Introduction: The utility of surgical simulation with three-dimensional multimodality fusion imaging (3D-MFI) has been demonstrated. However, its potential in deep-seated brain lesions remains unknown. The aim of this study was to investigate the impact of 3D-MFI in deep-seated meningioma operations. Material and Methods: Fourteen patients with deeply located meningiomas were included in this study. We constructed 3D-MFIs by fusing high-resolution magnetic resonance (MR) and computed tomography (CT) images with a rotational digital subtraction angiogram (DSA) in all patients. The surgical procedure was simulated by 3D-MFI prior to operation. To assess the impact on neurosurgical education, the objective values of surgical simulation by 3D-M...
Objectives. The vertiginous, progressive development of the contemporary imaging techniques, such as...
Purpose: Three-dimensional (3D) virtual planning of reconstructive surgery, after resection, is a fr...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
OBJECTIVE: Despite advancement of surgical techniques, the attachments of petroclival meningiomas ne...
Objective: The aim of this study is to determine feasibility of incorporating three-dimensional (3D)...
We propose critical considerations on the usefulness of CT, MRI, and fMRI imaging fusion for the tre...
Objective The aim of this study is to determine feasibility of incorporating three-dimensional (3D) ...
Background: In Neurosurgery, 3D technology has emerged as a technique with the potential to provide ...
[Background] Surgical resection of diffuse low-grade gliomas (DLGGs) involving cortical eloquent are...
Background Preoperative recognition of the anatomic individualities of each patient can help to achi...
Objective: To address the feasibility and predictive value of multimodal image-based 3D reconstructi...
Open skull surgery of deeply located intracerebral lesions requires precise determination of the tre...
Background: Skull base meningiomas represent a challenge for neurosurgeons, and the procedures are t...
BACKGROUND: Adequate surgical planning includes a precise understanding of patient-specific anatomy ...
Objective: Surgery in patients with lesions in eloquent areas is still a challenge for the neurosurg...
Objectives. The vertiginous, progressive development of the contemporary imaging techniques, such as...
Purpose: Three-dimensional (3D) virtual planning of reconstructive surgery, after resection, is a fr...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
OBJECTIVE: Despite advancement of surgical techniques, the attachments of petroclival meningiomas ne...
Objective: The aim of this study is to determine feasibility of incorporating three-dimensional (3D)...
We propose critical considerations on the usefulness of CT, MRI, and fMRI imaging fusion for the tre...
Objective The aim of this study is to determine feasibility of incorporating three-dimensional (3D) ...
Background: In Neurosurgery, 3D technology has emerged as a technique with the potential to provide ...
[Background] Surgical resection of diffuse low-grade gliomas (DLGGs) involving cortical eloquent are...
Background Preoperative recognition of the anatomic individualities of each patient can help to achi...
Objective: To address the feasibility and predictive value of multimodal image-based 3D reconstructi...
Open skull surgery of deeply located intracerebral lesions requires precise determination of the tre...
Background: Skull base meningiomas represent a challenge for neurosurgeons, and the procedures are t...
BACKGROUND: Adequate surgical planning includes a precise understanding of patient-specific anatomy ...
Objective: Surgery in patients with lesions in eloquent areas is still a challenge for the neurosurg...
Objectives. The vertiginous, progressive development of the contemporary imaging techniques, such as...
Purpose: Three-dimensional (3D) virtual planning of reconstructive surgery, after resection, is a fr...
To access publisher's full text version of this article, please click on the hyperlink in Additional...