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Computed tomography guided stereotactic thalamotomy using the Brown-Roberts-Wells system for nonparkinsonian movement disorders. Technical note.

A technique is described for stereotactic thalamotomy, using the Brown-Roberts-Wells (BRW) system and computed tomography (CT) without the need for ventriculography. Previous reports have suggested that the BRW system lacks sufficient accuracy (compared with ventriculography) for CT-directed functional neurosurgery. However, using this method, our findings demonstrate excellent clinical accuracy and safety in 12 consecutive patients with nonparkinsonian movement disorders.

Accidents, Traffic↗

Modified solution for filling MRI coordinate indicators for the ZD stereotactic frame.

Increased use of magnetic resonance imaging and magnetic resonance angiography in stereotactic planning highlight some technical problems in imaging. Visualization of markers during imaging are vital in stereotactic planning. In magnetic resonance imaging-guided stereotaxy, specially designed plates are used that contain water-based copper sulfate solutions as a marker. Replacement of copper sulfate solution is usually required after some time due to precipitation and leaking. The refilling procedure is quite cumbersome and can cause technical problems in imaging. In this study, we describe copper sulfate solution mixed with a water-soluble gel as a simple but useful alternative to water-based copper sulfate resolution to ease the refilling procedure and to overcome the air bubbles.

Copper↗

A stereotactic technique for volumetric interstitial implantation in the brain.

Stereotaxis, a method of localizing a specific point using three dimensional coordinates, has greatly improved since the advent of computed tomography (CT). A simple, noninvasive stereotactic system which enables rapid, parallel placement of multiple interstitial catheters for treatment of malignant brain tumors has been developed. Departing from traditional stereotactic methods, the implantation procedure is performed in one stage--entirely in the CT suite. Perioperative nursing responsibilities include mastering the technical aspect of a high precision system as well as meeting the special needs of the patient undergoing this procedure. Initially developed for use in volumetric interstitial brachytherapy, the procedure is now being used in Phase II clinical trials of volumetric interstitial hyperthermia in the management of patients with intracranial malignancies.

Brachytherapy↗

Scalp marking of intracranial lesions using computed tomography (CT) images. A technical note.

A technique for scalp marking using computed tomography (CT) images is described. A reference marker is placed on the scalp and a plain lateral skull film is obtained. Using the CT scan image and the CT scout film, the target is marked on the plain skull film. The distance and angle of the target from the reference point on the plain film are measured and marked on the scalp to indicate the location of the target.

Brain Neoplasms↗

Attachment device for side-biting cannula in stereotactic biopsy--technical note.

An attachment device to fix a Sedan side-biting biopsy cannula to a stereotactic frame is described. The disadvantages of the biopsy cup forceps are resolved, and a relatively large amount of multiple specimens can be obtained along a single biopsy trajectory. This attachment device enables the side-biting cannula to follow a straight trajectory biopsy in various stereotactic frames.

Astrocytoma↗

[Preoperative location of deep subclinical breast lesions using the harpoon technic. Apropos of 149 cases].

Since April 1983, harpoon technique was used for limited excision of subclinical mammography-observed anomalies. The procedure involves the insertion of a harpoon-shaped metallic thread, after detection by mammography, to obtain guidance of surgical procedures. The results of 155 procedures in 149 patients included detection of 38 cancers (26%), confirming documented data in this field.

Adenofibroma↗

[Breast biopsies: stereotactic vacuum-assisted core biopsy and stereotactic surgical breast biopsy].

Stereotactically-guided procedures for diagnosis of breast lesions can avoid a lot of surgical biopsies. Stereotactic guidance is used for vacuum-assisted core biopsies and for stereotactic breast biopsies. Technical details of the procedures are described, and the benefits and the limits of these methods are discussed. Indications for breast sampling are proposed according to the Breast Imaging Reporting and Data System (BI-RADS) assessment categories.

Biopsy↗

Localization of brain tumors with a simple scalp-mounted fiducial device. Technical note.

A method is described for marking the site of a tumor on the scalp based on information from computerized tomography (CT) scans. The technique employs a syrinx-shaped array of radiopaque catheters of varying length taped to the patient's scalp for visualization on the CT scan. Fiducial markings on the CT images allow the transfer of the tumor's location directly onto the scalp. The device can be placed anywhere on the scalp, including in a parasagittal position.

Brain Neoplasms↗

Stereotactic support in the excision of brain tumors. Technical note.

The surgical resection of deep-seated brain tumors may be facilitated by CT guided stereotactic methods. The Authors present a procedure of preoperative localisation and delimitation of the border of a neoplastic mass facing important functional areas. Ideally tumor excision should not be extended beyond that boundary which for this reason is targeted and is stereotactically labeled using non diffusible dyes.

Adolescent↗

Determination of the burr hole-site using the Brown-Roberts-Wells stereotactic system. A simple marking technique: technical note.

The authors describe a new tool-set with which the determination of the burr hole-site using the BRW-stereotactic system can be done on a non-sterile-washed head. The described attainment permits an increased security, not only reducing exposure of the operative field to a minimum but also shortening the operative length. The use of this tool-set for marking smaller superficial cortical processes is also possible.

Computer Simulation↗

Experiences with cranial neuronavigation in pediatric neurosurgery.

Frameless, infrared-based neuronavigation (Surgical Microscope Navigator and Surgical Tool Navigator) was applied to intracranial neurosurgery in 22 children and infants (age range 7 months to 16 years). Predominant diagnoses were tumor and hydrocephalus (including multiloculated forms); the surgical procedures were open microneurosurgery in 10 cases and neuroendoscopy in 12 patients. There were no principal technical problems even in very young infants. Surgical and clinical results were satisfying in all cases. Neuronavigation proved to be particularly helpful in targeting deep-seated processes and in guiding neuroendoscopy in cases of multiloculated hydrocephalus or small ventricles.

Adolescent↗

Interactive MR-guided biopsies of maxillary and skull-base lesions in an open-MR system: first clinical results.

The purpose of this study was to explore the potential of interactive MR-guided biopsies in the maxillary and skull base region using a 0.5-T open-configuration scanner in patients with tumours affecting the maxilla or skull base. Ten patients with cystic or solid tumours affecting the maxillary and skull base regions underwent MR-guided biopsy in a superconducting, open 0.5-T MR system equipped with an optical frameless stereotaxic system. T2-weighted spin-echo images were acquired prior to and following biopsy, which was performed with 18- or 22-G needles using an enoral or percutaneous approach following infiltration of the skin, mucosa and periosteum with local anaesthetics. The position of the needle tip was continuously updated on fast T1-weighted gradient-recalled-echo images (TR 19 ms, TE 7.1 ms, flip angle 30 degrees, slice thickness 1 cm, field of view 24 x 24 cm) using the frameless stereotaxic system. In addition, the needle was identified based on the associated susceptibility artefact in all three planes. Once the target lesion had been reached, cytology material was aspirated. All ten patients tolerated the interactive MR-guided biopsies well without complications. Vital structures, including the brain, neurovascular bundles, vessels and eyes, were visualized on MR imaging and could be spared. There was no difference in the use of 18- or 22-G non-ferromagnetic needles concerning the susceptibility artefact. Sufficient material for cytological analysis was obtained in nine of ten cases. The mean biopsy time was 15 min. Interactive MR-guided biopsies of the head and neck in an open system are technically feasible and safe. Monitoring of the needle path in multiple planes permits the interactive adjustment of the needle course in near real time. Interactive MR-guided biopsies may well replace open surgical procedures in the maxillary region in selected patients.

Adult↗

Intracerebral depth electrode monitoring in partial epilepsy: the morbidity and efficacy of placement using magnetic resonance image-guided stereotactic surgery.

OBJECTIVE: To determine the indications for, efficacy of, and safety of depth electrode placement using magnetic resonance imaging (MRI)-guided stereotactic surgery in patients with intractable epilepsy. METHODS: We analyzed retrospectively the results of depth electrode usage in 50 consecutive patients at the University of Michigan Hospitals studied in the years 1991 through 1994, using MRI-guided stereotactic implantation, in conjunction with simultaneous subdural strip electrode recordings. RESULTS: There were no deaths, no infections, and no new neurological deficits. One small subdural hematoma adjacent to a subdural strip electrode was evacuated to prevent interference with ictal recording. Two cylindrical subdural electrodes were found to be intraparenchymal, as revealed by postoperative MRI, and were removed. One patient was unintentionally left alone briefly, and he pulled out the electrodes while confused postictally, requiring a subsequent operation for replacement. Ictal onset zones were successfully localized in 47 patients. CONCLUSION: We have found intracerebral electrode placement to be as safe as subdural strip electrode placement and have found combined depth and strip electrode monitoring to be highly effective in localizing the onset zones of complex partial seizures. Intracranial monitoring was particularly useful in the detection of a single ictal onset zone in the absence of neuroimaging abnormality and in the definitive diagnosis of bilateral independent ictal onset zones in the temporal lobe epilepsy syndrome. The specific technical aspects of the procedure that contribute to a successful outcome are reviewed. A comparison with earlier reported series suggests that MRI-guided stereotaxy and pial inspection may reduce complications of depth electrode placement.

Brain Mapping↗

[The robotization of neurosurgery: state of the art and future outlook].

Neurosurgery is by excellence a field of application for robots, based on multimodal image guidance. Specific motorized tools have been already developed and routinely applied in stereotaxy to position a probe holder or in conventional neurosurgery to hold a microscope oriented towards a given target. The potentialities of these approaches have triggered industrial developments currently commercially available. These systems use data bases, primarily coming from multimodal numerical images from X-ray radiology to magnetic resonance imaging. These spatially encoded data are transferred through digital networks to workstations where images can be processed and surgical procedures are preplanned, then transferred to the robotic systems to which they are connected. We have been using a stereotactic robot since 1989 and a microscope robot since 1995 in various surgical routine procedures. The future of these applications mainly rely on the technical progress in informatics, about image recognition to adapt the preplanning to the actual surgical situation, to correct brain shifts for instance, about image fusion, integrated knowledge such such as brain atlases, as well as virtual reality. The future developments, covering surgical procedure, research and teaching, will sure be far beyond our wildest expectations.

Forecasting↗

Interactive MR-guided biopsies of the thyroid gland: validation of a new method.

The aim of this study was to demonstrate the clinical feasibility and utility of an interactive MR-guidance system to target and biopsy thyroid lesions, and to compare resolution between ultrasound and interventional MR imaging in the evaluation of thyroid lesions. Twenty thyroid lesions of 18 patients were interactively biopsied using a 0.5-T superconducting open magnet system. Stereotactic localization of the needle and imaging was accomplished using T1-weighted gradient-recalled-echo (GRE) images. Representative cytological material was retrieved in 16 of 20 lesions (benign cystic or colloid goiter: n = 14; one de Quervain's thyroiditis and one follicular neoplasia). Lesions smaller than 1.5 cm detected by ultrasound could not be visualized adequately on GRE images. Lesions smaller than 1.5 cm were successfully biopsied by ultrasound (three colloid and haemorrhagic goiters and one adenoma). Magnetic-resonance-guided interactive biopsies and positioning of non-ferromagnetic needles in the thyroid gland are technically feasible and safe. Compared with high-resolution ultrasound, lesions larger than 1.5 cm can be adequately visualized and biopsied. Magnetic-resonance-guided placement of non-ferromagnetic needles is no substitute for high-resolution ultrasound in clinical work-up of thyroid lesions.

Biopsy, Needle↗

Image-guided surgery for skull base neoplasms using the ISG viewing wand. Anatomic and technical considerations.

Image-guided surgery of the cranial base requires a knowledge of both surgical anatomy and the technical aspects of the particular system being used. The authors report on their experience using the ISG Viewing Wand over the last two years, concentrating on the technical considerations for the use of the system and lessons learned. Image-guided surgical systems may well replace the current forms of intraoperative imaging used for anatomic orientation and localization and are considered a valuable addition to the armamentarium of the skull base surgeon.

Brain Neoplasms↗

A newly designed attachment device of multipurpose frame for neuronavigator. Technical note.

A newly designed attachment device of the multipurpose head frame (Sugita) for Neuronavigator (Watanabe) is presented with an illustrative case of glioblastoma in an eloquent area. This has extended the usefulness of the neuronavigator for those who prefer and use the multipurpose head frame, while the requirements for keeping a stereotactic combination and the original concept of the multipurpose head frame, as well as that of the neuronavigator have been kept undisturbed.

Aged↗

[First experiences with a new vacuum-assisted device for breast biopsy].

OBJECTIVE AND METHODS: Stereotaxic and sonographically guided vacuum biopsies are standard methods in interventional breast procedures. We report about the newly developed sonographically guided and vacuum-assisted VacuFlash (VF) method for breast biopsy. In comparison to the Mammotome system, all components for vacuum biopsy are integrated in the hand-held gun of the VF biopsy system. Our first preliminary results in 5 patients are reported. RESULTS: VF was performed in five patients with a nonpalpable, sonographically detectable lesion. The histopathological examination diagnosed a fibroadenoma in 4 patients and established unremarkable breast parenchyma in 1 patient. Subsequent sonography immediately after the biopsy revealed that 3 of the 5 lesions were completely removed. CONCLUSION: The VF biopsy system is a new, technically perfected and applicable diagnostic method. Its costs, risks and accuracy have to be compared with high-speed core cut biopsy, hand-held Mammotome system and open surgical biopsy. Indications for the VF-biopsy are lesions that are too small, superficial or deep for conventional core biopsy as well as abnormalities where wide sampling is considered important. Complete removal can only be expected when the lesion is small and plays a secondary role in a diagnostic process. High-speed core cut biopsy remains the standard procedure in percutaneous breast interventions to clarify sonographically detected breast lesions.

Biopsy↗