A frameless, armless navigational system for computer-assisted neurosurgery. Technical note.
about
From the idea to its realization: the evolution of minimally invasive techniques in neurosurgery.Dipole source localization of mouse electroencephalogram using the Fieldtrip toolbox.Basic principles and clinical applications of neuronavigation and intraoperative computed tomography.[Navigation in urological surgery: Possibilities and limits of current techniques].BrainLab VectorVision Neuronavigation System: technology and clinical experiences in 131 cases.Correlation of the CT Compatible Stereotaxic Craniotomy with MRI Scans of the Patients for Removing Cranial Lesions Located Eloquent Areas and Deep Sites of Brain.Repurposing the anti-malarial drug dihydroartemisinin suppresses metastasis of non-small-cell lung cancer via inhibiting NF-κB/GLUT1 axis.Stereotactic navigation for TAMIS-TME.The use of intraoperative computed tomography navigation in pituitary surgery promises a better intraoperative orientation in special cases.Comparative tracking error analysis of five different optical tracking systems.Neuronavigation: principles, clinical applications and potential pitfalls.Computer-generated microsurgical anatomy of the paraclinoid area.Real-time tracking of vertebral body movement with implantable reference microsensors.Hybrid Frame-based Neuronavigation.Advanced cranial navigation.Enhanced anatomic visualization with ultrasound-assisted intracranial image-guidance in neurosurgery.Measurement of intraoperative brain surface deformation under a craniotomy.Effect of optical digitizer selection on the application accuracy of a surgical localization system-a quantitative comparison between the OPTOTRAK and flashpoint tracking systems.Frameless stereotaxy and anterior cervical surgery.The insular lobe: physiopathological and surgical considerations.Clinical application of a surgical navigation system based on virtual laparoscopy in laparoscopic gastrectomy for gastric cancer.[Evaluation of a DC pulsed magnetic tracking system in neurosurgical navigation: technique, accuracies, and influencing factors].Stereotactic navigation for TAMIS-TME: opening the gateway to frameless, image-guided abdominal and pelvic surgery.
P2860
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P2860
A frameless, armless navigational system for computer-assisted neurosurgery. Technical note.
description
1991 nî lūn-bûn
@nan
1991年の論文
@ja
1991年論文
@yue
1991年論文
@zh-hant
1991年論文
@zh-hk
1991年論文
@zh-mo
1991年論文
@zh-tw
1991年论文
@wuu
1991年论文
@zh
1991年论文
@zh-cn
name
A frameless, armless navigatio ...... neurosurgery. Technical note.
@en
A frameless, armless navigatio ...... neurosurgery. Technical note.
@nl
type
label
A frameless, armless navigatio ...... neurosurgery. Technical note.
@en
A frameless, armless navigatio ...... neurosurgery. Technical note.
@nl
prefLabel
A frameless, armless navigatio ...... neurosurgery. Technical note.
@en
A frameless, armless navigatio ...... neurosurgery. Technical note.
@nl
P2093
P1476
A frameless, armless navigatio ...... neurosurgery. Technical note.
@en
P2093
Hayakawa T
Yoshimine T
P304
P356
10.3171/JNS.1991.74.5.0845
P407
P577
1991-05-01T00:00:00Z