Patents by Inventor Robert E. Fischell

Robert E. Fischell 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: 9965596
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Grant
    Filed: August 15, 2017
    Date of Patent: May 8, 2018
    Assignee: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Patent number: 9849302
    Abstract: A magnetic coil system for the treatment of foot pain which has an electrical pulse generator sequentially connected to three separate magnetic coils that have been placed around that patient's foot. The magnetic coil system consisting of one bottom coil, one coil on top of the foot and a third coil that is situated around the back of the foot and the bottom of the ankle. The three coils being separately and sequentially activated by the electrical pulse generator. The treatment of plantar fasciitis being accomplished by the activation of a series of intense magnetic pulsations using only the bottom coil.
    Type: Grant
    Filed: December 14, 2016
    Date of Patent: December 26, 2017
    Assignee: Zygood, LLC
    Inventors: Susan R. Fischell, Robert E. Fischell
  • Publication number: 20170344725
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Application
    Filed: August 15, 2017
    Publication date: November 30, 2017
    Applicant: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Patent number: 9811638
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Grant
    Filed: October 3, 2016
    Date of Patent: November 7, 2017
    Assignee: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Publication number: 20170304594
    Abstract: An intravascular catheter for peri-vascular and/or peri-urethral tissue ablation includes multiple needles advanced through supported guide tubes which expand around a central axis to engage the interior surface of the wall of the renal artery or other vessel of a human body allowing the injection an ablative fluid for ablating tissue, and/or nerve fibers in the outer layer or deep to the outer layer of the vessel, or in prostatic tissue. The system may also include a means to limit and/or adjust the depth of penetration of the ablative fluid into and beyond the tissue of the vessel wall. The catheter may also include structures which provide radial and/or lateral support to the guide tubes so that the guide tubes expand uniformly and maintain their position against the interior surface of the vessel wall as the sharpened injection needles are advanced to penetrate into the vessel wall.
    Type: Application
    Filed: December 19, 2016
    Publication date: October 26, 2017
    Inventors: David R. Fischell, Tim A. Fischell, Robert Ryan Ragland, Darrin James Kent, Andy Edward Denison, Eric Thomas Johnson, Jeff Alan Burke, Christopher Scott Hayden, Robert E. Fischell
  • Patent number: 9773096
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Grant
    Filed: January 11, 2017
    Date of Patent: September 26, 2017
    Assignee: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Patent number: 9724533
    Abstract: A transcranial magnetic stimulation (TMS) device has at least one capacitor. A charging circuit charges the capacitor. The TMS device includes a magnetic coil for delivering magnetic pulses to a person's body. A bleed resistor is within the TMS device to minimize forces applied to the bleed resistor where the bleed resistor is aligned with magnetic field lines generated by the magnetic pulses.
    Type: Grant
    Filed: November 9, 2016
    Date of Patent: August 8, 2017
    Assignee: Eneura, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Leopold Rolih, Michael Graves, Joseph P. Fredrick, Stanley P. Woods, Richard Barthel
  • Patent number: 9675815
    Abstract: A transcranial magnetic stimulation (TMS) device for the treatment of migraine headaches which includes at least one capacitor as well as a charging circuit for charging the capacitor contained in the TMS device. A magnetic coil delivers a magnetic pulse upon discharge of the capacitor. Inner and outer end wire segments of the magnetic coil are oriented parallel to a direction of magnetic field lines of the magnetic pulse.
    Type: Grant
    Filed: November 9, 2016
    Date of Patent: June 13, 2017
    Assignee: Eneura, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Leopold Rolih, Michael Graves, Joseph P. Fredrick, Stanley P. Woods, Richard Barthel
  • Publication number: 20170124286
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Application
    Filed: January 11, 2017
    Publication date: May 4, 2017
    Applicant: Aseko, Inc.
    Inventors: Robert C Booth, Robert E. Fischell
  • Publication number: 20170119565
    Abstract: A stent delivery catheter including a catheter tubing defining a lumen therethrough, a balloon disposed near a distal end of the catheter tubing and moving between deflated and inflated states, and proximal and distal balloon control bands concentrically arranged around respective proximal and distal end portions of the balloon. The proximal balloon control band has a proximal end located proximally of a proximal end of the balloon and a distal end located adjacent a proximal end of a received unexpanded stent. The distal balloon control band has a proximal end located adjacent a distal end of the received unexpanded stent and a distal end located distally of a distal end of the balloon. The balloon control bands each have a diametric cross-section larger than the balloon in an uninflated state and the unexpanded stent received over the balloon to impede axial movement of the unexpanded stent off of the balloon.
    Type: Application
    Filed: January 17, 2017
    Publication date: May 4, 2017
    Applicant: Svelte Medical Systems, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Fernando DiCaprio
  • Patent number: 9585781
    Abstract: A stent delivery catheter including a catheter tubing defining a lumen therethrough, a balloon disposed near a distal end of the catheter tubing and moving between deflated and inflated states, and proximal and distal balloon control bands concentrically arranged around respective proximal and distal end portions of the balloon. The proximal balloon control band has a proximal end located proximally of a proximal end of the balloon and a distal end located adjacent a proximal end of a received unexpanded stent. The distal balloon control band has a proximal end located adjacent a distal end of the received unexpanded stent and a distal end located distally of a distal end of the balloon. The balloon control bands each have a diametric cross-section larger than the balloon in an uninflated state and the unexpanded stent received over the balloon to impede axial movement of the unexpanded stent off of the balloon.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: March 7, 2017
    Assignee: Svelte Medical Systems, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Fernando DiCaprio
  • Patent number: 9566183
    Abstract: A nasal strip for opening nasal passageways having an external portion formed from a plastic material that extends throughout the length of the nasal strip. The external portion has a central section and opposing end sections with the central section having the same or a smaller width as compared to the nasal strip width at each end section. An adhesive coating covers each of the end sections and the central section does not have an adhesive coating. A non-adhesive tab extending from either or both end sections provides a novel means for the easy removal of the nasal strip from the user's nose.
    Type: Grant
    Filed: July 21, 2016
    Date of Patent: February 14, 2017
    Inventor: Robert E. Fischell
  • Patent number: 9561384
    Abstract: A Transcranial Magnetic Stimulator (TMS) is used by a patient to treat a variety of human disorders including migraine headaches. The device has an electronic device to charge a capacitor to a high voltage which creates a high current in a magnetic coil which produces an intense magnetic pulse applied to the patient's head for treatment of migraine headaches or to other patient body parts to treat other disorders. The TMS has a geometric shape where each one of the patient's thumbs passes through a hole formed into the cover of the TMS and as many as the four fingers of each hand may be placed into a groove in the cover to accommodate the patients fingers and provide a secure holding mechanism.
    Type: Grant
    Filed: January 7, 2014
    Date of Patent: February 7, 2017
    Assignee: Eneurak, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Joseph P. Fredrick, Stanley P. Woods
  • Patent number: 9554849
    Abstract: An intravascular catheter for peri-vascular and/or peri-urethral tissue ablation includes multiple needles advanced through supported guide tubes which expand around a central axis to engage the interior surface of the wall of the renal artery or other vessel of a human body allowing the injection an ablative fluid for ablating tissue, and/or nerve fibers in the outer layer or deep to the outer layer of the vessel. A method of treating hypertension involves injecting an ablative fluid such as ethanol deep into zones in the wall of the renal artery such that the zones of fluid merge to form a circumferential ablation ring at a depth which ablates sympathetic nerves while minimizing injury to interior layers of the vessel wall.
    Type: Grant
    Filed: May 14, 2015
    Date of Patent: January 31, 2017
    Assignee: Ablative Solutions, Inc.
    Inventors: David R. Fischell, Tim A. Fischell, Robert Ryan Ragland, Darrin James Kent, Andy Edward Denison, Eric Thomas Johnson, Jeff Alan Burke, Christopher Scott Hayden, Robert E. Fischell
  • Publication number: 20170024543
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Application
    Filed: October 3, 2016
    Publication date: January 26, 2017
    Applicant: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Patent number: 9550067
    Abstract: A shoe-shaped magnetic coil system for the treatment of foot pain which has an electrical pulse generator and a magnetic coil system connected to the electrical pulse generator. The magnetic coil system is in the general shape of a shoe with the electric current pulses flowing through magnetic coils of the magnetic coil system being capable of creation of intense magnetic pulses within a patient's foot and ankle. The coil of wire is formed of coil sections having a smallest area in the region of the patient's toes with a generally increasing area of the coil sections as the ankle region is approached.
    Type: Grant
    Filed: October 23, 2015
    Date of Patent: January 24, 2017
    Assignee: Zygood, LLC
    Inventors: Susan R. Fischell, Robert E. Fischell
  • Patent number: 9526827
    Abstract: An intravascular catheter for peri-vascular or peri-urethral tissue ablation includes multiple needles advanced through supported guide tubes which expand around a central axis to engage the interior surface of the wall of the renal artery or other vessel of a human body allowing the injection an ablative fluid for ablating tissue, such as nerve fibers in the outer layer or deep to the outer layer of the vessel, or in prostatic tissue. The system may also include a controls the depth of penetration of the ablative fluid into and beyond the tissue of the vessel wall. The catheter may also include structures which provide radial and/or lateral support to the guide tubes so that the guide tubes expand uniformly and maintain their position against the interior surface of the vessel wall as the sharpened injection needles are advanced to penetrate into the vessel wall.
    Type: Grant
    Filed: April 30, 2014
    Date of Patent: December 27, 2016
    Assignee: Ablative Solutions, Inc.
    Inventors: David R. Fischell, Tim A. Fischell, Robert Ryan Ragland, Darrin James Kent, Andy Edward Denison, Eric Thomas Johnson, Jeff Alan Burke, Christopher Scott Hayden, Robert E. Fischell
  • Patent number: 9526912
    Abstract: A transcranial magnetic stimulation device for the treatment of neurological disorders includes a capacitor and a charging current for charging the capacitor, a magnetic coil delivers a magnetic pulse when the capacitor is discharged through the coil. The magnetic coil has two or more turns which are encapsulated with a plastic material composition for preventing motion between adjacent turns of the coil.
    Type: Grant
    Filed: May 13, 2014
    Date of Patent: December 27, 2016
    Assignee: Eneura, Inc.
    Inventors: Robert E. Fischell, David R. Fischell, Stanley P. Woods, Joseph Paul Fredrick
  • Patent number: 9483619
    Abstract: A glycemic control system includes a physician processor, remote processor, and a portable telephone having a data input mechanism, a display, and an internal processor for bi-directional communication with the physician's processor and the remote processor. A patient inputs data to the internal processor responsive to input from the physician's processor and then transmits the information to the remote processor where an optimized number of units to be administered is sent back and displayed on the portable telephone.
    Type: Grant
    Filed: September 22, 2015
    Date of Patent: November 1, 2016
    Assignee: Aseko, Inc.
    Inventors: Robert C. Booth, Robert E. Fischell
  • Patent number: 9468383
    Abstract: A system for detecting acute ischemia includes at least two sensors configured for obtaining electrical signals from a patient's heart, analog-to-digital converter circuitry for digitizing the signal to produce data segments, and a processor configured to analyze data segments to determine if they represent an abnormal heart rhythm. Certain types of abnormal rhythm segments are also checked for acute ischemia. If enough of the abnormal heart rhythm segments manifest acute ischemia, a first type of alarm event is generated. If persistent abnormal heart rhythm segments do not manifest acute ischemia, a second type of alarm event is generated.
    Type: Grant
    Filed: June 25, 2015
    Date of Patent: October 18, 2016
    Assignee: Angel Medical Systems, Inc.
    Inventors: David R. Fischell, Tim A. Fischell, Jonathan Harwood, Robert E. Fischell