Patents by Inventor David B. Morris
David B. Morris 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).
-
Publication number: 20150313627Abstract: A catheter assembly includes a catheter body having a catheter lumen. A manifold assembly is coupled with a proximal catheter portion. A manifold lumen extends through the manifold assembly, and the manifold lumen includes an assembly cavity extending around the proximal catheter portion. A fluid jet loop is coupled with a high pressure tube at a distal catheter portion. The catheter assembly further includes a tapered loop guide surface.Type: ApplicationFiled: July 14, 2015Publication date: November 5, 2015Applicant: BOSTON SCIENTIFIC LIMITEDInventors: DAVID B. MORRIS, MICHAEL J. BONNETTE, JASON M. BRONSTAD, COREY RASCH, JASON T. ANDERSON, LASZLO TRENT FARAGO, DIANA DUTCHER, ERIC J. THOR
-
Patent number: 9149609Abstract: The general purpose of the present invention is to provide a catheter for removal of an organized embolic thrombus, preferably in conjunction with a distal occlusion balloon guidewire. The present invention consists of three main components including a capture/delivery sheath, a capture sleeve of mesh attached to a tube and a grasping mechanism attached to another tube which is central to the other components. Operative structures in the form of manifolds are connected to such components in order to manipulate and control the relative positions of the capture/delivery sheath, the capture sleeve and the grasping mechanism. An embolic thrombus is engaged by the deployable automatically expanding serrated fingers of a grasping mechanism in combination with a deployable automatically expanding mesh capture sleeve. The capture/delivery sheath is maneuvered to cause compression of the serrated fingers and of the mesh capture sleeve for subsequent removal of the embolic thrombus.Type: GrantFiled: May 14, 2008Date of Patent: October 6, 2015Assignee: Embolitech, LLCInventors: Gary M. Ansel, Michael J. Bonnette, Eric J. Thor, David B. Morris, Stephen E. Weisel
-
Publication number: 20150258258Abstract: A matter elimination catheter includes a catheter body extending from a catheter proximal portion to a catheter distal portion. The catheter body includes an infusion lumen, an aspiration lumen fluidly isolated from the infusion lumen, and a septum interposed between the infusion and aspiration lumens. A drive shaft is within the infusion lumen and is configured to provide rotation near the catheter distal portion. A guide wire lumen is within the drive shaft, and the infusion lumen, the drive shaft and the guide wire lumen are fluidly separated from the aspiration lumen with the septum. In one example, fluid bearings are formed between one or more of the catheter body and drive shaft or the drive shaft and a guide wire or guide wire liner when supplied with infusion fluid through the infusion lumen.Type: ApplicationFiled: March 6, 2015Publication date: September 17, 2015Inventors: Michael J. Bonnette, Richard R. Prather, Debra M. Kozak, David B. Morris
-
Patent number: 9107986Abstract: An infusion system includes a double action infusion pump. The pump includes a cylinder and a reciprocating piston received within the cylinder, the reciprocating piston separating a first pump chamber from a second pump chamber of the cylinder. A reciprocating motor is coupled with the reciprocating piston, and the first and second pump chambers alternate between filling and evacuating conditions with reciprocation of the reciprocating piston through operation of the reciprocating motor, and the speed of reciprocation is varied to provide a continuous output of fluid between the first and second pump chambers. A fluid source and a catheter are optionally coupled with the double action infusion pump. The catheter includes one or more infusion ports near a catheter distal portion, and the one or more infusion ports receive and expel the continuous output of fluid from the double action infusion pump.Type: GrantFiled: March 11, 2013Date of Patent: August 18, 2015Assignee: BOSTON SCIENTIFIC LIMITEDInventors: Michael J. Bonnette, David B. Morris
-
Patent number: 9078691Abstract: Medical devices and methods for making and using medical devices are disclosed. An example catheter is disclosed. The catheter comprises a catheter body having a catheter lumen and a high pressure tube disposed within the catheter lumen. The high pressure tube has a substantially circular cross section. The catheter also includes a fluid jet loop coupled to the high pressure tube at a transition section. The transition section has a circular cross section and a non-circular cross section. The fluid jet loop includes fluid jet orifices along a tapered loop guide surface. The catheter also includes a distal guide. The intermediate guide surface of the catheter lumen flushly engages with a leading edge of the tapered loop guide surface and the distal guide is configured to guide the instrument over the intermediate guide surface, the tapered loop guide surface and through the fluid jet loop.Type: GrantFiled: March 7, 2013Date of Patent: July 14, 2015Assignee: BOSTON SCIENTIFIC LIMITEDInventors: David B. Morris, Michael J. Bonnette, Jason Bronstad, Corey Rasch, Jason Anderson, Laszlo Trent Farago, Diana Dutcher, Eric J. Thor
-
Publication number: 20150173790Abstract: The present invention provides a forwardly directed fluid jet crossing catheter having a distally directed cylindrical flow fluid jet stream to cross a chronic total occlusion. The distal end of the device includes a formable catheter tip region having flexible internal components. Low and high pressure cavities are formed substantially by joined proximal and distal catheter tubes having an adhesive plug seal in common therebetween which partially defines one end of each of the low pressure and high pressure cavities. A guidewire tube and a high pressure tube are aligned along and within the low pressure and high pressure cavities and through the adhesive plug seal. The high pressure tube openly terminates in the high pressure cavity, whereby pressurized fluid transfers from the high pressure cavity in the guidewire tube entry hole to subsequently pass along the guidewire lumen and co-located guidewire to exit as a cylindrical fluid jet stream.Type: ApplicationFiled: March 10, 2015Publication date: June 25, 2015Applicant: BOSTON SCIENTIFIC LIMITEDInventors: MICHAEL J. BONNETTE, DAVID B. MORRIS, ERIC J. THOR
-
Patent number: 8974418Abstract: A forwardly directed fluid jet crossing catheter having a distally directed cylindrical flow fluid jet stream to cross a chronic total occlusion is set forth. The distal end of the device includes a formable catheter tip region having flexible internal components. Low and high pressure cavities are formed substantially by joined proximal and distal catheter tubes having an adhesive plug seal in common therebetween which partially defines one end of each of the low pressure and high pressure cavities. A guidewire tube and a high pressure tube are aligned along and within the low pressure and high pressure cavities and through the adhesive plug seal. The high pressure tube openly terminates in the high pressure cavity, whereby pressurized fluid transfers from the high pressure cavity in the guidewire tube entry hole to subsequently pass along the guidewire lumen and co-located guidewire to exit as a cylindrical fluid jet stream.Type: GrantFiled: January 22, 2008Date of Patent: March 10, 2015Assignee: Boston Scientific LimitedInventors: Michael J. Bonnette, David B. Morris, Eric J. Thor
-
Publication number: 20140303658Abstract: A thrombectomy catheter includes a catheter body extending from a catheter proximal portion to a catheter distal portion and including a catheter intermediate portion, the catheter body includes an aspiration lumen and an infusion lumen extending along the catheter body, wherein the aspiration lumen includes an aspiration orifice open at a distal end of the catheter body.Type: ApplicationFiled: June 20, 2014Publication date: October 9, 2014Inventors: Michael J. Bonnette, David B. Morris
-
Publication number: 20140257097Abstract: An infusion system includes a double action infusion pump. The pump includes a cylinder and a reciprocating piston received within the cylinder, the reciprocating piston separating a first pump chamber from a second pump chamber of the cylinder. A reciprocating motor is coupled with the reciprocating piston, and the first and second pump chambers alternate between filling and evacuating conditions with reciprocation of the reciprocating piston through operation of the reciprocating motor, and the speed of reciprocation is varied to provide a continuous output of fluid between the first and second pump chambers. A fluid source and a catheter are optionally coupled with the double action infusion pump. The catheter includes one or more infusion ports near a catheter distal portion, and the one or more infusion ports receive and expel the continuous output of fluid from the double action infusion pump.Type: ApplicationFiled: March 11, 2013Publication date: September 11, 2014Applicant: Medrad, Inc.Inventors: Michael J. Bonnette, David B. Morris
-
Publication number: 20140214060Abstract: A catheter assembly includes an inner mandrel and an outer sheath slidably coupled along the inner mandrel. The catheter assembly includes a scrubbing assembly coupled between the inner mandrel and the outer sheath. The scrubbing assembly includes a plurality of deformable struts deflectable according to movement of the inner mandrel relative to the outer sheath. The scrubbing assembly includes a proximal shoulder coupled with the outer sheath, and a distal shoulder coupled with the inner mandrel. The plurality of struts extend between the proximal and distal shoulders. The scrubbing assembly is movable between a stored configuration and a deployed configuration according to movement of the inner mandrel relative to the outer sheath. In the stored configuration the proximal and distal shoulders are remote from each other. In the deployed configuration the proximal shoulder is engaged with the distal shoulder, and the deformable struts are deflected into bristles.Type: ApplicationFiled: May 18, 2012Publication date: July 31, 2014Inventors: Michael J. Bonnette, Richard R. Prather, David B. Morris, Eric J. Thor, Nicole J. Aasen, Debra M. Kozak, Arthur E. Uber, III
-
Patent number: 8657777Abstract: Catheters including guidewire tubes having a limited length and methods of using the catheters are described. The catheters may be delivered over guidewires in procedures that are commonly referred to as rapid-exchange delivery. In some embodiments, the catheters may be miniature flexible thrombectomy catheters that may be used to remove thrombus or other unwanted material from a body blood vessel or other small regions of body cavities in which the distal portion of the catheter has smaller external dimensions than the larger proximal portion.Type: GrantFiled: January 14, 2013Date of Patent: February 25, 2014Assignee: Bayer Medical Care Inc.Inventors: Debra M. Kozak, Michael J. Bonnette, Eric J. Thor, David B. Morris, John L. Teschendorf, Douglas J. Ball, Michael Schrom, Stephen E. Weisel
-
Patent number: 8647294Abstract: A direct stream hydrodynamic catheter system is provided for the removal of thrombus, lesions and the like including provisions for the infusion of drugs, lysing fluids and the like into a blood vessel. Physician controlled high powered direct fluid jet streams emanate from a fluid jet emanator in the form of robust radially directed fluid jet streams to impinge upon and ablate difficult and strong thrombus or lesions within a blood vessel. Effluent aspiration is controlled by an exhaust regulator in the form of a roller pump, but effluent removal can be assistingly influenced by the fluid pressure associated with the radially directed fluid jet streams.Type: GrantFiled: March 20, 2009Date of Patent: February 11, 2014Assignee: MEDRAD, Inc.Inventors: Michael J. Bonnette, Eric J. Thor, Debra M. Kozak, Douglas J. Ball, Stephen E. Weisel, David B. Morris
-
Patent number: 8398579Abstract: A catheter including a catheter body having a catheter lumen is disclosed. A manifold assembly is coupled with a proximal catheter portion. A manifold lumen extends through the manifold assembly and includes an assembly cavity extending around the proximal catheter portion. A fluid jet loop including fluid jet orfices along a tapered loop guide surface is coupled with a distal catheter portion. The catheter further includes a composite guide having a proximal guide insert and a distal guide. The proximal guide insert is positioned within the assembly cavity and includes a guide insert surface flush with a catheter body interior wall. The distal guide includes a tapered loop guide surface, and an intermediate guide surface of the catheter lumen is flushly engaged with a leading edge of the tapered loop guide surface, the distal guide continuously tapering inwardly and distally along the tapered loop guide surface.Type: GrantFiled: December 15, 2010Date of Patent: March 19, 2013Assignee: Medrad, Inc.Inventors: David B. Morris, Eric J. Thor, Michael J. Bonnette, Jason M. Bronstad, Corey Rasch, Brian D. Bruckner, Jason Anderson, Laszlo T. Farago, Diana Dutcher
-
Patent number: 8353858Abstract: Catheters including guidewire tubes having a limited length and methods of using the catheters are described. The catheters may be delivered over guidewires in procedures that are commonly referred to as rapid-exchange delivery. In some embodiments, the catheters may be miniature flexible thrombectomy catheters that may be used to remove thrombus or other unwanted material from a body blood vessel or other small regions of body cavities in which the distal portion of the catheter has smaller external dimensions than the larger proximal portion.Type: GrantFiled: June 3, 2010Date of Patent: January 15, 2013Assignee: Medrad, Inc.Inventors: Debra M. Kozak, Michael J. Bonnette, Eric J. Thor, David B. Morris, John L. Teschendorf, Douglas J. Ball, Stephen E. Weisel, Michael Schrom
-
Patent number: 8012117Abstract: The present invention pertains to a miniature flexible thrombectomy catheter having one or more flexible miniature noncollapsing tubular portions including pushable and torqueable structure for introduction into the smaller vessels in neurovascular regions. A jet body having an arcuate fluid jet emanator is incorporated in order to minimize size at the distal portion of a minimally sized catheter tube.Type: GrantFiled: February 6, 2007Date of Patent: September 6, 2011Assignee: Medrad, Inc.Inventors: Michael J. Bonnette, Eric J. Thor, Debra M. Kozak, David B. Morris, John L. Teschendorf, Douglas J. Ball, Stephen E. Weisel
-
Patent number: 7996974Abstract: The present invention pertains to a miniature flexible thrombectomy catheter having one or more flexible miniature noncollapsing tubular portions including pushable and torqueable structure for introduction into the smaller vessels in neurovascular regions. A jet body having an arcuate fluid jet emanator is incorporated in order to minimize size at the distal portion of a minimally sized catheter tube.Type: GrantFiled: July 16, 2008Date of Patent: August 16, 2011Assignee: MEDRAD, Inc.Inventors: Debra M. Kozak, Douglas J. Ball, John L. Tedeschendorf, Eric J. Thor, David B. Morris, Michael J. Bonnette, Stephen E. Weisel
-
Publication number: 20110152908Abstract: A catheter assembly includes a catheter body having a catheter lumen. A manifold assembly is coupled with a proximal catheter portion. A manifold lumen extends through the manifold assembly, and the manifold lumen includes an assembly cavity extending around the proximal catheter portion. A fluid jet loop is coupled with a high pressure tube at a distal catheter portion. The catheter assembly further includes a composite guide having first and second guide portions. The first guide portion includes a proximal guide insert near the proximal catheter portion, the proximal guide insert is positioned within the assembly cavity, and includes a guide insert surface flush with a catheter body interior wall. The second guide portion includes a distal guide near the distal catheter portion including a tapered loop guide surface and an intermediate guide surface of the catheter lumen flushly engaged with a leading edge of the tapered loop guide surface.Type: ApplicationFiled: December 15, 2010Publication date: June 23, 2011Applicant: MEDRAD, Inc.Inventors: David B. Morris, Eric J. Thor, Michael J. Bonnette, Jason M. Bronstad, Corey Rasch, Brian D. Bruckner, Jason Anderson, Laszlo T. Farago, Diana Dutcher
-
Publication number: 20110015564Abstract: A direct stream hydrodynamic catheter system is provided for the removal of thrombus, lesions and the like including provisions for the infusion of drugs, lysing fluids and the like into a blood vessel. Physician controlled high powered direct fluid jet streams emanate from a fluid jet emanator in the form of robust radially directed fluid jet streams to impinge upon and ablate difficult and strong thrombus or lesions within a blood vessel. Effluent aspiration is controlled by an exhaust regulator in the form of a roller pump, but effluent removal can be assistingly influenced by the fluid pressure associated with the radially directed fluid jet streams.Type: ApplicationFiled: March 20, 2009Publication date: January 20, 2011Inventors: Michael J. Bonnette, Eric J. Thor, Debra M. Kozak, Douglas J. Ball, Stephen E. Weisel, Richard R. Prather, David B. Morris
-
Publication number: 20100312223Abstract: Catheters including guidewire tubes having a limited length and methods of using the catheters are described. The catheters may be delivered over guidewires in procedures that are commonly referred to as rapid-exchange delivery.Type: ApplicationFiled: June 3, 2010Publication date: December 9, 2010Applicant: MEDRAD, INC.Inventors: Debra M. Kozak, Michael J. Bonnette, Eric J. Thor, David B. Morris, John L. Teschendorf, Douglas J. Ball, Stephen E. Weisel, Michael Schrom
-
Publication number: 20100268264Abstract: An intravascular emboli capture and retrieval system for intravascular embolism protection and embolism removal or maceration. Guidewire mounted proximally and distally located multiple opening filters are deployed within the vasculature and used to part, divide and macerate embolic debris and to capture such embolic debris within the confines thereof. A deployable flexible preformed memory shaped capture sleeve is alternatively used to collapse one or more filters and embolic debris therein for subsequent proximal withdrawal from the vasculature.Type: ApplicationFiled: October 27, 2008Publication date: October 21, 2010Applicant: MEDRAD, INC.Inventors: Michael Bonnette, Richard Prather, Eric J. Thor, Stephen E. Weisel, Douglas L. Ball, David B. Morris, Debra M. Kozak, Gary Ansel