IP Library Granted Patent US 11,275,048
Granted Patent B2
US 11,275,048 · App. 15/680,403 · Granted Mar 15, 2022

Micro-devices for disease detection

Inventors: Chris Chang Yu (Conneautville, PA); Xuedong Du (Shanghai, CN)
Assignee: AnPac Bio-Medical Science Co., Ltd.
G01N27/26B01L3/502G01N29/02G01N29/022G01N29/2437G01N2291/02466
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Quick Facts
Patent No.
US 11,275,048
App. No.
15/680,403
Granted
Mar 15, 2022
Kind
B2
Abstract

Among others, the present invention provides piezo-electric micro-devices for detecting at the microscopic level an electric, magnetic, electromagnetic, thermal, optical, acoustical, biological, chemical, physical, bio-chemical, bio-physical, physical-chemical, bio-physical-chemical, bio-mechanical, bio-electro-mechanical, electro-mechanical, or mechanical property of the biologic subject.

Claims (18)

1. A method for detecting a mechanical or electric property of a biological subject, comprising:

providing a piezo-electric micro-device comprising a substrate, a piezo-electric material forming a probe with a supporting point in the micro-device, an electronically conductive material, a material that is neither piezo-electric nor electronically conductive, wherein the piezo-electric material is placed between the electronically conductive material and the material that is neither piezo-electric nor electronically conductive, and at least part of the material that is neither piezo-electric nor electronically conductive is placed between the substrate and the piezo-electric material; wherein an end portion of the probe extends out from the supporting point and the end portion is substantially free and surrounded without contact, by the material that is neither piezo-electric nor electronically conductive; and wherein the micro-device further comprises a detector, and

contacting the piezo-electric micro-device with the biological subject to be detected, wherein the piezo-electric micro-device detects the mechanical, acoustical, or electric property of the biological subject upon contacting it and converts the mechanical, acoustical, or electric property to generate an electric or mechanical response, and transferring the electric, acoustical, or mechanical response thus generated through the electrically conductive material to a recording device or data analyzer,

wherein the detector is an acoustic signal receiver and capable of detecting an acoustic signal.

2. A method for detecting a mechanical or electric property of a biological subject, comprising:

providing a piezo-electric micro-device comprising a substrate, a piezo-electric material forming a probe with a supporting point in the micro-device, an electronically conductive material, a material that is neither piezo-electric nor electronically conductive, wherein the piezo-electric material is placed between the electronically conductive material and the material that is neither piezo-electric nor electronically conductive, and at least part of the material that is neither piezo-electric nor electronically conductive is placed between the substrate and the piezo-electric material; wherein an end portion of the probe extends out from the supporting point and the end portion is substantially free and surrounded without contact, by the material that is neither piezo-electric nor electronically conductive; and wherein the micro-device further comprises a detector, and

contacting the piezo-electric micro-device with the biological subject to be detected, wherein the piezo-electric micro-device detects the mechanical, acoustical, or electric property of the biological subject upon contacting it and converts the mechanical, acoustical, or electric property to generate an electric or mechanical response, and transferring the electric, acoustical, or mechanical response thus generated through the electrically conductive material to a recording device or data analyzer,

wherein the micro-device further comprises an additional probe that can be piezo-electric or non piezo-electric, and the method further comprising the following steps:

applying an input signal to the probe to generate an acoustic signal;

scanning the frequency range of the acoustic signal;

contacting the probe with the biological subject, thereby launching the acoustic signal to the biological subject and causing the biological subject to generate a response signal which is then detected by the detector;

recording the response signal detected by the detector as a function of the frequency of the acoustic signal launched by the probe;

optionally amplifying the recorded signal by the detector;

optionally amplifying the recorded signal by the detector using a lock-in amplifier;

optionally filtering out noise in the recorded signal by the detector unsynchronized to the input acoustic signal by the probe;

optionally analyzing the recorded signal; and

reaching a diagnosis conclusion.

3. The method of claim 2 , wherein the input signal is a pulsed or modulated acoustic signal; or the response signal is recorded for its resonant frequency or acoustic intensity, or frequency versus intensity spectrum of the biological system and its immediate surrounding.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2023
From: CHANGWEI SYSTEM TECHNOLOGY (SHANGHAI) CO., LTD.
To: NING KASAI TECHNOLOGY (SHANGHAI) CO., LTD.
Reel/Frame 065342/0832 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2022
From: ANPAC BIO-MEDICAL SCIENCE CO., LTD.
To: CHANGWEI SYSTEM TECHNOLOGY (SHANGHAI) CO., LTD.
Reel/Frame 060566/0714 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2017
From: YU, CHRIS C.; DU, XUEDONG
To: ANPAC BIO-MEDICAL SCIENCE CO., LTD.
Reel/Frame 043637/0314 →
Continuity (7)
Division 13883215
Continuation PCTUS2011042637 · Jun 30, 2011
Provisional Application 61498954 · Jun 20, 2011
Provisional Application 61467097 · Mar 24, 2011
Provisional Application 61430641 · Jan 7, 2011
Provisional Application 61389960 · Oct 5, 2010
Related Publication 20170370869A1 · Dec 28, 2017