IP Library Granted Patent US 10,231,641
Granted Patent B2
US 10,231,641 · App. 14/370,777 · Granted Mar 19, 2019

Electromagnetic (EM) probes, methods of using such EM probes and systems which use such electromagnetic EM probes

Inventors: Amir Saroka (Tel-Aviv, IL); Leonid Voshin (Kfar-Saba, IL); Yiftach Barash (Tel-Aviv, IL); Benyamin Almog (Kibbutz Givat Brenner, IL); Tal Levi (Tel-Aviv, IL)
Assignee: Sensible Medical Innovations Ltd.
A61B5/05A61B5/0507H01Q9/27H01Q1/36H01Q17/00Y10T29/49016
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Quick Facts
Patent No.
US 10,231,641
App. No.
14/370,777
Granted
Mar 19, 2019
Kind
B2
Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer ( 92 ) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions ( 93 A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighbouring concentric frame shaped regions.

Claims (24)

1. An electromagnetic (EM) probe for monitoring at least one biological tissue, comprising:

a spiral antenna having at least one spiral arm with a spiral path originated from a feeding point; and

a single EM radiation absorbing layer mounted along a plurality of turnings of said at least one spiral arm of the antenna, said single EM radiation absorbing layer having:

a fixed thickness of absorbing material between a plurality of gaps wherein the absorbing material is not present; and

wherein said single EM radiation absorbing layer is formed such that a spiral propagation path of said at least one spiral arm passes via said plurality of gaps, each of the plurality of gaps having a length of less than 0.25 lambda;

wherein the single EM radiation absorbing layer is disposed in a plurality of concentric regions corresponding to portions of said spiral antenna having equal surface of antenna conductor;

wherein any of said plurality of concentric regions has an EM radiation absorption coefficient greater than any other of said plurality of concentric regions it encloses;

wherein an amount of the absorbing material disposed in each of said plurality of concentric regions gradually increases as a function of a distance of each of said plurality of concentric regions from said feeding point.

2. The EM probe of claim 1 , wherein the spiral antenna is a wideband antenna.

3. The EM probe of claim 1 , wherein the EM radiation absorbing layer is mounted in a common plane with a conductive element of the antenna.

4. The EM probe of claim 1 , wherein the EM radiation absorbing layer is positioned to suppress EM currents.

5. The EM probe of claim 1 , wherein said plurality of concentric regions frame a shape having no EM radiation absorbing layer.

6. The EM probe of claim 1 , wherein at least one of density and concentration of the absorbing material in said plurality of concentric regions decreases from an outer periphery of said EM radiation absorbing layer to a central point of said EM radiation absorbing layer.

7. The EM probe of claim 6 , wherein said central point coincides with a boresight of said antenna.

8. The EM probe of claim 6 , wherein said central point coincides with said feeding point of said antenna.

9. The EM probe of claim 6 , wherein said central point coincides with a geometric center of said antenna.

10. The EM probe of claim 1 , wherein the EM radiation absorbing layer is parallel to a surface of the EM antenna.

11. The EM probe of claim 10 wherein one concentric region of said plurality of concentric regions has a star shaped cutout; wherein a geometric center of the star shaped cutout coincides with a boresight of said spiral antenna.

12. A method of producing an electromagnetic (EM) probe for monitoring at least one biological tissue, comprising:

providing a spiral antenna having a feeding point and at least one conductive arm; and applying a layer of an EM absorbing material over a plurality of turnings of said spiral arm of said antenna, the layer is applied in a plurality of concentric regions corresponding to portions of said spiral antenna having equal surface area of the at least one conductive arm, each of said plurality of concentric regions having EM radiation absorption coefficient greater than any other of said concentric regions it encloses;

said layer having:

a fixed thickness of absorbing material between a plurality of gaps wherein the absorbing material is not present;

wherein the plurality of concentric regions are formed such that a spiral propagation path of said spiral arm passes via the plurality of gaps, each of the plurality of gaps having a length of less than 0.25 lambda;

wherein the amount of the absorbing material in each of said plurality of concentric regions gradually increases as a function of a distance of each of said concentric regions from said feeding point.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Feb 9, 2026
From: KREOS CAPITAL V (EX PERT FUND) L.P.
To: SENSIBLE MEDICAL IN NOVATIONS LTD.
Reel/Frame 074718/0576 →
RELEASE OF SECURITY INTEREST Recorded Nov 23, 2025
From: KREOS CAPITAL V (EXPERT FUND) L.P.
To: SENSIBLE MEDICAL INNOVATIONS LTD.
Reel/Frame 073767/0088 →
SECURITY INTEREST Recorded Sep 6, 2017
From: SENSIBLE MEDICAL INNOVATIONS LTD.
To: KREOS CAPITAL V (EXPERT FUND) L.P.
Reel/Frame 043492/0939 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2014
From: SAROKA, AMIR; VOSHIN, LEONID; BARASH, YIFTACH; ALMOG, BENYAMIN; LEVI, TAL
To: SENSIBLE MEDICAL INNOVATIONS LTD.
Reel/Frame 033255/0516 →
Continuity (2)
Provisional Application 61583210 · Jan 5, 2012
Related Publication 20140378813A1 · Dec 25, 2014