Patents by Inventor Cang C. Lam
Cang C. Lam 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: 8216260Abstract: Apparatus and methods are provided for forming a gastrointestinal tissue fold by engaging tissue at a first tissue contact point, moving the first tissue contact point from a position initially distal to a second tissue contact point to a position proximal of the second contact point to form a tissue fold, and extending an anchor assembly through the tissue fold near the second tissue contact point. Adjustable anchor assemblies, as well as anchor delivery systems, are also provided.Type: GrantFiled: August 25, 2008Date of Patent: July 10, 2012Assignee: USGI Medical, Inc.Inventors: Cang C. Lam, Richard C. Ewers, Alexander Khairkhanan, Vahid Saadat
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Patent number: 8216253Abstract: Apparatus for manipulating and securing tissue are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. The stabilizing members can be adapted to become angled relative to a longitudinal axis of the elongate tubular member. Moreover, one or all the articulation controls and functions can be integrated into a singular handle assembly connectable to the tissue manipulation assembly via a rigid or flexible tubular body.Type: GrantFiled: April 22, 2008Date of Patent: July 10, 2012Assignee: USGI Medical, Inc.Inventors: Vahid Saadat, Richard C. Ewers, Cang C. Lam, Robert A. Vaughan, Chris Rothe, Kenneth J. Michlitsch
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Patent number: 8066719Abstract: Apparatus and methods are provided for forming a gastrointestinal tissue fold by engaging tissue at a first tissue contact point, moving the first tissue contact point from a position initially distal to a second tissue contact point to a position proximal of the second contact point to form a tissue fold, and extending an anchor assembly through the tissue fold near the second tissue contact point.Type: GrantFiled: November 18, 2004Date of Patent: November 29, 2011Inventors: Richard C. Ewers, Boris Reydel, Cang C. Lam, Eugene Chen, Brent D. Seybold, Rodney Brenneman, Vahid Saadat
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Publication number: 20110208209Abstract: Devices and methods for forming and securing tissue folds and elongated invaginations in gastric tissue are used as a treatment for obesity. In several embodiments, a plurality of tissue folds is formed along the greater curvature of the stomach using laparoscopic tissue anchor deployment devices. Additional embodiments include various combinations of tissue folds, elongated invaginations, and other reconfigurations of stomach tissue using laparoscopic devices or laparoscopic devices in combination with endoscopic devices.Type: ApplicationFiled: February 23, 2011Publication date: August 25, 2011Applicant: USGI Medical, Inc.Inventors: Richard C. EWERS, Eugene G. CHEN, Tracy D. MAAHS, Stuart MORAN, Cang C. LAM
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Patent number: 7955340Abstract: Apparatus and methods are provided for forming a gastrointestinal tissue fold by engaging tissue at a first tissue contact point and moving the first tissue contact point from a position initially distal to, or in line with, a second tissue contact point to a position proximal of the second contact point, thereby forming the tissue fold, and extending an anchor assembly through the tissue fold from a vicinity of the second tissue contact point. Adjustable anchor assemblies; as well as anchor delivery systems, shape-lockable guides and methods for endoluminally performing medical procedures, such as gastric reduction, treatment of gastroesophageal reflux disease, resection of lesions, and treatment of bleeding sites; are also provided.Type: GrantFiled: December 12, 2003Date of Patent: June 7, 2011Assignee: USGI Medical, Inc.Inventors: Kenneth J. Michlitsch, Vahid C. Saadat, Richard C. Ewers, Chris Rothe, Rodney Brenneman, Cang C. Lam, Eugene C. Chen
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Publication number: 20100249814Abstract: Tissue manipulation and securement systems are described herein. A tissue manipulation assembly is pivotably coupled to the distal end of a tubular member and has a lower jaw member and an upper jaw member pivotably coupled to the lower jaw member. A reconfigurable launch tube is also pivotably coupled to the upper jaw member and is used to urge the jaw members from a low-profile configuration to an open configuration for receiving tissue. The tissue manipulation assembly may be advanced through a shape-lockable endoscopic device, a conventional endoscope, or directly by itself into a patient. A second tool can be used in combination with the tissue manipulation assembly to engage tissue and manipulate the tissue in conjunction with the tissue manipulation assembly.Type: ApplicationFiled: June 14, 2010Publication date: September 30, 2010Applicant: USGI MEDICAL, INC.Inventors: Robert A. VAUGHAN, Cang C. LAM, Richard C. EWERS, Vahid SAADAT
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Patent number: 7744613Abstract: Apparatus and methods are provided for forming a gastrointestinal tissue fold by engaging tissue at a first tissue contact point and moving the first tissue contact point from a position initially distal to, or in line with, a second tissue contact point to a position proximal of the second contact point, thereby forming the tissue fold, and extending an anchor assembly through the tissue fold from a vicinity of the second tissue contact point. Adjustable anchor assemblies; as well as anchor delivery systems, shape-lockable guides and methods for endoluminally performing medical procedures, such as gastric reduction, treatment of gastroesophageal reflux disease, resection of lesions, and treatment of bleeding sites; are also provided.Type: GrantFiled: December 12, 2003Date of Patent: June 29, 2010Assignee: USGI Medical, Inc.Inventors: Richard C. Ewers, Vahid Saadat, Kenneth J. Michlitsch, Chris A. Rothe, Rodney A. Brenneman, Cang C. Lam, Eugene G. Chen
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Patent number: 7736378Abstract: Apparatus and methods for positioning and securing anchors are disclosed herein. The anchors are adapted to be delivered and implanted into or upon tissue, particularly tissue within the gastrointestinal system of a patient. The anchor is adapted to slide uni-directionally over suture such that a tissue plication may be cinched between anchors. A locking mechanism either within the anchor itself of positioned proximally of the anchor may allow for the uni-directional translation while enabling the anchor to be locked onto the suture if the anchor is pulled, pushed, or otherwise urged in the opposite direction along the suture. This uni-directional anchor locking mechanism facilitates the cinching of the tissue plication between the anchors and it may be utilized in one or several anchors in cinching a tissue fold.Type: GrantFiled: May 7, 2004Date of Patent: June 15, 2010Assignee: USGI Medical, Inc.Inventors: Tracy D. Maahs, Richard C. Ewers, Jesus Flores, Alexander Khairkhahan, Ruey-Feng Peh, Vahid Saadat, Cang C. Lam
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Patent number: 7736374Abstract: Tissue manipulation and securement systems are described herein. A tissue manipulation assembly is pivotably coupled to the distal end of a tubular member and has a lower jaw member and an upper jaw member pivotably coupled to the lower jaw member. A reconfigurable launch tube is also pivotably coupled to the upper jaw member and is used to urge the jaw members from a low-profile configuration to an open configuration for receiving tissue. The tissue manipulation assembly may be advanced through a shape-lockable endoscopic device, a conventional endoscope, or directly by itself into a patient. A second tool can be used in combination with the tissue manipulation assembly to engage tissue and manipulate the tissue in conjunction with the tissue manipulation assembly.Type: GrantFiled: March 1, 2005Date of Patent: June 15, 2010Assignee: USGI Medical, Inc.Inventors: Robert A. Vaughan, Cang C. Lam, Richard C. Ewers, Vahid Saadat
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Patent number: 7704264Abstract: Apparatus and methods are provided for forming a gastrointestinal tissue fold by engaging tissue at a first tissue contact point and moving the first tissue contact point from a position initially distal to, or in line with, a second tissue contact point to a position proximal of the second contact point, thereby forming the tissue fold, and extending an anchor assembly through the tissue fold from a vicinity of the second tissue contact point. Adjustable anchor assemblies; as well as anchor delivery systems, shape-lockable guides and methods for endoluminally performing medical procedures, such as gastric reduction, treatment of gastroesophageal reflux disease, resection of lesions, and treatment of bleeding sites; are also provided.Type: GrantFiled: November 17, 2004Date of Patent: April 27, 2010Assignee: USGI Medical, Inc.Inventors: Richard C. Ewers, Vahid C. Saadat, Kenneth J. Michlitsch, Chris Rothe, Rodney Brenneman, Cang C. Lam, Eugene C. Chen
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Publication number: 20090326578Abstract: Interlocking tissue anchor apparatus and methods are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. Anchor assemblies can be delivered via the tissue manipulation assembly into or through the tissue. The anchors can incorporate various temporary interlocking features or spacing elements between one another to ensure that an anchor is not prematurely ejected from the needle assembly. This allows the anchor assembly to be advanced distally as well as withdrawn proximally within a deployment sheath while avoiding inadvertently ejecting an anchor.Type: ApplicationFiled: September 1, 2009Publication date: December 31, 2009Applicant: USGI Medical, Inc.Inventors: Richard C. EWERS, Tracy D. MAAHS, Cang C. LAM, Vahid SAADAT, Chris ROTHE
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Publication number: 20090312603Abstract: An endoscopic tissue anchor deployment device includes a handle, an elongated shaft defining an internal lumen, and an end effector attached to the distal end of the elongated shaft. A tissue anchor catheter is removably inserted through the lumen of the elongated shaft, the catheter having a tissue anchor assembly that is deployable from its distal end. In some embodiments, the handle includes a pin and track assembly that define a series of handle actuation steps corresponding to deployment steps for the deployment device end effector and the tissue anchor catheter. In some embodiments, the handle includes a catheter stop member that prevents movement of the tissue anchor catheter under certain circumstances, and a handle stop member that prevents actuation of the handle under certain circumstances.Type: ApplicationFiled: June 17, 2009Publication date: December 17, 2009Applicant: USGI Medical, Inc.Inventors: Cang C. LAM, Stuart Moran, Tracy D. Maahs, John Fernando Rodriguez, Seferino Enrique Torres, Wesley Lummis
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Patent number: 7601159Abstract: Interlocking tissue anchor apparatus and methods are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. Anchor assemblies can be delivered via the tissue manipulation assembly into or through the tissue. The anchors can incorporate various temporary interlocking features or spacing elements between one another to ensure that an anchor is not prematurely ejected from the needle assembly. This allows the anchor assembly to be advanced distally as well as withdrawn proximally within a deployment sheath while avoiding inadvertently ejecting an anchor.Type: GrantFiled: September 30, 2004Date of Patent: October 13, 2009Assignee: USGI Medical, Inc.Inventors: Richard C. Ewers, Tracy D. Maahs, Cang C. Lam, Vahid Saadat, Chris Rothe
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Publication number: 20080200930Abstract: Apparatus for manipulating and securing tissue are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. The stabilizing members can be adapted to become angled relative to a longitudinal axis of the elongate tubular member. Moreover, one or all the articulation controls and functions can be integrated into a singular handle assembly connectable to the tissue manipulation assembly via a rigid or flexible tubular body.Type: ApplicationFiled: April 22, 2008Publication date: August 21, 2008Applicant: USGI Medical, Inc.Inventors: VAHID SAADAT, RICHARD C. EWERS, CANG C. LAM, ROBERT A. VAUGHAN, CHRIS ROTHE, KENNETH J. MICHLITSCH
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Publication number: 20080177304Abstract: Methods and apparatus for controlled grasping and cinching or locking of a tissue anchor are provided. In one variation, a tube is provided having a lumen and a resilient member that obstructs the lumen. A grasper may be advanced coaxially through the lumen, such that it reversibly displaces the resilient member and extends beyond the lumen's outlet to engage an element of the tissue anchor. The grasper then may be retracted within the tube, such that the resilient member again obstructs the lumen of the tube. Continued retraction of the grasper may act to cinch the anchor, for example, via interaction between the anchor and the obstructing resilient member. During cinching, a cinching mechanism of the anchor optionally may be positioned at least partially within the tube to enhance lateral stability. Furthermore, feedback indicative of a degree of cinching or locking may be provided during cinching.Type: ApplicationFiled: March 24, 2008Publication date: July 24, 2008Applicant: USGI MEDICAL, INC.Inventors: Hendrik S. WESTRA, Cang C. LAM, Richard C. EWERS, Vahid SAADAT
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Patent number: 7390329Abstract: Methods and apparatus for controlled grasping and cinching or locking of a tissue anchor are provided. In one variation, a tube is provided having a lumen and a resilient member that obstructs the lumen. A grasper may be advanced coaxially through the lumen, such that it reversibly displaces the resilient member and extends beyond the lumen's outlet to engage an element of the tissue anchor. The grasper then may be retracted within the tube, such that the resilient member again obstructs the lumen of the tube. Continued retraction of the grasper may act to cinch the anchor, for example, via interaction between the anchor and the obstructing resilient member. During cinching, a cinching mechanism of the anchor optionally may be positioned at least partially within the tube to enhance lateral stability. Furthermore, feedback indicative of a degree of cinching or locking may be provided during cinching.Type: GrantFiled: January 14, 2005Date of Patent: June 24, 2008Assignee: USGI Medical, Inc.Inventors: Hendrik S. Westra, Cang C. Lam, Richard C. Ewers, Vahid Saadat
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Patent number: 7361180Abstract: Apparatus for manipulating and securing tissue are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. The stabilizing members can be adapted to become angled relative to a longitudinal axis of the elongate tubular member. Moreover, one or all the articulation controls and functions can be integrated into a singular handle assembly connectable to the tissue manipulation assembly via a rigid or flexible tubular body.Type: GrantFiled: September 29, 2004Date of Patent: April 22, 2008Assignee: USGI Medical, Inc.Inventors: Vahid Saadat, Richard C. Ewers, Cang C. Lam, Robert A. Vaughan, Chris Rothe, Kenneth J. Michlitsch
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Patent number: 7347863Abstract: Apparatus and methods for manipulating and securing tissue are described herein. In creating tissue folds within the body of a patient, a tissue manipulation assembly may generally have an elongate tubular member, an engagement member slidably disposed through the tubular member and a distal end adapted to engage tissue via a helical member, tissue stabilizing members positioned at the tubular member distal end which are adapted to stabilize tissue therebetween, and a delivery tube pivotable about the tissue stabilizer. The stabilizing members can be adapted to become angled relative to a longitudinal axis of the elongate tubular member. Moreover, one or all the articulation controls and functions can be integrated into a singular handle assembly connectable to the tissue manipulation assembly via a rigid or flexible tubular body.Type: GrantFiled: September 29, 2004Date of Patent: March 25, 2008Assignee: USGI Medical, Inc.Inventors: Chris Rothe, Richard C. Ewers, Cang C. Lam, Vahid Saadat, Kenneth J. Michlitsch