IP Library Granted Patent US 11,207,173
Granted Patent B2
US 11,207,173 · App. 16/561,077 · Granted Dec 28, 2021

Adaptive lower esophagus sphincter augmentation

Inventor: Lucian Popescu (Houston, TX)
A61F2/04A61F2/08A61F2/482A61F2002/044A61F2002/0894A61F2210/009A61F2250/0001A61F2250/0002
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Quick Facts
Patent No.
US 11,207,173
App. No.
16/561,077
Granted
Dec 28, 2021
Kind
B2
Abstract

Apparatus consisting of a plurality of mechanically connected magnetic elements implanted around the lower esophagus sphincter with the purpose to restore its normal function in patients suffering from gastro-esophageal reflux disease (GERD), while avoiding dysphagia.

Claims (11)

1. Apparatus for restoring the lower esophagus sphincter's (LES) normal function in human patients suffering from gastro-esophageal reflux disease comprising:

a magnetic assembly of alternating permanent magnet elements and electromagnet elements including thermal sensors, implanted around the LES in a ring configuration;

a control and power unit implanted under the skin in the abdominal area comprising a rechargeable battery and connected electrically to the electromagnet elements of the magnetic assembly;

an implanted food bolus' detection sensor, attached to the esophagus in the thoracic cavity, above the LES, connected electrically to the control and power unit;

an external display and charger station.

2. Method of transferring electric energy from control and power unit to the electromagnet elements of the magnetic assembly defined in claim 1 , when food bolus approaching the LES is sensed by the food bolus' detection sensor defined in claim 1 .

3. Method to temporary disable the transfer of electric energy from control and power unit to the electromagnet elements of the magnetic assembly defined in claim 1 , if said electromagnet elements temperature increases above a threshold value.

4. Method to mechanically attach the permanent magnet elements to the electromagnet elements to allow the magnetic assembly defined in claim 1 to reliably expand when said electromagnet elements are briefly electrically energized by the control and power unit defined in claim 1 , and to reliably contract when said electromagnet elements are not electrically energized by the said control and power unit.

5. Method of wirelessly charging the rechargeable battery included in the control and power unit defined in claim 1 by using the external display and charging station defined in claim 1 .

6. Method of wirelessly communicating messages to patient, from the control and power unit defined in claim 1 by means of the display and charging station defined in claim 1 .

7. Method of wirelessly communicating messages to the patient, from the control and power unit defined in claim 1 by means of a dedicated software application's mobile smartphone.

Continuity (2)
Provisional Application 62729984 · Sep 11, 2018
Related Publication 20200078158A1 · Mar 12, 2020
Cited By (10)
US 12,213,675 US 12,213,678 US 12,310,593 US 12,521,119 US 12,558,098 US 12,564,406 US 12,575,832 US 12,582,402 US 12,642,531 US 12,697,122