IP Library Granted Patent US 10,495,629
Granted Patent B2
US 10,495,629 · App. 14/773,137 · Granted Dec 3, 2019

Bead mill and method of use

Inventors: Kenneth Alfano (Canton, MI); Michael Tarasev (Pinckney, MI); Steven Meines (Grandville, MI); Terrance Boyd (Jackson, MI); Aaron Kehrer (Ypsilanti, MI); Gene Parunak (Saline, MI)
Assignee: Blaze Medical Devices, Inc.
G01N33/49B01L3/508B02C19/06G01N3/08G01N21/17G01N2203/0087G01N2203/0089
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Quick Facts
Patent No.
US 10,495,629
App. No.
14/773,137
Granted
Dec 3, 2019
Kind
B2
Abstract

A bead mill and an associated bead-mill-based machine for testing mechanical fragility of red blood cells, employing a cartridge configured to contain a sample while cells get stressed via bead oscillation and, in the case of the fragility testing machine, also while lysis levels get detected, for presentation of fragility information.

Claims (24)

1. A machine configured for testing mechanical fragility of cells, the machine comprising:

a sample miller for moving a bead residing within a sample comprising erythrocytes within a stressing chamber, wherein the stressing chamber is configured to cause hemolysis in said sample;

a chamber pincher for reversibly compressing an optically transparent portion of said stressing chamber to a thickness suitable for an optical measurement to quantify said hemolysis;

means for positioning the bead away from the optically transparent portion of the chamber before the optically transparent portion of the chamber is compressed by the pincher;

an optical detector for said optical measurement to quantify said hemoloysis; and

a light source for said optical detector.

2. The machine of claim 1 , wherein said sample miller comprises a motor from which rotary motion is translatable into linear motion, such that said bead is movable by moving said stressing chamber.

3. The machine of claim 1 , wherein said sample miller employs a magnetic field.

4. The machine of claim 3 , wherein an electromagnet is provided by an audio transducer.

5. The machine of claim 1 , wherein said chamber pincher comprises a stepper motor drivable by firmware to bring a fiber optic to contact said optically transparent portion.

6. The machine of claim 1 , wherein said light source comprises one or more light-emitting diodes (LEDs).

7. The machine of claim 1 , wherein said thickness is a predetermined distance.

8. The machine of claim 1 , wherein multiple optical measurements can occur during the compressing, and said optical measurement to quantify said hemolysis is selected from among said multiple optical measurements, based upon signal attenuation or calculated sample optical density.

9. The machine of claim 1 , wherein separation of liquid and solid elements of said sample is not needed for said optical measurement to quantify said hemolysis and wherein the light source is configured to project light into and through the sample such that a portion of the light, having a wavelength of about 390-460 nm, is absorbed by a hemoglobin derivative in the sample and wherein the optical detector is configured to determine light absorption of the sample, within a wavelength of about 390-460 nm, to allow a determination of extent of hemolysis in the sample based on a relative proportion of a spectral peak that is unflattened.

10. The machine of claim 9 , wherein said portion of the light comprises light having a wavelength of 418 nm.

11. The machine of claim 9 , wherein another portion of the light comprises a wavelength of 576 nm.

12. The machine of claim 1 , wherein said stressing chamber is provided by a single-use disposable cartridge.

13. The machine of claim 1 , further comprising an electronic controller connecting said sample miller and said chamber pincher to a user-interface, said user-interface being either incorporated within or separate from the machine.

14. A machine configured for testing mechanical fragility of cells, the machine comprising:

a sample miller for moving a bead residing within a sample comprising erythrocytes within a stressing chamber, wherein the stressing chamber is configured to cause hemolysis in said sample;

a chamber pincher for reversibly compressing an optically transparent portion of said stressing chamber to a thickness suitable for an optical measurement to quantify said hemolysis;

a permanent magnet configured for positioning the bead away from the optically transparent portion of the chamber before the optically transparent portion of the chamber is compressed by the pincher;

an optical detector for said optical measurement to quantify said hemoloysis; and

a light source for said optical detector.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 3, 2019
From: ALFANO, KENNETH; TARASEV, MICHAEL; KEHRER, AARON; PARUNAK, GENE
To: BLAZE MEDICAL DEVICES,INC.
Reel/Frame 049341/0193 →
CHANGE OF NAME Recorded Jun 11, 2018
From: BLAZE MEDICAL DEVICES, LLC
To: BLAZE MEDICAL DEVICES,INC.
Reel/Frame 046331/0130 →
Continuity (2)
Provisional Application 61773790 · Mar 6, 2013
Related Publication 20160011171A1 · Jan 14, 2016