U.S. patents available from 1976 to present.
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Ambulatory reflux monitoring system

Patent 5833625 Issued on November 10, 1998. Estimated Expiration Date: Icon_subject December 19, 2015. Estimated Expiration Date is calculated based on simple USPTO term provisions. It does not account for terminal disclaimers, term adjustments, failure to pay maintenance fees, or other factors which might affect the term of a patent.

Patent References

2162656

2168867

2857915

3373735

3480003

3669095

3690309

3817241

3905889

3923626

More ...

Inventor

Assignee

Application

No. 574917 filed on 12/19/1995

US Classes:

600/547, Measuring electrical impedance or conductance of body portion600/593Esophagus, stomach, or lower alimentary canal

Examiners

Primary: Hindenburg, Max

Attorney, Agent or Firm

Foreign Patent References

  • 0073558 EP. 03/13/1983
  • 0080680 EP. 06/13/1983
  • 0241644 EP. 10/13/1987
  • 0356603 EP. 11/13/1993
  • 79-09689 FR. 11/13/1980
  • 2162656 DE. 06/13/1973
  • 3140265 DE. 04/13/1983
  • 221635 DE. 05/13/1985
  • 3523987 DE. 01/13/1987
  • 7707275 NL. 01/13/1979
  • 178028 SU. 11/13/1966
  • 272477 SU. 05/13/1968
  • 1502004 SU. 08/13/1989

International Class

A61B 005/05

Abstract

An ambulatory system for recording and analyzing gastroesophageal reflux is presented. The system includes a digital recorder, an analysis software package and a catheter for measurement of changes in esophageal impedance. For the first time, gastroesophageal reflux can be detected with a pH above 4 (called alkaline reflux), which is the normal pH environment of the healthy esophagus. In addition, one embodiment of the invention allows for the determination of the direction of flow of the detected material in the esophagus, thus enabling the system to distinguish between swallowed saliva and alkaline gastroesophageal reflux. In yet a further embodiment, the present invention allows for recording and analysis of reflux on a non-invasive basis, by using pairs of externally worn impedance sensors. In another embodiment, the invention measures impedance simultaneously with other bio-parameters, such as pH or pressure.

Other References

  • "Clinical relevance of ambulatory 24-hour . . . ", Vogten, et al., 1987, pp. 21-31 in Netherlands Journal of Medicine
  • Computerized Axial Manometry of the Esophagus, Bombeck, et al. in Annals of Surgery, vol. 206, No. 4, pp. 465-472, Oct. 1987
  • "The laser motility sensor for long-term study of intraesophageal pressure", Schneider et al., in Primary Motility Disorder of the Esophagus, Giuli et al., eds., pp. 64-69 1991
  • Kim et al., American Journal of Clinical Pathology, 1990, vol. 94, , pp. 187-191, The Gastric Juice Urea and Ammonia . . .
  • Butcher et al., Digestion, 1992, vol. 53, pp. 142-148, Use of an Ammonia Electrode for Rapid Quantification of Helicobacter pylori Urease: Its use in the Endoscopy Room and in the . . .
  • The New Yorker, Sep. 20, 1993, T. Monmaney, "Marhsall's Hunch"
  • "Oesophageal multipurpose monitoring probe", Baker et al., Anaesthesia, 1983, vol. 38, pp. 892-897
  • Digestive Diseases, Reprint, vol. 8, Suppl. 1, pp. 60-70, 1990, Scarpignato et al., "Simultaneous Measurement and Recording . . . "
  • Hojgaard et al., "A New Method for Measurement of the Electrical Potential Difference Across the Stomach Wall", 1991. pp. 847-858
  • "Ambulatory Monitoring of Gastric Emptying", Hoeft et al., 1993, American Assoc. of the Study of Live Diseases
  • J. Silny et al., "Novel Procedure to Study Bolus Movement by Intraluminal Electrical Impedance Measurements," prior to Apr. 20, 1994, pp. 197-208
  • J. Silny et al., "Verification of the intraluminal multiple electrical impedance measurement for the recording of gastrointestinal motility," J. Gastrointest. Mot., Jun. 1993, vol. 5, pp. 107-12
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