Patents by Inventor Henry D. Huang
Henry D. Huang has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11402369Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: GrantFiled: February 28, 2020Date of Patent: August 2, 2022Assignee: INSTRUMENTATION LABORATORY COMPANYInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, Jr., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Publication number: 20200200731Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: ApplicationFiled: February 28, 2020Publication date: June 25, 2020Applicant: Instrumentation Laboratory CompanyInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, JR., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Patent number: 10578605Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: GrantFiled: December 5, 2018Date of Patent: March 3, 2020Assignee: Instrumentation Laboratory CompanyInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, Jr., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Publication number: 20190107529Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: ApplicationFiled: December 5, 2018Publication date: April 11, 2019Inventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, JR., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Patent number: 10180419Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: GrantFiled: August 5, 2013Date of Patent: January 15, 2019Assignee: Instrumentation Laboratory CompanyInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, Jr., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Publication number: 20140161668Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: ApplicationFiled: August 5, 2013Publication date: June 12, 2014Applicant: International Technidyne CorporationInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Publication number: 20130017126Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: ApplicationFiled: May 17, 2012Publication date: January 17, 2013Applicant: INTERNATIONAL TECHNIDYNE CORPORATIONInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, JR., Dimitri Shishkin, Maria Figueroa, James A. Mawhirt
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Publication number: 20120096145Abstract: A system, method, and apparatus for intercepting data streams such as packets on a network. In one embodiment, the method includes: receiving at a network surveillance system (NSS), a target to be intercepted on the network; creating a target identification (target ID) for the target, wherein the target ID is unique to the NSS in order to track data streams of the target during subsequent processing, such as extraction of content and metadata, in the NSS; intercepting the data streams of the target on the network; tagging the data streams of the target that are intercepted from the network with a respective target ID; transmitting the data streams of the target to the NSS for subsequent analysis; and distributing the data streams across a scalable quantity of data processing engines in the NSS.Type: ApplicationFiled: February 7, 2011Publication date: April 19, 2012Applicant: SS8 NETWORKS, INC.Inventors: Robert D. Le, Timothy Bean, Leonti S. Dailis, Cemal Tamer Dikmen, Bulent Erbilgin, Martin Tomas C. Guerrero, Henry D. Huang, Kevin McTiernan, Martin W. Rosera
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Publication number: 20100028207Abstract: An apparatus for measuring blood clotting time includes a blood clot detection instrument and a cuvette for use with the blood clot detection instrument. The cuvette includes a blood sample receptor-inlet; a channel arrangement including at least one test channel for performing a blood clotting time measurement, a sampling channel having at least one surface portion that is hydrophilic, communicating with the blood sample receptor-inlet and the at least one test channel, and a waste channel having at least one surface portion that is hydrophilic, communicating with the sampling channel; and a vent opening communicating with the sampling channel. The sampling channel, the vent opening and the waste channel, coact to automatically draw a requisite volume of a blood sample deposited at the blood receptor-inlet, into the sampling channel.Type: ApplicationFiled: July 15, 2009Publication date: February 4, 2010Applicant: International Technidyne CorporationInventors: Gregory M. Colella, Henry D. Huang, Anthony F. Kuklo, JR., Dimitri V. Shishkin, Maria Figueroa, James A. Mawhirt