Stereotactic Guidance

Stereotactic guidance is a precision technique that uses three-dimensional coordinates to localize targets within the brain, enabling accurate planning and instrument placement in neuroscience. It combines anatomical landmarks, medical imaging, and specialized guidance systems to translate a target identified on scans into a controlled surgical trajectory. Depending on the procedure, clinicians may use a rigid frame or frameless navigation to guide electrodes, biopsy needles, injection devices, or other instruments while limiting disruption to surrounding tissue. This approach supports deep brain stimulation, neurosurgical biopsy, targeted drug delivery, and experimental studies of brain circuits, improving measurement accuracy and treatment precision.

Stereotactic Guidance - Related Videos

Research

JoVE Journal - Behavior

Operative Technique and Nuances for the Stereoelectroencephalographic (SEEG) Methodology Utilizing a Robotic Stereotactic Guidance System

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Cited by 1 •

2023

The SEEG methodology is simplified and made faster with a stereotactic robot. Careful attention must be paid to the registration of the preoperative volumetric MRI to the patient prior to use of the robot in the OR. The robot streamlines the procedure, leading to decreased operative times and accurate implantations.

Research

JoVE Journal - Medicine
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Stereotactic Radiosurgery for Gynecologic Cancer

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Cited by 14 •

2012

Stereotactic body radiotherapy (SBRT) involves image-guided, ablative radiation delivered to cancer targets refractory to chemotherapy or to conventional radiation treatment. The robotic-armed Cyberknife SBRT system, using sophisticated target localization, delivers hypofractionated radiation doses capable of sterilizing cancer targets. This article will consider new therapeutic roles of SBRT for gynecological cancers.

Automated Robotic Dispensing Technique for Surface Guidance and Bioprinting of Cells

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Cited by 9 •

2016

This protocol describes a bioprinting methodology using an automated robotic depositing system that incorporates etched topographical guidance cues with the precision deposition of a cell bearing hydrogel bioink. The printed cells are directly delivered to the etched features and are able to sense and orientate with them.

Use of pHluorin to Assess the Dynamics of Axon Guidance Receptors in Cell Culture and in the Chick Embryo

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Cited by 10 •

2014

We describe here the use of a pH-sensitive green fluorescent protein variant, pHluorin, to study the spatio-temporal dynamics of axon guidance receptors trafficking at the cell surface. The pHluorin-tagged receptor is expressed both in cell culture and in vivo, using electroporation of the chick embryo.

Applying Stereotactic Injection Technique to Study Genetic Effects on Animal Behaviors

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Cited by 15 •

2015

Stereotactic injection of lentiviruses expressing cDNAs or shRNAs can modulate gene expression in specific brain areas of mice. Here, we present a protocol to combine stereotactic injections with behavioral tasks, such as the Open Field Test (OFT) and the Forced Swim Test (FST).

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