IP Library Granted Patent US 10,871,460
Granted Patent B2
US 10,871,460 · App. 15/990,369 · Granted Dec 22, 2020

Method and apparatus for generating thermal melting curves in a microfluidic device

Inventors: Ivor T. Knight (North Arlington, VA); Deborah John Boles (Cary, NC); Aaron Rulison (Los Altos, CA); Wesley B. Dong (Belmont, CA); Andrew Fabans (Los Gatos, CA); Allen Boronkay (San Jose, CA); Edward Donlon (San Jose, CA); Robert Moti (San Jose, CA); Michael Slater (Modesto, CA); Steven A. Sundberg (San Francisco, CA); Michael R. Knapp (Palo Alto, CA)
Assignee: Canon U.S.A., Inc.
G01N25/04B01L3/5027B01L3/50273B01L3/502715B01L7/52B01L7/525C12Q1/68C12Q1/686C12Q1/6844C12Q1/6862G01N21/33G01N21/6428B01L2200/10B01L2300/0627B01L2300/0816B01L2300/14B01L2300/18B01L2300/1833B01L2400/0409B01L2400/0415B01L2400/0487Y10T436/143333
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Quick Facts
Patent No.
US 10,871,460
App. No.
15/990,369
Granted
Dec 22, 2020
Kind
B2
Abstract

The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.

Claims (6)

1. A method of determining the thermal inertia of a microfluidic device, the method comprising:

flowing a fluid comprising a fluorescent material through a channel in a microfluidic device, wherein the amount of fluorescence generated by the fluorescent material varies with temperature,

varying the temperature of an external surface of the microfluidic device, wherein the variation comprises a pattern with a recognizable feature, wherein the variation in temperature of the external surface produces a corresponding variation in temperature within the channel, and wherein the variation in temperature in the channel produces a corresponding variation in the amount of fluorescence generated by the fluorescent material,

measuring the fluorescence generated by the fluorescent material in the channel, and

determining a time offset between the temperature variations of the external surface and the variations in the amount of fluorescence by measuring the time delay between the imposition of the recognizable feature on the external surface and the appearance of the recognizable feature in the fluorescence generated by the fluorescent material, whereby the time offset is indicative of the thermal inertia.

2. The method of claim 1 , wherein the pattern is a sine wave.

Assignments (1)
MERGER AND CHANGE OF NAME Recorded Jul 6, 2020
From: CANON U.S. LIFE SCIENCES, INC.; CANON U.S.A., INC.
To: CANON U.S.A., INC.
Reel/Frame 053123/0639 →
Continuity (7)
Division 13840994 · Mar 15, 2013
Continuation 13444502 · Apr 11, 2012
Continuation 11352452 · Feb 9, 2006
Continuation In Part 11032749 · Jan 11, 2005
Continuation 10003472 · Nov 15, 2001
Provisional Application 60249578 · Nov 16, 2000
Related Publication 20180321170A1 · Nov 8, 2018