Effect of Dexmedetomidine Combined Anesthesia on Motor evoked Potentials During Brain Tumor Surgery

2019 ◽  
Vol 123 ◽  
pp. e280-e287 ◽  
Author(s):  
Woo Hyung Lee ◽  
Chul-Kee Park ◽  
Hee-Pyoung Park ◽  
Sung-Min Kim ◽  
Byung-Mo Oh ◽  
...  
2018 ◽  
Vol 129 (3) ◽  
pp. 576-582 ◽  
Author(s):  
Fumio Yamaguchi ◽  
Hirotomo Ten ◽  
Tadashi Higuchi ◽  
Tomoko Omura ◽  
Toyoyuki Kojima ◽  
...  

Intraoperative 3D recognition of the motor tract is indispensable to avoiding neural fiber injury in brain tumor surgery. However, precise localization of the tracts is sometimes difficult with conventional mapping methods. Thus, the authors developed a novel brain mapping method that enables the 3D recognition of the motor tract for intrinsic brain tumor surgeries. This technique was performed in 40 consecutive patients with gliomas adjacent to motor tracts that have a risk of intraoperative pyramidal tract damage. Motor tracts were electrically stimulated and identified by a handheld brain-mapping probe, the NY Tract Finder (NYTF). Sixteen-gauge plastic tubes were mounted onto the NYTF and inserted in the estimated direction of the motor tract with reference to navigational information. Only the NYTF was removed, leaving the plastic tubes in their places, immediately after muscle motor evoked potentials were recorded at the minimum stimulation current. Motor tracts were electrically identified in all cases. Three-dimensional information on the position of motor tracts was given by plastic tubes that were neurophysiologically placed. Tips of tubes showed the resection limit during tumor removal. Safe tumor resection with an arbitrary safety margin can be performed by adjusting the length of the plastic tubes. The motor tract positioning method enabled the 3D recognition of the motor tract by surgeons and provided for safe resection of tumors. Tumor resections were performed safely before damaging motor tracts, without any postoperative neurological deterioration.


2018 ◽  
Author(s):  
C.H.B. van Niftrik ◽  
F. van der Wouden ◽  
V. Staartjes ◽  
J. Fierstra ◽  
M. Stienen ◽  
...  

2019 ◽  
Author(s):  
Estela Val Jordan ◽  
Agustín Nebra Puertas ◽  
Juan Casado Pellejero ◽  
Maria Dolores Vicente Gordo ◽  
Concepción Revilla López ◽  
...  

Author(s):  
Gennadiy A. Katsevman ◽  
Walter Greenleaf ◽  
Ricardo García-García ◽  
Maria Victoria Perea ◽  
Valentina Ladera ◽  
...  

2020 ◽  
Vol 2 (Supplement_3) ◽  
pp. ii2-ii2
Author(s):  
Tatsuya Abe

Abstract It is reported that the development of new perioperative motor deficits was associated with decreased overall survival despite similar extent of resection and adjuvant therapy. The maximum safe resection without any neurological deficits is required to improve overall survival in patients with brain tumor. Surgery is performed with various modalities, such as neuro-monitoring, photodynamic diagnosis, neuro-navigation, awake craniotomy, intraoperative MRI, and so on. Above all, awake craniotomy technique is now the standard procedure to achieve the maximum safe resection in patients with brain tumor. It is well known that before any treatment, gliomas generate globally (and not only focally) altered functional connectomics profiles, with various patterns of neural reorganization allowing different levels of cognitive compensation. Therefore, perioperative cortical mapping and elucidation of functional network, neuroplasticity and reorganization are important for brain tumor surgery. On the other hand, recent studies have proposed several gene signatures as biomarkers for different grades of gliomas from various perspectives. Then, we aimed to identify these biomarkers in pre-operative and/or intra-operative periods, using liquid biopsy, immunostaining and various PCR methods including rapid genotyping assay. In this presentation, we would like to demonstrate our surgical strategy based on molecular and functional connectomics profiles.


2021 ◽  
Vol 201 ◽  
pp. 106420
Author(s):  
Mayla Santana Correia ◽  
Iuri Santana Neville ◽  
Cesar Cimonari de Almeida ◽  
Cintya Yukie Hayashi ◽  
Luana Talita Diniz Ferreira ◽  
...  

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