Patent · US10166015B2 · B2 · US
Implantable scaffold and method
- (11) Publication number
- US10166015B2
- (21) Application number
- 15/256,595
- (22) Filing date
- 2016-09-04
- (30) Priority date
- 2010-04-11
- (43) Publication date
- 2019-01-01
- (45) Date of grant
- 2019-01-01
- (51) IPC
- A61B 17/00
- (52) CPC
- A61B Diagnosis; surgery; identification: 17/0057, 2017/00004, 2017/00623, 2017/00637, 2017/00654, 2017/00659
- (73) Assignee
- Lapiq Inc
- (72) Inventors
- Michael Sigmund Klein; Michael George Fourkas; Widya Mulyasasmita; James Su
- (54) Title
- Implantable scaffold and method
- (57) Abstract
A biodegradable device for maintaining the alignment of the edges of a trocar defect, consisting of two bases coupled and offset by a connector. The first base to be positioned below the defect and a second base above. The first base has a threaded hole from its upper surface but not through the lower surface. The connector attached to the bases such that there is a hole aligned with the threaded hole in the first base allowing a device to mate with the threads in the first base. The second base has a hole aligned with the hole in the connector and wide enough to allow a device to mate with the threads in the first base. The device is arranged so the distance between the lower surface of the second base and upper surface of the first base holds the fascia around the trocar defect.
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Claims (5)
- A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, the radial strips in the second biodegradable base are connected to an inner ring with a diameter of the second threaded hole of the first biodegradable base, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.
- A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, where the radial strips in the second biodegradable base are of equal length to surround an inner hole with a diameter of the second threaded hole, but not connected to each other; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force.
- A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the first degradable base and second degradable base comprise of a biodegradable material with micron-scale porosity, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.
- A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the surfaces of the first biodegradable base and second biodegradable base facing each other have fenestrations of sufficient size to produce potential sites for tissue ingrowth, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.
- A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the surface of the second biodegradable base which faces the first biodegradable base is convex, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.
Description
This patent is a continuation in part of “An Implantable Biodegradable Wound Closure Device and Method”, filed on Apr. 11, 2010 as U.S. application Ser. No. 12/758,027 and issued as U.S. Pat. No. 8,506,593 on Aug. 13, 2013. It is also a continuation in part of “Implantable Biodegradable Wound Closure Device and Method”, filed on May 20, 2012 as U.S. application Ser. No. 13/475,996. It is also a continuation of “Implantable Tissue Scaffold and Method”, filed on Mar. 14, 2013, as U.S. Application No. 61/786,276.
The present invention generally relates to a wound closure device that is used either directly by a surgical team or indirectly as an attachment to a robotics controller to repair the defect typically left in the fascia layer or other tissue during laparoscopic surgery by an instrument called a trocar.
Laparoscopic surgery was introduced as an alternative to open surgical methods. Also referred to as minimally invasive surgery, the technique allows for small incision access to the intra-abdominal cavity. The approach utilizes specialized equipment such as robotics for the purposes of inflating the abdominal cavity with gas, deploying and exchanging instruments during the operation, and real time imaging with a videoscopic camera.
A laparoscopic trocar is a surgical device used for laparoscopic procedures to pierce and access the wall of an anatomical cavity, thereby forming a passageway providing communication with the inside of the cavity.
Citations (8)
- US4033243A
- US5366460A
- US20020004661A1
- US6120539A
- US6241768B1
- US20030181988A1
- US20060282105A1
- US20060015142A1
Record as JSON
{
"publication_number": "US10166015B2",
"country": "US",
"kind": "B2",
"title": "Implantable scaffold and method",
"abstract": "A biodegradable device for maintaining the alignment of the edges of a trocar defect, consisting of two bases coupled and offset by a connector. The first base to be positioned below the defect and a second base above. The first base has a threaded hole from its upper surface but not through the lower surface. The connector attached to the bases such that there is a hole aligned with the threaded hole in the first base allowing a device to mate with the threads in the first base. The second base has a hole aligned with the hole in the connector and wide enough to allow a device to mate with the threads in the first base. The device is arranged so the distance between the lower surface of the second base and upper surface of the first base holds the fascia around the trocar defect.",
"claims": [
"1. A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, the radial strips in the second biodegradable base are connected to an inner ring with a diameter of the second threaded hole of the first biodegradable base, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.",
"2. A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, where the radial strips in the second biodegradable base are of equal length to surround an inner hole with a diameter of the second threaded hole, but not connected to each other; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force.",
"3. A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the first degradable base and second degradable base comprise of a biodegradable material with micron-scale porosity, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.",
"4. A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the surfaces of the first biodegradable base and second biodegradable base facing each other have fenestrations of sufficient size to produce potential sites for tissue ingrowth, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base.",
"5. A biodegradable implantable device for maintaining the alignment of the edges of a trocar defect, the device constructed to allow completion of insertion after the trocar has been removed, the trocar defect having a defect diameter, the tissue and associated layers around the trocar defect having a thickness, a posterior wall, and an interior wall, the device comprising: a first biodegradable base having a first base diameter substantially equal to the defect diameter, the first biodegradable base having: a first surface, the first surface capable of substantially contacting the posterior wall of the trocar defect, a first threaded hole substantially through the center extending inward from the first surface but not all the way through the first biodegradable base, and a second threaded hole extending inward from the first threaded hole but not all the way through the first biodegradable base; a second biodegradable base having a second base diameter, the second biodegradable base further comprising: a first surface with a protruding ring along its outer edge, where the inner diameter of the protruding ring is greater than the first base diameter, such that the first surface of the first biodegradable base fits inside the inner walls of the protruding ring of the second biodegradable base with sufficient gap to allow reliable engagement of the interior wall of the tissue and associated layers with the device; a second surface with a plurality of radial strips, which create a set of radial slots of such depth and width to enable an external tool to allow engagement with a configuration of mating protrusions, and an unthreaded hole substantially through the center of the first surface and the second surface, the diameter of the hole substantially equal to the diameter of the second threaded hole in the first biodegradable base, configured to allow a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed; and a biodegradable connector for connecting the first surface of the first biodegradable base with the first surface of the second biodegradable base, the biodegradable connector defined to compress the first biodegradable base against the second biodegradable base using an external force, wherein the length of the connector is sufficient to connect to the first biodegradable base and second biodegradable base while allowing enough space to maintain a predefined gap substantially equal to the thickness between the first surface of the biodegradable base and the first surface of the second biodegradable base, and the biodegradable connector having an unthreaded hole substantially through the middle of the same size and alignment as the unthreaded hole in the second biodegradable base, allowing a device with the diameter and threading to mate with the second threaded hole in the first biodegradable base to pass through unobstructed, wherein the biodegradable connector threads into the first threaded hole of the first biodegradable base, the surface of the second biodegradable base which faces the first biodegradable base is convex, and the diameter of the first threaded hole of the first biodegradable base is greater than the diameter of the second threaded hole of the first biodegradable base."
],
"description_excerpt": "This patent is a continuation in part of “An Implantable Biodegradable Wound Closure Device and Method”, filed on Apr. 11, 2010 as U.S. application Ser. No. 12/758,027 and issued as U.S. Pat. No. 8,506,593 on Aug. 13, 2013. It is also a continuation in part of “Implantable Biodegradable Wound Closure Device and Method”, filed on May 20, 2012 as U.S. application Ser. No. 13/475,996. It is also a continuation of “Implantable Tissue Scaffold and Method”, filed on Mar. 14, 2013, as U.S. Application No. 61/786,276.\n\nThe present invention generally relates to a wound closure device that is used either directly by a surgical team or indirectly as an attachment to a robotics controller to repair the defect typically left in the fascia layer or other tissue during laparoscopic surgery by an instrument called a trocar.\n\nLaparoscopic surgery was introduced as an alternative to open surgical methods. Also referred to as minimally invasive surgery, the technique allows for small incision access to the intra-abdominal cavity. The approach utilizes specialized equipment such as robotics for the purposes of inflating the abdominal cavity with gas, deploying and exchanging instruments during the operation, and real time imaging with a videoscopic camera.\n\nA laparoscopic trocar is a surgical device used for laparoscopic procedures to pierce and access the wall of an anatomical cavity, thereby forming a passageway providing communication with the inside of the cavity.",
"cpc": [
"A61B 17/0057",
"A61B 2017/00004",
"A61B 2017/00623",
"A61B 2017/00637",
"A61B 2017/00654",
"A61B 2017/00659"
],
"ipc": [
"A61B 17/00"
],
"assignees": [
"Lapiq Inc"
],
"inventors": [
"Michael Sigmund Klein",
"Michael George Fourkas",
"Widya Mulyasasmita",
"James Su"
],
"filing_date": "2016-09-04",
"publication_date": "2019-01-01",
"grant_date": "2019-01-01",
"priority_date": "2010-04-11",
"application_number": "US-201615256595-A",
"family_id": "63852953",
"cited_by_count": 3,
"citations": [
"US4033243A",
"US5366460A",
"US20020004661A1",
"US6120539A",
"US6241768B1",
"US20030181988A1",
"US20060282105A1",
"US20060015142A1"
]
}
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