Patents by Inventor Stephanie S. Diehl

Stephanie S. Diehl has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10946159
    Abstract: A system selectively delivers either breath-synchronized, flow-targeted ventilation (BSFTV) or closed-system positive pressure ventilation (CSPPV) to augment respiration of a patient with a standard tracheal tube. A removable adaptor has a cap that can be removably attached to the proximal connector of the tracheal tube in BSFTV mode, and an inner cannula that extends within the tracheal tube to effectively divide it into two lumens. The adaptor includes a ventilator connector for removably engaging a ventilator hose to deliver air/oxygen through the adaptor and one lumen of the tracheal tube with a flow rate varying over each respiratory cycle in a predetermined waveform synchronized with the patient's respiratory cycle to augment the patient's spontaneous respiration. The adaptor also includes a port allowing the spontaneously-breathing patient to freely inhale and exhale in open exchange with the atmosphere through the other lumen.
    Type: Grant
    Filed: January 25, 2017
    Date of Patent: March 16, 2021
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20170128692
    Abstract: A system selectively delivers either breath-synchronized, flow-targeted ventilation (BSFTV) or closed-system positive pressure ventilation (CSPPV) to augment respiration of a patient with a standard tracheal tube. A removable adaptor has a cap that can be removably attached to the proximal connector of the tracheal tube in BSFTV mode, and an inner cannula that extends within the tracheal tube to effectively divide it into two lumens. The adaptor includes a ventilator connector for removably engaging a ventilator hose to deliver air/oxygen through the adaptor and one lumen of the tracheal tube with a flow rate varying over each respiratory cycle in a predetermined waveform synchronized with the patient's respiratory cycle to augment the patient's spontaneous respiration. The adaptor also includes a port allowing the spontaneously-breathing patient to freely inhale and exhale in open exchange with the atmosphere through the other lumen.
    Type: Application
    Filed: January 25, 2017
    Publication date: May 11, 2017
    Applicant: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: 9586018
    Abstract: A system selectively delivers either breath-synchronized, flow-targeted ventilation (BSFTV) or closed-system positive pressure ventilation (CSPPV) to augment respiration of a patient with a standard tracheal tube. A removable adaptor has a cap that can be removably attached to the proximal connector of the tracheal tube in BSFTV mode, and an inner cannula that extends within the tracheal tube to effectively divide it into two lumens. The adaptor includes a ventilator connector for removably engaging a ventilator hose to deliver air/oxygen through the adaptor and one lumen of the tracheal tube with a flow rate varying over each respiratory cycle in a predetermined waveform synchronized with the patient's respiratory cycle to augment the patient's spontaneous respiration. The adaptor also includes a port allowing the spontaneously-breathing patient to freely inhale and exhale in open exchange with the atmosphere through the other lumen.
    Type: Grant
    Filed: May 2, 2014
    Date of Patent: March 7, 2017
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: 9295795
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Grant
    Filed: February 4, 2014
    Date of Patent: March 29, 2016
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20140238398
    Abstract: A system selectively delivers either breath-synchronized, flow-targeted ventilation (BSFTV) or closed-system positive pressure ventilation (CSPPV) to augment respiration of a patient with a standard tracheal tube. A removable adaptor has a cap that can be removably attached to the proximal connector of the tracheal tube in BSFTV mode, and an inner cannula that extends within the tracheal tube to effectively divide it into two lumens. The adaptor includes a ventilator connector for removably engaging a ventilator hose to deliver air/oxygen through the adaptor and one lumen of the tracheal tube with a flow rate varying over each respiratory cycle in a predetermined waveform synchronized with the patient's respiratory cycle to augment the patient's spontaneous respiration. The adaptor also includes a port allowing the spontaneously-breathing patient to freely inhale and exhale in open exchange with the atmosphere through the other lumen.
    Type: Application
    Filed: May 2, 2014
    Publication date: August 28, 2014
    Applicant: CS MEDICAL, INC.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20140150792
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Application
    Filed: February 4, 2014
    Publication date: June 5, 2014
    Applicant: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: 8651105
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Grant
    Filed: July 25, 2011
    Date of Patent: February 18, 2014
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20110277765
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Application
    Filed: July 25, 2011
    Publication date: November 17, 2011
    Applicant: CS MEDICAL, INC.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: 8020558
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Grant
    Filed: January 26, 2007
    Date of Patent: September 20, 2011
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: 8015974
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Grant
    Filed: January 29, 2008
    Date of Patent: September 13, 2011
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20080178880
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Application
    Filed: January 26, 2007
    Publication date: July 31, 2008
    Applicant: CS MEDICAL, INC.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Publication number: 20080178882
    Abstract: An open system provides breath-synchronized, flow-targeted ventilation to augment respiration by a self-breathing patient. A sensor detects a physical property of a patient's respiratory cycle. A processor monitors the sensor and controls a gas source to deliver oxygen-containing gas through a tube extending into the patient's airway with the flow rate varying over each respiratory cycle in a predetermined non-constant waveform synchronized with the respiratory cycle to augment the patient's spontaneous respiration. Gas is delivered at a flow rate sufficient to significantly mitigate the airway pressure the patient must generate during spontaneous breathing and thereby reduce the patient's work of breathing.
    Type: Application
    Filed: January 29, 2008
    Publication date: July 31, 2008
    Applicant: CS MEDICAL, INC.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: D558339
    Type: Grant
    Filed: September 9, 2006
    Date of Patent: December 25, 2007
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl
  • Patent number: D581033
    Type: Grant
    Filed: September 9, 2006
    Date of Patent: November 18, 2008
    Assignee: CS Medical, Inc.
    Inventors: Kent L. Christopher, Stephanie S. Diehl