MLchartDataset catalogue

Patent · US11896333B2 · B2 · US

Robotic surgical instrument

(11) Publication number
US11896333B2
(21) Application number
16/997,413
(22) Filing date
2020-08-19
(30) Priority date
2020-08-19
(43) Publication date
2024-02-13
(45) Date of grant
2024-02-13
(51) IPC
A61B 34/00; A61B 34/35; A61B 90/00; B25J 15/00; B25J 15/02
(52) CPC
  • A61B Diagnosis; surgery; identification: 34/70, 18/1445, 2017/2908, 2034/305, 34/30, 34/35, 34/71, 90/03
  • B25J Manipulators; chambers provided with manipulation devices: 15/0028, 15/022, 15/0226
(73) Assignee
Covidien LP
(72) Inventors
Dylan R. Kingsley; Jason G. Weihe; William R. Whitney; Russell W. Holbrook; Zachary S. Heiliger; Curtis M. Siebenaller; Crystal A. Adams; Kurt J. Anglese
(54) Title
Robotic surgical instrument
(57) Abstract

A robotic surgical instrument includes a housing, a shaft assembly extending distally from the housing, and an end effector assembly. The shaft assembly has a proximal segment coupled to the housing, a clevis supporting the end effector assembly, and an articulating link pivotably coupled to and interconnecting the proximal segment and the clevis such that the end effector assembly is configured to articulate relative to the proximal segment via the articulating link in at least two directions.

Full text
View on Google Patents

Claims (21)

  1. A robotic surgical instrument, comprising: a housing; a shaft assembly extending distally from the housing and including: a proximal segment coupled to the housing; a clevis defining a slot in a proximal end thereof; a distal segment fixed to the clevis and having a nub keyed to the slot of the clevis; and an articulating link pivotably coupled to and interconnecting the proximal segment and the distal segment; and an end effector assembly coupled to the clevis and extending distally therefrom, wherein the end effector assembly is configured to articulate relative to the proximal segment via the articulating link, wherein the distal segment defines a depression therein and the articulating link includes a pivot flag pivotably received in the depression in longitudinal alignment with the nub, and wherein the clevis and distal segment are fixed in rotational alignment relative to one another upon operational engagement of the nub within the slot.
  2. The robotic surgical instrument according to claim 1, wherein the distal segment includes: a body portion received in the proximal end of the clevis; and a pair of opposed, spaced-apart pivot flags extending proximally from the body portion, each of the pivot flags of the distal segment pivotably coupled to the articulating link.
  3. The robotic surgical instrument according to claim 1, wherein the articulating link has a pair of opposed, spaced-apart pivot flags, and the distal segment includes a pair of opposed, spaced-apart pivot flags pivotably coupled to the respective pivot flags of the articulating link, and wherein the distal segment defines first and second depressions therein, and the pivot flags of the articulating link are pivotably received in the respective first and second depressions.
  4. The robotic surgical instrument according to claim 1, wherein the clevis includes an elongated outer body defining a longitudinally-extending slot therein, the end effector having a proximal flange received in the slot such that the elongated outer body prevents lateral movement of the end effector.
  5. The robotic surgical instrument according to claim 1, wherein the clevis defines a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components.
  6. The robotic surgical instrument according to claim 5, wherein the plurality of actuation components extend distally from the housing and through the shaft assembly to operably couple to at least one of: the end effector assembly, the distal segment, or the clevis to enable selective actuation of the end effector assembly.
  7. The robotic surgical instrument according to claim 5, wherein the clevis has a first wall projecting into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade.
  8. The robotic surgical instrument according to claim 7, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.
  9. The robotic surgical instrument according to claim 7, wherein the clevis further includes a second inner wall projecting into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of a pair of first and second electric wires.
  10. The robotic surgical instrument according to claim 9, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway.
  11. A robotic surgical instrument, comprising: a housing; a shaft assembly extending distally from the housing and including: a proximal segment coupled to the housing; a clevis defining a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components, the clevis including a slot defined in a proximal end thereof; an articulating link pivotably coupled to and interconnecting the proximal segment and the clevis, the articulating link including a pair of spaced-apart pivot flags; a distal segment rotationally fixed to the clevis and articulatable with the clevis relative to the proximal segment, the distal segment including a nub keyed to the slot defined in the clevis, the distal segment defining a pair of depressions configured to receive the corresponding pair of spaced-apart pivot flags of the articulating link in longitudinal alignment with the nub; and an end effector assembly coupled to the clevis and extending distally therefrom, wherein the end effector assembly is configured to articulate relative to the proximal segment via the articulating link, wherein the clevis has a first wall projecting into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade.
  12. The robotic surgical instrument according to claim 11, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.
  13. The robotic surgical instrument according to claim 11, wherein the clevis includes an elongated outer body defining a longitudinally-extending slot therein, the end effector having a proximal flange received in the slot such that the elongated outer body prevents lateral movement of the end effector.
  14. The robotic surgical instrument according to claim 11, wherein the clevis further includes a second inner wall projecting into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of first and second electric wires.
  15. The robotic surgical instrument according to claim 14, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway.
  16. The robotic surgical instrument according to claim 11, wherein the plurality of actuation components extend distally from the housing and through the shaft assembly to operably couple to at least one of the end effector assembly or the clevis to enable selective actuation of the end effector assembly.
  17. The robotic surgical instrument according to claim 16, wherein actuating the end effector assembly includes at least one of: articulating the end effector assembly; manipulating the end effector assembly; advancing a component through the end effector assembly; or energizing the end effector assembly.
  18. A shaft assembly configured for attachment to a robotic arm, the shaft assembly comprising: a proximal segment; a clevis including: an elongated outer body defining a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components; a first wall projecting from the elongated outer body into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade; and a second inner wall projecting from the elongated outer body into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of first and second electric wires; a distal segment rotationally fixed to the clevis and having a nub keyed to a slot defined in the elongated outer body of the clevis; and an articulating link pivotably coupled to and interconnecting the proximal segment and the distal segment, the articulating link including a pair of spaced-apart pivot flags, wherein the distal segment is articulatable with the clevis relative to the proximal segment, and wherein the distal segment defines a pair of depressions configured to receive the corresponding pair of spaced-apart pivot flags of the articulating link in longitudinal alignment with the nub.
  19. The shaft assembly according to claim 18, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.
  20. The shaft assembly according to claim 18, wherein the elongated outer body of the clevis defines a longitudinally-extending slot therein configured for receipt of a proximal flange of a jaw member.
  21. The shaft assembly according to claim 18, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway.

Description

The present disclosure relates to surgical instruments and, more specifically, to articulating surgical instruments for use in robotic surgical systems.

Robotic surgical systems are increasingly utilized in various surgical procedures. Some robotic surgical systems include a console supporting a robotic arm. One or more different surgical instruments may be configured for use with the robotic surgical system and selectively mountable to the robotic arm. The robotic arm provides one or more inputs to the mounted surgical instrument to enable operation of the mounted surgical instrument.

The surgical instruments or portions thereof may be configured as single-use instruments or portions that are discarded after use, or may be configured as reusable instruments or portions that are cleaned and sterilized between uses. Regardless of the configurations of the surgical instruments, the console and robotic arm are capital equipment configured for long-term, repeated use. The console and robotic arm may be protected by a sterile barrier during use and/or wiped clean after use to ensure cleanliness for subsequent uses.

As used herein, the term “distal” refers to the portion that is being described which is further from an operator (whether a human surgeon or a surgical robot), while the term “proximal” refers to the portion that is being described which is closer to the operator. The terms “about,” substantially,” and the like, as utilized herein, are meant to account for manufacturing, material, environmental, use, and/or measurement tolerances and variations, and in any event may encompass differences of up to 10%.

Citations (45)

  • US5848986A
  • US5752973A
  • US5792135A
  • US20070233052A1
  • US6394998B1
  • US6840938B1
  • US20020099371A1
  • US20060079889A1
  • US20020177842A1
  • US6817974B2
  • US20030125734A1
  • US20030208186A1
  • US20060022015A1
  • US20060025811A1
  • US7799028B2
  • US8579176B2
  • US20070282358A1
  • US20080015631A1
  • US20100274265A1
  • US20100179540A1
  • US7918230B2
  • US7861906B2
  • US20100292691A1
  • US20110118754A1
  • US20110118707A1
  • US20110118709A1
  • US20110118708A1
  • US9474569B2
  • US9055961B2
  • US20120289946A1
  • US20130123783A1
  • US20160066982A1
  • US20130140835A1
  • US20140012290A1
  • US20170224367A1
  • US20160256152A1
  • WO2017136710A2
  • US20190298466A1
  • US20180206904A1
  • WO2019036418A1
  • WO2019118337A1
  • WO2019173268A1
  • US20200237453A1
  • US20200237455A1
  • US20200405423A1
Record as JSON
{
  "publication_number": "US11896333B2",
  "country": "US",
  "kind": "B2",
  "title": "Robotic surgical instrument",
  "abstract": "A robotic surgical instrument includes a housing, a shaft assembly extending distally from the housing, and an end effector assembly. The shaft assembly has a proximal segment coupled to the housing, a clevis supporting the end effector assembly, and an articulating link pivotably coupled to and interconnecting the proximal segment and the clevis such that the end effector assembly is configured to articulate relative to the proximal segment via the articulating link in at least two directions.",
  "claims": [
    "1. A robotic surgical instrument, comprising: a housing; a shaft assembly extending distally from the housing and including: a proximal segment coupled to the housing; a clevis defining a slot in a proximal end thereof; a distal segment fixed to the clevis and having a nub keyed to the slot of the clevis; and an articulating link pivotably coupled to and interconnecting the proximal segment and the distal segment; and an end effector assembly coupled to the clevis and extending distally therefrom, wherein the end effector assembly is configured to articulate relative to the proximal segment via the articulating link, wherein the distal segment defines a depression therein and the articulating link includes a pivot flag pivotably received in the depression in longitudinal alignment with the nub, and wherein the clevis and distal segment are fixed in rotational alignment relative to one another upon operational engagement of the nub within the slot.",
    "2. The robotic surgical instrument according to claim 1, wherein the distal segment includes: a body portion received in the proximal end of the clevis; and a pair of opposed, spaced-apart pivot flags extending proximally from the body portion, each of the pivot flags of the distal segment pivotably coupled to the articulating link.",
    "3. The robotic surgical instrument according to claim 1, wherein the articulating link has a pair of opposed, spaced-apart pivot flags, and the distal segment includes a pair of opposed, spaced-apart pivot flags pivotably coupled to the respective pivot flags of the articulating link, and wherein the distal segment defines first and second depressions therein, and the pivot flags of the articulating link are pivotably received in the respective first and second depressions.",
    "4. The robotic surgical instrument according to claim 1, wherein the clevis includes an elongated outer body defining a longitudinally-extending slot therein, the end effector having a proximal flange received in the slot such that the elongated outer body prevents lateral movement of the end effector.",
    "5. The robotic surgical instrument according to claim 1, wherein the clevis defines a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components.",
    "6. The robotic surgical instrument according to claim 5, wherein the plurality of actuation components extend distally from the housing and through the shaft assembly to operably couple to at least one of: the end effector assembly, the distal segment, or the clevis to enable selective actuation of the end effector assembly.",
    "7. The robotic surgical instrument according to claim 5, wherein the clevis has a first wall projecting into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade.",
    "8. The robotic surgical instrument according to claim 7, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.",
    "9. The robotic surgical instrument according to claim 7, wherein the clevis further includes a second inner wall projecting into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of a pair of first and second electric wires.",
    "10. The robotic surgical instrument according to claim 9, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway.",
    "11. A robotic surgical instrument, comprising: a housing; a shaft assembly extending distally from the housing and including: a proximal segment coupled to the housing; a clevis defining a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components, the clevis including a slot defined in a proximal end thereof; an articulating link pivotably coupled to and interconnecting the proximal segment and the clevis, the articulating link including a pair of spaced-apart pivot flags; a distal segment rotationally fixed to the clevis and articulatable with the clevis relative to the proximal segment, the distal segment including a nub keyed to the slot defined in the clevis, the distal segment defining a pair of depressions configured to receive the corresponding pair of spaced-apart pivot flags of the articulating link in longitudinal alignment with the nub; and an end effector assembly coupled to the clevis and extending distally therefrom, wherein the end effector assembly is configured to articulate relative to the proximal segment via the articulating link, wherein the clevis has a first wall projecting into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade.",
    "12. The robotic surgical instrument according to claim 11, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.",
    "13. The robotic surgical instrument according to claim 11, wherein the clevis includes an elongated outer body defining a longitudinally-extending slot therein, the end effector having a proximal flange received in the slot such that the elongated outer body prevents lateral movement of the end effector.",
    "14. The robotic surgical instrument according to claim 11, wherein the clevis further includes a second inner wall projecting into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of first and second electric wires.",
    "15. The robotic surgical instrument according to claim 14, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway.",
    "16. The robotic surgical instrument according to claim 11, wherein the plurality of actuation components extend distally from the housing and through the shaft assembly to operably couple to at least one of the end effector assembly or the clevis to enable selective actuation of the end effector assembly.",
    "17. The robotic surgical instrument according to claim 16, wherein actuating the end effector assembly includes at least one of: articulating the end effector assembly; manipulating the end effector assembly; advancing a component through the end effector assembly; or energizing the end effector assembly.",
    "18. A shaft assembly configured for attachment to a robotic arm, the shaft assembly comprising: a proximal segment; a clevis including: an elongated outer body defining a longitudinally-extending central channel therethrough configured for passage of a plurality of actuation components; a first wall projecting from the elongated outer body into the central channel, the first wall defining a longitudinally-extending first passageway configured for slidable receipt of at least one of a knife rod or a knife blade; and a second inner wall projecting from the elongated outer body into the central channel, the second inner wall defining a pair of longitudinally-extending second and third passageways configured for receipt of first and second electric wires; a distal segment rotationally fixed to the clevis and having a nub keyed to a slot defined in the elongated outer body of the clevis; and an articulating link pivotably coupled to and interconnecting the proximal segment and the distal segment, the articulating link including a pair of spaced-apart pivot flags, wherein the distal segment is articulatable with the clevis relative to the proximal segment, and wherein the distal segment defines a pair of depressions configured to receive the corresponding pair of spaced-apart pivot flags of the articulating link in longitudinal alignment with the nub.",
    "19. The shaft assembly according to claim 18, wherein the first passageway has an arcuate section configured for slidable receipt of the knife rod, and a planar section configured for slidable receipt of the knife blade.",
    "20. The shaft assembly according to claim 18, wherein the elongated outer body of the clevis defines a longitudinally-extending slot therein configured for receipt of a proximal flange of a jaw member.",
    "21. The shaft assembly according to claim 18, wherein the second inner wall has a first opening extending from the central channel into the second passageway to allow for lateral passage of the first wire into the second passageway, and the second inner wall has a second opening extending from the central channel into the third passageway to allow for lateral passage of the second wire into the third passageway."
  ],
  "description_excerpt": "The present disclosure relates to surgical instruments and, more specifically, to articulating surgical instruments for use in robotic surgical systems.\n\nRobotic surgical systems are increasingly utilized in various surgical procedures. Some robotic surgical systems include a console supporting a robotic arm. One or more different surgical instruments may be configured for use with the robotic surgical system and selectively mountable to the robotic arm. The robotic arm provides one or more inputs to the mounted surgical instrument to enable operation of the mounted surgical instrument.\n\nThe surgical instruments or portions thereof may be configured as single-use instruments or portions that are discarded after use, or may be configured as reusable instruments or portions that are cleaned and sterilized between uses. Regardless of the configurations of the surgical instruments, the console and robotic arm are capital equipment configured for long-term, repeated use. The console and robotic arm may be protected by a sterile barrier during use and/or wiped clean after use to ensure cleanliness for subsequent uses.\n\nAs used herein, the term “distal” refers to the portion that is being described which is further from an operator (whether a human surgeon or a surgical robot), while the term “proximal” refers to the portion that is being described which is closer to the operator. The terms “about,” substantially,” and the like, as utilized herein, are meant to account for manufacturing, material, environmental, use, and/or measurement tolerances and variations, and in any event may encompass differences of up to 10%.",
  "cpc": [
    "A61B 34/70",
    "A61B 18/1445",
    "A61B 2017/2908",
    "A61B 2034/305",
    "A61B 34/30",
    "A61B 34/35",
    "A61B 34/71",
    "A61B 90/03",
    "B25J 15/0028",
    "B25J 15/022",
    "B25J 15/0226"
  ],
  "ipc": [
    "A61B 34/00",
    "A61B 34/35",
    "A61B 90/00",
    "B25J 15/00",
    "B25J 15/02"
  ],
  "assignees": [
    "Covidien LP"
  ],
  "inventors": [
    "Dylan R. Kingsley",
    "Jason G. Weihe",
    "William R. Whitney",
    "Russell W. Holbrook",
    "Zachary S. Heiliger",
    "Curtis M. Siebenaller",
    "Crystal A. Adams",
    "Kurt J. Anglese"
  ],
  "filing_date": "2020-08-19",
  "publication_date": "2024-02-13",
  "grant_date": "2024-02-13",
  "priority_date": "2020-08-19",
  "application_number": "US-202016997413-A",
  "family_id": "77726548",
  "cited_by_count": 1,
  "citations": [
    "US5848986A",
    "US5752973A",
    "US5792135A",
    "US20070233052A1",
    "US6394998B1",
    "US6840938B1",
    "US20020099371A1",
    "US20060079889A1",
    "US20020177842A1",
    "US6817974B2",
    "US20030125734A1",
    "US20030208186A1",
    "US20060022015A1",
    "US20060025811A1",
    "US7799028B2",
    "US8579176B2",
    "US20070282358A1",
    "US20080015631A1",
    "US20100274265A1",
    "US20100179540A1",
    "US7918230B2",
    "US7861906B2",
    "US20100292691A1",
    "US20110118754A1",
    "US20110118707A1",
    "US20110118709A1",
    "US20110118708A1",
    "US9474569B2",
    "US9055961B2",
    "US20120289946A1",
    "US20130123783A1",
    "US20160066982A1",
    "US20130140835A1",
    "US20140012290A1",
    "US20170224367A1",
    "US20160256152A1",
    "WO2017136710A2",
    "US20190298466A1",
    "US20180206904A1",
    "WO2019036418A1",
    "WO2019118337A1",
    "WO2019173268A1",
    "US20200237453A1",
    "US20200237455A1",
    "US20200405423A1"
  ]
}

Record 554 of 8,000 in Patents full text (MLC-0201). Request the full dataset.