteins, Cytoskeletal proteins, DNA Binding and Replication Proteins, GTPase Activating proteins, Guanine Nucleotide Exchange Factor proteins, Lipid Kinases, Receptor Tyrosine Kinases, Receptor Tyrosine Kinase ligands, Protein Kinases, Receptor and Protein Phosphatases, Transcription Factor proteins, Tumor Suppressor proteins, and Vesicle proteins.
Peter Hornbeck - Magnolia MA, US Ailan Guo - Burlington MA, US Klarisa Rikova - Reading MA, US Albrecht Moritz - Salem MA, US Charles Farnsworth - Concord MA, US Matthew Stokes - Beverly MA, US Jian Yu - Hamilton MA, US Erik Spek - Cambridge MA, US Yu Li - Andover MA, US Anthony Possemato - Framingham MA, US Jessica Cherry - Durham NH, US Valerie Goss - Seabrook NH, US Jeffrey Mitchell - Nashua NH, US John Rush - Beverly MA, US Corinne Michaud - Salem MA, US
The invention discloses 482 novel phosphorylation sites identified in carcinoma and/or leukemia, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
Spectroscopy Wavelength And Amplitude Referencing System And Method
Dale C. Flanders - Lexington MA, US Yu Nathan Li - Lexington MA, US Mark E. Kuznetsov - Lexington MA, US Walid A. Atia - Lexington MA, US
Assignee:
Axsun Technologies, Inc. - Billerica MA
International Classification:
G01B 9/02
US Classification:
356451
Abstract:
A spectroscopy wavelength and amplitude referencing system comprises an optical bench receiving a tunable optical signal from a tunable signal source, a wavelength reference detector on the bench for determining a wavelength of the tunable optical signal, an amplitude reference detector on the bench for determining an amplitude of the tunable optical signal and an output optical signal fiber for transmitting the tunable optical signal to a sample. Also, spectroscopy system controller determines a spectral response of the sample to the tunable optical signal by determining an instantaneous wavelength of the tunable optical signal by reference to the wavelength reference detector.
System And Method For Optical Spectrum Fast Peak Reporting
A system and method for fast peak finding in an optical spectrum prioritizes the information it first generates and how the information is then forwarded from the system to a host computer, for example. A spectrum detection subsystem generates a spectrum of an optical signal. An analog-to-digital converter converts the spectrum into sample data. Finally, a data processing subsystem first detects the spectral locations of peaks in the spectrum using the sample data and then uploads the peak information to a host computer before performing processing to determine the shapes of the peaks and/or noise information for the optical signal, for example. The system is thus able to quickly find some information, such as whether or not channels or carriers are present, at what frequency the carriers are operating, and the carriers' power level, and send this information to the host computer. In contrast, information concerning spectral shape or the noise floor sent later in time.
Peter Hornbeck - Magnolia MA, US Ailan Guo - Burlington MA, US Klarisa Rikova - Reading MA, US Albrecht Moritz - Salem MA, US Charles Farnsworth - Concord MA, US Matthew Stokes - Beverly MA, US Jian Yu - Hamilton MA, US Erik Spek - Cambridge MA, US Yu Li - Andover MA, US Valerie Goss - Seabrook NH, US Francesco Boccalatte - Torino, IT
International Classification:
G01N 33/536 C07K 16/18
US Classification:
436536, 5303877
Abstract:
The invention discloses 405 novel phosphorylation sites identified in carcinoma and/or leukemia, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
Dr. Li graduated from the China Med Univ, Shenyang City, Liaoning, China in 1985. He works in Davenport, IA and 1 other location and specializes in Anatomic Pathology & Clinical Pathology. Dr. Li is affiliated with Trinity Medical Center Moline, Unitypoint Health Trinity, UnityPoint Health Trinity Bettendorf and Unitypoint Health Trinity Regional Medical Center.
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SPA TECH INC
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GIFU, INC
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HOCKEY MINISTRIES INTERNATIONAL
Yu Hong Li
SOM EXPRESS, INC
Yu Hui Li
HOCKEY MINISTRIES INTERNATIONAL INCORPORATED
Yu Yun Li Manager
JOHN & LI 68 TRADING LLC
12 Maple St, Danvers, MA 01923 219 Glendale Rd, Quincy, MA 02169
National University of Singapore - Computer Science, Beijing University of Posts and Telecommunications - Information Engineering
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