IP Library Granted Patent US 9,238,869
Granted Patent B2
US 9,238,869 · App. 14/016,007 · Granted Jan 19, 2016

Methods and systems for using actuated surface-attached posts for assessing biofluid rheology

Inventors: Richard Superfine (Chapel Hill, NC); Richard Chasen Spero (Chapel Hill, NC); Adam Richard Shields (Springfield, VA); Benjamin Aaron Evans (Chapel Hill, NC); Briana Lee Fiser (High Point, NC)
Assignee: The University of North Carolina at Chapel Hill
C23F1/04B01L3/5085G01N11/16G01N29/022G01N33/4905B01L2300/0636B01L2300/0663B01L2300/0851B82Y15/00G01N2291/0255G01N2291/0256G01N2291/02827
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Quick Facts
Patent No.
US 9,238,869
App. No.
14/016,007
Granted
Jan 19, 2016
Kind
B2
Abstract

Methods, systems, and computer readable media for using actuated surface-attached posts for assessing biofluid rheology are disclosed. According to one aspect, a method for testing properties of a biofluid specimen includes placing the specimen onto a micropost array having a plurality of microposts extending outwards from a substrate, wherein each micropost includes a proximal end attached to the substrate and a distal end opposite the proximal end, and generating an actuation force in proximity to the micropost array to actuate the microposts, thereby compelling at least some of the microposts to exhibit motion. The method further includes measuring the motion of at least one of the microposts in response to the actuation force and determining a property of the specimen based on the measured motion of the at least one micropost.

Claims (12)

1. A method of fabricating a micropost array, comprising:

depositing, into at least some pores of a substrate having a plurality of pores, a magnetic material;

filling the plurality of pores with a curable material, such that the curable material interconnects the plurality of pores along at least one planar surface of the substrate, wherein the curable material is flexible when cured;

curing the curable material; and

removing the substrate to form the micropost array;

wherein depositing the magnetic material includes depositing the magnetic material only on the sidewalls of the pores for at least a portion of the depth of the pores.

2. The method of claim 1 wherein the deposited magnetic material is a single piece of ferromagnetic material.

3. The method of claim 1 wherein the at least some pores are created using a first mask to photolithographically develop a first pattern in a first layer of photoresist material coated on the substrate and etching the at least some pores in the substrate using the first pattern.

4. The method of claim 1 wherein depositing the magnetic material includes electrochemically depositing the magnetic material on the sidewalls of the pores for at least a portion of the depth of the pores.

5. The method of claim 1 wherein the deposited magnetic material forms a shell which lines the pores for at least a portion of the depth of the pores.

6. The method of claim 5 wherein the shell comprises a nickel shell.

7. The method of claim 1 wherein the plurality of pores are vertically-aligned.

Assignments (1)
CONFIRMATORY LICENSE Recorded May 20, 2016
From: UNIVERSITY OF NORTH CAROLINA, CHAPEL HILL
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 038770/0867 →
Continuity (4)
Division 13380564
Provisional Application 61220563 · Jun 25, 2009
Provisional Application 61234177 · Aug 14, 2009
Related Publication 20140001146A1 · Jan 2, 2014