Literature DB >> 27104847

A novel miniature robotic guidance device for stereotactic neurosurgical interventions: preliminary experience with the iSYS1 robot.

Georgi Minchev1, Gernot Kronreif2, Mauricio Martínez-Moreno1, Christian Dorfer1, Alexander Micko1, Aygül Mert1, Barbara Kiesel1, Georg Widhalm1, Engelbert Knosp1, Stefan Wolfsberger1.   

Abstract

OBJECTIVE Robotic devices have recently been introduced in stereotactic neurosurgery in order to overcome the limitations of frame-based and frameless techniques in terms of accuracy and safety. The aim of this study is to evaluate the feasibility and accuracy of the novel, miniature, iSYS1 robotic guidance device in stereotactic neurosurgery. METHODS A preclinical phantom trial was conducted to compare the accuracy and duration of needle positioning between the robotic and manual technique in 162 cadaver biopsies. Second, 25 consecutive cases of tumor biopsies and intracranial catheter placements were performed with robotic guidance to evaluate the feasibility, accuracy, and duration of system setup and application in a clinical setting. RESULTS The preclinical phantom trial revealed a mean target error of 0.6 mm (range 0.1-0.9 mm) for robotic guidance versus 1.2 mm (range 0.1-2.6 mm) for manual positioning of the biopsy needle (p < 0.001). The mean duration was 2.6 minutes (range 1.3-5.5 minutes) with robotic guidance versus 3.7 minutes (range 2.0-10.5 minutes) with manual positioning (p < 0.001). Clinical application of the iSYS1 robotic guidance device was feasible in all but 1 case. The median real target error was 1.3 mm (range 0.2-2.6 mm) at entry and 0.9 mm (range 0.0-3.1 mm) at the target point. The median setup and instrument positioning times were 11.8 minutes (range 4.2-26.7 minutes) and 4.9 minutes (range 3.1-14.0 minutes), respectively. CONCLUSIONS According to the preclinical data, application of the iSYS1 robot can significantly improve accuracy and reduce instrument positioning time. During clinical application, the robot proved its high accuracy, short setup time, and short instrument positioning time, as well as demonstrating a short learning curve.

Entities:  

Keywords:  CE = contrast-enhanced, contrast enhancement; EM = electromagnetic; RPU = robot-positioning unit; RTE = real target error; TAE = target alignment error; accuracy; biopsy; frameless; robotic device; stereotaxy; surgical technique

Mesh:

Year:  2016        PMID: 27104847     DOI: 10.3171/2016.1.JNS152005

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  12 in total

1.  Highlights from the First Annual Spinal Navigation, Emerging Technologies and Systems Integration Meeting.

Authors:  Doniel Drazin; Peter Grunert; Roger Hartl; David Polly; Bernhard Meyer; Ken Catchpole; Ilya Laufer; Rajiv Sethi; Tiffany Perry; David Simon; Michael Wang; Charles Fisher; Marissa Scribner; Genevieve White; R Shane Tubbs; Rod J Oskouian; Terrence Kim; J Patrick Johnson
Journal:  Ann Transl Med       Date:  2018-03

2.  Frameless robot-assisted stereotactic biopsy: an effective and minimally invasive technique for pediatric diffuse intrinsic pontine gliomas.

Authors:  Min Wang; Yi Zhang; Wei Shi; Renqing Zhu; Hao Li; Rui Zhao
Journal:  J Neurooncol       Date:  2022-08-23       Impact factor: 4.506

3.  A novel technique for fence-post tube placement in glioma using the robot-guided frameless neuronavigation technique under exoscope surgery: patient series.

Authors:  Shinichiro Koizumi; Yuki Shiraishi; Ippei Makita; Makoto Kadowaki; Tetsuro Sameshima; Kazuhiko Kurozumi
Journal:  J Neurosurg Case Lessons       Date:  2021-12-13

4.  Frameless stereotactic brain biopsy and external ventricular drainage placement using the RONNA G4 system.

Authors:  Marina Raguž; Domagoj Dlaka; Darko Orešković; Anđelo Kaštelančić; Darko Chudy; Bojan Jerbić; Bojan Šekoranja; Filip Šuligoj; Marko Švaco
Journal:  J Surg Case Rep       Date:  2022-05-31

5.  5-ALA fluorescence and laser Doppler flowmetry for guidance in a stereotactic brain tumor biopsy.

Authors:  Neda Haj-Hosseini; Johan C O Richter; Peter Milos; Martin Hallbeck; Karin Wårdell
Journal:  Biomed Opt Express       Date:  2018-04-20       Impact factor: 3.732

6.  Improving patient safety during introduction of novel medical devices through cumulative summation analysis.

Authors:  Vejay N Vakharia; Roman Rodionov; Andrew W McEvoy; Anna Miserocchi; Rachel Sparks; Aidan G O'Keeffe; Sebastien Ourselin; John S Duncan
Journal:  J Neurosurg       Date:  2018-02-16       Impact factor: 5.115

7.  Robot-assisted stereotactic brainstem biopsy in children: prospective cohort study.

Authors:  William Dawes; Hani J Marcus; Martin Tisdall; Kristian Aquilina
Journal:  J Robot Surg       Date:  2018-12-06

8.  Robot-assisted stereotactic brain biopsy: systematic review and bibliometric analysis.

Authors:  Hani J Marcus; Vejay N Vakharia; Sebastien Ourselin; John Duncan; Martin Tisdall; Kristian Aquilina
Journal:  Childs Nerv Syst       Date:  2018-05-10       Impact factor: 1.475

Review 9.  Navigation Systems for Treatment Planning and Execution of Percutaneous Irreversible Electroporation.

Authors:  Irene Fuhrmann; Ute Probst; Philipp Wiggermann; Lukas Beyer
Journal:  Technol Cancer Res Treat       Date:  2018-01-01

10.  The Effect of Vascular Segmentation Methods on Stereotactic Trajectory Planning for Drug-Resistant Focal Epilepsy: A Retrospective Cohort Study.

Authors:  Vejay N Vakharia; Rachel Sparks; Sjoerd B Vos; Andrew W McEvoy; Anna Miserocchi; Sebastien Ourselin; John S Duncan
Journal:  World Neurosurg X       Date:  2019-08-05
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