Patents by Inventor William S. Peters
William S. Peters 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).
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Patent number: 9042979Abstract: The various embodiments disclosed herein relate to combination heart assist systems, methods, and devices that include both an electrical therapy device and a mechanical heart assist device. Various operational modes can be implemented using these embodiments, including a synchronized pacing mode, an internal CPR mode, and an internal workout mode.Type: GrantFiled: January 29, 2014Date of Patent: May 26, 2015Assignee: Sunshine Heart Company Pty LimitedInventors: William S. Peters, Rodney G. Parkin, David Rosa, Daniel M. Lafontaine, William T. Abraham, Benjamin Sun
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Publication number: 20140148639Abstract: The various embodiments disclosed herein relate to combination heart assist systems, methods, and devices that include both an electrical therapy device and a mechanical heart assist device. Various operational modes can be implemented using these embodiments, including a synchronized pacing mode, an internal CPR mode, and an internal workout mode.Type: ApplicationFiled: January 29, 2014Publication date: May 29, 2014Applicant: Sunshine Heart Company PTY LTDInventors: William S. Peters, Rodney G. Parkin, David Rosa, Daniel M. Lafontaine, William T. Abraham, Benjamin Sun
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Patent number: 7967833Abstract: The invention provides devices and methods for performing closed-chest surgical intervention within an internal cavity of a patient's heart or great vessel. A scope extending through a percutaneous intercostal penetration in the patient's chest is used to view an internal portion of the patient's chest. An internal penetration is formed in a wall of the heart or great vessel using cutting means introduced through a percutaneous penetration in an intercostal space in the patient's chest. An interventional tool is inserted through the internal penetration to perform a surgical procedure under visualization using the scope. A cutting tool is introduced into the patient's left atrium from a right portion of the patient's chest to remove the patient's mitral valve. A replacement valve is then introduced through an intercostal space in the right portion of the chest and through the internal penetration in the heart, and the replacement valve is attached in the mitral valve position.Type: GrantFiled: September 15, 2004Date of Patent: June 28, 2011Assignee: Edwards Lifesciences LLCInventors: Wesley D. Sterman, Michi E. Garrison, Hanson S. Gifford, III, John H. Stevens, William S. Peters
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Patent number: 7131447Abstract: A method for closed-chest cardiac surgical intervention relies on viewing the cardiac region through a thoracoscope or other viewing scope and endovascularly partitioning the patient's arterial system at a location within the ascending aorta The cardiopulmonary bypass and cardioplegia can be induced, and a variety of surgical procedures performed on the stopped heart using percutaneously introduced tools. The method of the present invention will be particularly suitable for forming coronary artery bypass grafts, where an arterial blood source is created using least invasive surgical techniques, and the arterial source is connected to a target location within a coronary artery while the patient is under cardiopulmonary bypass and cardioplegia.Type: GrantFiled: April 26, 2004Date of Patent: November 7, 2006Assignee: Heartport, Inc.Inventors: Wesley D. Sterman, Lawrence C. Siegel, Patricia E. Curtis, John H. Stevens, William S. Peters, Timothy R. Machold
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Patent number: 7100614Abstract: Devices, systems, and methods are provided for accessing the interior of the heart and performing procedures therein while the heart is beating. In one embodiment, a tubular access device having an inner lumen is provided for positioning through a penetration in a muscular wall of the heart, the access device having a means for sealing within the penetration to inhibit leakage of blood through the penetration. The sealing means may comprise a balloon or flange on the access device, or a suture placed in the heart wall to gather the heart tissue against the access device. An obturator is removably positionable in the inner lumen of the access device, the obturator having a cutting means at its distal end for penetrating the muscular wall of the heart. The access device is preferably positioned through an intercostal space and through the muscular wall of the heart.Type: GrantFiled: March 15, 2002Date of Patent: September 5, 2006Assignee: Heartport, Inc.Inventors: John H. Stevens, Bruce A. Reitz, Alex T. Roth, William S. Peters, Hanson S. Gifford
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Patent number: 7028692Abstract: A method for closed-chest cardiac surgical intervention relies on viewing the cardiac region through a thoracoscope or other viewing scope and endovascularly partitioning the patient's arterial system at a location within the ascending aorta. The cardiopulmonary bypass and cardioplegia can be induced, and a variety of surgical procedures performed on the stopped heart using percutaneously introduced tools. The method of the present invention will be particularly suitable for forming coronary artery bypass grafts, where an arterial blood source is created using least invasive surgical techniques, and the arterial source is connected to a target location within a coronary artery while the patient is under cardiopulmonary bypass and cardioplegia.Type: GrantFiled: September 19, 2001Date of Patent: April 18, 2006Assignee: Heartport, Inc.Inventors: Wesley D. Sterman, Lawrence C. Siegel, Patricia E. Curtis, John H. Stevens, William S. Peters, Timothy R. Machold
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Patent number: 7017581Abstract: Surgical methods and instruments are disclosed for performing port-access or closed-chest coronary artery bypass (CABG) surgery in multivessel coronary artery disease. In contrast to standard open-chest CABG surgery, which requires a median sternotomy or other gross thoracotomy to expose the patient's heart, port-access CABG surgery is performed through small incisions or access ports made through the intercostal spaces between the patient's ribs, resulting in greatly reduced pain and morbidity to the patient. In situ arterial bypass grafts, such as the internal mammary arteries and/or the right gastroepiploic artery, are prepared for grafting by thoracoscopic or laparoscopic takedown techniques. Free grafts, such as a saphenous vein graft or a free arterial graft, can be used to augment the in situ arterial grafts. The graft vessels are anastomosed to the coronary arteries under direct visualization through a cardioscopic microscope inserted through an intercostal access port.Type: GrantFiled: October 19, 2001Date of Patent: March 28, 2006Inventors: Stephen W. Boyd, Alan R. Rapacki, Matthias Vaska, Brian S. Donlon, William S. Peters
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Patent number: 6955175Abstract: Devices, systems, and methods are provided for accessing the interior of the heart and performing procedures therein while the heart is beating. In one embodiment, a tubular access device having an inner lumen is provided for positioning through a penetration in a muscular wall of the heart, the access device having a means for sealing within the penetration to inhibit leakage of blood through the penetration. The sealing means may comprise a balloon or flange on the access device, or a suture placed in the heart wall to gather the heart tissue against the access device. An obturator is removably positionable in the inner lumen of the access device, the obturator having a cutting means at its distal end for penetrating the muscular wall of the heart. The access device is preferably positioned through an intercostal space and through the muscular wall of the heart.Type: GrantFiled: May 1, 2003Date of Patent: October 18, 2005Inventors: John H. Stevens, Bruce A. Reitz, Alex T. Roth, William S. Peters, Hanson S. Gifford
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Patent number: 6913600Abstract: Devices and methods are provided for temporarily inducing cardioplegic arrest in the heart of a patient and for establishing cardiopulmonary bypass in order to facilitate surgical procedures on the heart and its related blood vessels. Specifically, a catheter based system is provided for isolating the heart and coronary blood vessels of a patient from the remainder of the arterial system and for infusing a cardioplegic agent into the patient's coronary arteries to induce cardioplegic arrest in the heart. The system includes an endoaortic partitioning catheter having an expandable balloon at its distal end which is expanded within the ascending aorta to occlude the aortic lumen between the coronary ostia and the brachiocephalic artery. Means for centering the catheter tip within the ascending aorta include specially curved shaft configurations, eccentric or shaped occlusion balloons and a steerable catheter tip, which may be used separately or in combination.Type: GrantFiled: September 25, 1998Date of Patent: July 5, 2005Assignee: Heartport, Inc.Inventors: Kirsten L. Valley, David W. Snow, Timothy C. Corvi, Brian S. Donlon, Stephen W. Boyd, Sylvia W. Fan, Alex T. Roth, William S. Peters, Richard J. Mueller, Jr., Hanson S. Gifford, III
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Patent number: 6913601Abstract: A catheter system is provided for accessing the coronary ostia transluminally from a peripheral arterial access site, such as the femoral artery, and for inducing cardioplegic arrest by direct infusion of cardioplegic solution into the coronary arteries. In a first embodiment, the catheter system is in the form of a single perfusion catheter with multiple distal branches for engaging the coronary ostia. In a second embodiment, multiple perfusion catheters are delivered to the coronary ostia through a single arterial cannula. In a third embodiment, multiple perfusion catheters are delivered to the coronary ostia through a single guiding catheter. In a fourth embodiment, multiple catheters are delivered to the coronary ostia through a single guiding catheter which has distal exit ports that are arranged to direct the perfusion catheters into the coronary ostia.Type: GrantFiled: May 22, 2001Date of Patent: July 5, 2005Assignee: Heartport, Inc.Inventors: Frederick G. St. Goar, William S. Peters, Philip C. Evard, Stephen W. Boyd, Craig L. Adams, Richard L. Mueller, Jr., John H. Stevens
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Patent number: 6899704Abstract: The invention provides devices and methods for performing less-invasive surgical procedures within an organ or vessel. In an exemplary embodiment, the invention provides a method of closed-chest surgical intervention within an internal cavity of a patient's heart or great vessel. According to the method, the patient's heart is arrested and cardiopulmonary bypass is established. A scope extending through a percutaneous intercostal penetration in the patient's chest is used to view an internal portion of the patient's chest. An internal penetration is formed in a wall of the heart or great vessel using cutting means introduced through a percutaneous penetration in an intercostal space in the patient's chest. An interventional tool is then introduced, usually through a cannula positioned in a percutaneous intercostal penetration.Type: GrantFiled: July 10, 2001Date of Patent: May 31, 2005Assignee: Heartport, Inc.Inventors: Wesley D. Sterman, Michi E. Garrison, Hanson S. Gifford, III, John H. Stevens, William S. Peters
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Patent number: 6814700Abstract: The present invention provides a retractor for providing surgical access through a passage in tissue, together with methods for its use and deployment. The retractor comprises an anchoring frame having an upper surface, a lower surface, and an opening therethrough which defines an axial axis. A flexible tensioning member is attached to the frame, and is extendable from the frame out of the body through the passage when the frame is positioned through the passage and into a body cavity. This tensioning member is selectively tensionable to spread the tissue radially outwardly from the axial axis. Hence, it is the tension imposed on the flexible liner which effects retraction of the tissue, rather than relying on the structural integrity of an artificial lumen.Type: GrantFiled: March 16, 2000Date of Patent: November 9, 2004Assignee: Heartport, Inc.Inventors: Richard L. Mueller, Stephen W. Boyd, James R. Flom, Lorraine F. Mangosong, William S. Peters
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Publication number: 20040194791Abstract: A method for closed-chest cardiac surgical intervention relies on viewing the cardiac region through a thoracoscope or other viewing scope and endovascularly partitioning the patient's arterial system at a location within the ascending aorta The cardiopulmonary bypass and cardioplegia can be induced, and a variety of surgical procedures performed on the stopped heart using percutaneously introduced tools.Type: ApplicationFiled: April 26, 2004Publication date: October 7, 2004Inventors: Wesley D. Sterman, Lawrence C. Siegel, Patricia E. Curtis, John H. Stevens, William S. Peters, Timothy R. Machold
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Publication number: 20040073301Abstract: Systems and methods are disclosed for performing less-invasive surgical procedures within the heart. A method for less-invasive repair or replacement of a cardiac valve comprises placing an instrument through an intercostal access port and through a penetration in a wall of a vessel in communication with the heart, advancing the instrument into the heart, and using the instrument to perform a surgical intervention on a cardiac valve in the heart under visualization through an intercostal access port The surgeons hands are kept outside of the chest during each step.Type: ApplicationFiled: September 15, 2003Publication date: April 15, 2004Inventors: Brian S. Donlon, William S. Peters, Michi E. Garrison, Daniel C. Rosenman, John H. Stevens
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Publication number: 20040019348Abstract: Devices, systems, and methods are provided for accessing the interior of the heart and performing procedures therein while the heart is beating. In one embodiment, a tubular access device having an inner lumen is provided for positioning through a penetration in a muscular wall of the heart, the access device having a means for sealing within the penetration to inhibit leakage of blood through the penetration. The sealing means may comprise a balloon or flange on the access device, or a suture placed in the heart wall to gather the heart tissue against the access device. An obturator is removably positionable in the inner lumen of the access device, the obturator having a cutting means at its distal end for penetrating the muscular wall of the heart. The access device is preferably positioned through an intercostal space and through the muscular wall of the heart.Type: ApplicationFiled: May 21, 2003Publication date: January 29, 2004Inventors: John H. Stevens, Bruce A. Reitz, Alex T. Roth, William S. Peters, Hanson S. Gifford
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Patent number: 6679268Abstract: Devices, systems, and methods are provided for accessing the interior of the heart and performing procedures therein while the heart is beating. In one embodiment, a tubular access device having an inner lumen is provided for positioning through a penetration in a muscular wall of the heart, the access device having a means for sealing within the penetration to inhibit leakage of blood through the penetration. The sealing means may comprise a balloon or flange on the access device, or a suture placed in the heart wall to gather the heart tissue against the access device. An obturator is removably positionable in the inner lumen of the access device, the obturator having a cutting means at its distal end for penetrating the muscular wall of the heart. The access device is preferably positioned through an intercostal space and through the muscular wall of the heart.Type: GrantFiled: March 15, 2002Date of Patent: January 20, 2004Assignee: Heartport, Inc.Inventors: John H. Stevens, Bruce A. Reitz, Alex T. Roth, William S. Peters, Hanson S. Gifford
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Publication number: 20030225402Abstract: Devices, systems, and methods are provided for accessing the interior of the heart and performing procedures therein while the heart is beating. In one embodiment, a tubular access device having an inner lumen is provided for positioning through a penetration in a muscular wall of the heart, the access device having a means for sealing within the penetration to inhibit leakage of blood through the penetration. The sealing means may comprise a balloon or flange on the access device, or a suture placed in the heart wall to gather the heart tissue against the access device. An obturator is removably positionable in the inner lumen of the access device, the obturator having a cutting means at its distal end for penetrating the muscular wall of the heart. The access device is preferably positioned through an intercostal space and through the muscular wall of the heart.Type: ApplicationFiled: May 1, 2003Publication date: December 4, 2003Inventors: John H. Stevens, Bruce A. Reitz, Alex T. Roth, William S. Peters, Hanson S. Gifford
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Patent number: 6651671Abstract: Systems and methods are disclosed for performing less-invasive surgical procedures within the heart. A method for less-invasive repair or replacement of a cardiac valve comprises placing an instrument through an intercostal access port and through a penetration in a wall of a vessel in communication with the heart, advancing the instrument into the heart, and using the instrument to perform a surgical intervention on a cardiac valve in the heart under visualization through an intercostal access port. The surgeons hands are kept outside of the chest during each step.Type: GrantFiled: October 12, 1999Date of Patent: November 25, 2003Assignee: Heartport, Inc.Inventors: Brian S. Donlon, William S. Peters, Michi E. Garrison, Daniel C. Rosenman, John H. Stevens
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Patent number: 6613069Abstract: Surgical methods and instruments are disclosed for performing port-access or closed-chest coronary artery bypass (CABG) surgery in multivessel coronary artery disease. In contrast to standard open-chest CABG surgery, which requires a median sternotomy or other gross thoracotomy to expose the patient's heart, port-access CABG surgery is performed through small incisions or access ports made through the intercostal spaces between the patient's ribs, resulting in greatly reduced pain and morbidity to the patient. In situ arterial bypass grafts, such as the internal mammary arteries and/or the right gastroepiploic artery, are prepared for grafting by thoracoscopic or laparoscopic takedown techniques. Free grafts, such as a saphenous vein graft or a free arterial graft, can be used to augment the in situ arterial grafts. The graft vessels are anastomosed to the coronary arteries under direct visualization through a cardioscopic microscope inserted through an intercostal access port.Type: GrantFiled: October 19, 2001Date of Patent: September 2, 2003Assignee: Heartport, Inc.Inventors: Stephen W. Boyd, Alan R. Rapacki, Matthias Vaska, Brian S. Donlon, William S. Peters, John H. Stevens
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Publication number: 20030145865Abstract: The invention provides devices and methods for performing less-invasive surgical procedures within an organ or vessel. In an exemplary embodiment, the invention provides a method of closed-chest surgical intervention within an internal cavity of a patient's heart or great vessel. According to the method, the patient's heart is arrested and cardiopulmonary bypass is established. A scope extending through a percutaneous intercostal penetration in the patient's chest is used to view an internal portion of the patient's chest. An internal penetration is formed in a wall of the heart or great vessel using cutting means introduced through a percutaneous penetration in an intercostal space in the patient's chest. An interventional tool is then introduced, usually through a cannula positioned in a percutaneous intercostal penetration.Type: ApplicationFiled: July 10, 2001Publication date: August 7, 2003Inventors: Wesley D. Sterman, Michi E. Garrison, Hanson S. Gifford, John H. Stevens, William S. Peters