Laparoscopic surgical device with modular end tools for real-time endomicroscopy and therapy.

In recent years, laparoscopic surgery attracts considerable attention for its distinct advantages owing to minimized invasiveness. However, traditional surgical instruments have a single function and lack the ability to provide high-resolution images for real-time tissue assessment. Thus, it remains...

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Publicado en:Medical & Biological Engineering & Computing Vol. 59; no. 4; pp. 787 - 798
Autores principales: Wang, Haibo, Zuo, Siyang
Formato: Journal Article
Publicado: Springer Nature Apr2021
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Apr2021
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      pub: Springer Nature
      place: New York, New York
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        atl: Laparoscopic surgical device with modular end tools for real-time endomicroscopy and therapy.
      aug:
        au:
          Wang, Haibo
          Zuo, Siyang
        affil: Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education, Tianjin University, 300072, Tianjin, China
      sug:
        subj:
          Laparoscopy
          Robotic Surgical Procedures
          Surgical Instruments
          Equipment Design
      ab: In recent years, laparoscopic surgery attracts considerable attention for its distinct advantages owing to minimized invasiveness. However, traditional surgical instruments have a single function and lack the ability to provide high-resolution images for real-time tissue assessment. Thus, it remains a challenge to perform complex procedures with the traditional surgical instruments. In this paper, a novel laparoscopic surgical device for real-time endomicroscopy and therapy is proposed. The device is integrated with a visualization unit to provide endoscopic images in a constrained cavity for real-time observation. Moreover, modular end tools can be assembled and switched with the multi-DOF manipulator. The experimental results demonstrate that the surface-scanning tool can perform smooth scanning and obtain a large area mosaic of 6.99 mm2 in 40.2 s for tissue assessment. The spring-loaded forceps can generate an output force of 1.47 N to manipulate tissue. These experimental results demonstrate the potential value of the device for intraoperative endomicroscopy-guided surgery and robot-assisted surgery.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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