The Click-On gamma probe, a second-generation tethered robotic gamma probe that improves dexterity and surgical decision-making.

Purpose: Decision-making and dexterity, features that become increasingly relevant in (robot-assisted) minimally invasive surgery, are considered key components in improving the surgical accuracy. Recently, DROP-IN gamma probes were introduced to facilitate radioguided robotic surgery. We now studie...

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Publicado en:European Journal of Nuclear Medicine & Molecular Imaging Vol. 48; no. 13; pp. 4142 - 4152
Autores principales: Azargoshasb, Samaneh, van Alphen, Simon, Slof, Leon J., Rosiello, Giuseppe, Puliatti, Stefano, van Leeuwen, Sven I., Houwing, Krijn M., Boonekamp, Michael, Verhart, Jeroen, Dell'Oglio, Paolo, van der Hage, Jos, van Oosterom, Matthias N., van Leeuwen, Fijs W. B.
Formato: Journal Article
Publicado: Springer Nature Dec2021
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Dec2021
      vid: 48
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      pub: Springer Nature
      place: New York, New York
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        10.1007/s00259-021-05387-z
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        atl: The Click-On gamma probe, a second-generation tethered robotic gamma probe that improves dexterity and surgical decision-making.
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          Azargoshasb, Samaneh
          van Alphen, Simon
          Slof, Leon J.
          Rosiello, Giuseppe
          Puliatti, Stefano
          van Leeuwen, Sven I.
          Houwing, Krijn M.
          Boonekamp, Michael
          Verhart, Jeroen
          Dell'Oglio, Paolo
          van der Hage, Jos
          van Oosterom, Matthias N.
          van Leeuwen, Fijs W. B.
        affil: Interventional Molecular Imaging-Laboratory, Department of Radiology, Leiden University Medical Center, Leiden, the Netherlands
      sug:
      ab: Purpose: Decision-making and dexterity, features that become increasingly relevant in (robot-assisted) minimally invasive surgery, are considered key components in improving the surgical accuracy. Recently, DROP-IN gamma probes were introduced to facilitate radioguided robotic surgery. We now studied if robotic DROP-IN radioguidance can be further improved using tethered Click-On designs that integrate gamma detection onto the robotic instruments themselves. Methods: Using computer-assisted drawing software, 3D printing and precision machining, we created a Click-On probe containing two press-fit connections and an additional grasping moiety for a ProGrasp instrument combined with fiducials that could be video tracked using the Firefly laparoscope. Using a dexterity phantom, the duration of the specific tasks and the path traveled could be compared between use of the Click-On or DROP-IN probe. To study the impact on surgical decision-making, we performed a blinded study, in porcine models, wherein surgeons had to identify a hidden 57Co-source using either palpation or Click-On radioguidance. Results: When assembled onto a ProGrasp instrument, while preserving grasping function and rotational freedom, the fully functional prototype could be inserted through a 12-mm trocar. In dexterity assessments, the Click-On provided a 40% reduction in movements compared to the DROP-IN, which converted into a reduction in time, path length, and increase in straightness index. Radioguidance also improved decision-making; task-completion rate increased by 60%, procedural time was reduced, and movements became more focused. Conclusion: The Click-On gamma probe provides a step toward full integration of radioguidance in minimal invasive surgery. The value of this concept was underlined by its impact on surgical dexterity and decision-making.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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