• World Neurosurg · Feb 2022

    Neuronavigation applied to Piezosurgery: towards Robotic image-aided craniotomies? A technical note.

    • Paolo Ferroli, Guglielmo Iess, Giulio Bonomo, Gabriella Raccuia, and Morgan Broggi.
    • Department of Neurosurgery, Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.
    • World Neurosurg. 2022 Feb 1; 158: 148-151.

    BackgroundAlthough simple in its concept, craniotomy can still cause serious consequences to the patient. A recent alternative to standard techniques (i.e., perforator and craniotome) is represented by piezosurgery (PS), which exploits a microvibration-emitting blade that cuts the bone directly from the outer surface of the skull. Although PS has been demonstrated to decrease complications, dural lacerations and neurovascular injuries are still possible from inadvertent penetration of the inner tabula. Modern neuronavigation systems can provide the surgeon with the possibility to track the instrument while carving the skull, thus potentially lowering the complication rates.MethodsTwo cases of miniretromastoid craniotomy for trigeminal neuralgia were performed using neuronavigated PS. Before surgery, the patients underwent volumetric brain magnetic resonance imaging and computed tomography. The piezosurgical cutter was registered on the S8 StealthStation neuronavigation system (Medtronic, Dublin, Ireland) using the step-by-step cranial standard instrument calibration protocol.ResultsThe craniotomy was performed with the surgeon using the neuronavigation monitor to visualize both the position and the trajectory of the instrument's blade while penetrating the bone. No dural lacerations or neurovascular injuries were reported. At the end of the procedure, the bone flaps were perfectly repositioned within their craniotomy margins without the use of cranial fixation devices.ConclusionsNeuronavigated PS has the potential to decrease craniotomy-related complication rates. By allowing for real-time visualization of the blade's level of penetration, it provides the surgeon with the ability to halt progression when needed, avoiding dural lacerations and neurovascular injuries. The principles behind this technique could anticipate the advent of robotic-image aided craniotomy.Copyright © 2021 Elsevier Inc. All rights reserved.

      Pubmed     Full text   Copy Citation     Plaintext  

      Add institutional full text...

    Notes

     
    Knowledge, pearl, summary or comment to share?
    300 characters remaining
    help        
    You can also include formatting, links, images and footnotes in your notes
    • Simple formatting can be added to notes, such as *italics*, _underline_ or **bold**.
    • Superscript can be denoted by <sup>text</sup> and subscript <sub>text</sub>.
    • Numbered or bulleted lists can be created using either numbered lines 1. 2. 3., hyphens - or asterisks *.
    • Links can be included with: [my link to pubmed](http://pubmed.com)
    • Images can be included with: ![alt text](https://bestmedicaljournal.com/study_graph.jpg "Image Title Text")
    • For footnotes use [^1](This is a footnote.) inline.
    • Or use an inline reference [^1] to refer to a longer footnote elseweher in the document [^1]: This is a long footnote..

    hide…

What will the 'Medical Journal of You' look like?

Start your free 21 day trial now.

We guarantee your privacy. Your email address will not be shared.