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Pedicle screws have shown to be a safe and effective method of spinal fixation, offering superior multiplanar correction compared with hooks or sublaminar wires in selected situations.
To develop a novel method of spinal pedical stereotaxy by reverse engineering and rapid prototyping techniques, and to validate its accuracy by experimental and clinical studies.
Considering these facts we developed our own method of spinal rotation and derotation assessment.
Scoliometer clinical evaluation is the simplest indirect method of spinal rotation assessment during the Adams Forward Bending Test (AFBT).
The complexity of the procedure, the nature of the spinal deformity and often-debilitated patients make complications very common, and this technique should remain one of the last resorts when no simpler method of spinal reconstruction will suffice [ 24].
Over the past few years we have been developing a method of spinal cord stimulation (SCS) that is designed to enable more precise activation of targeted pathways within the human spinal cord [ 1, 2].
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The majority of studies have described the development and utility of spinal clearance criteria, tools or methods of spinal immobilisation (Vaillancourt et al. 2011; Hauswald et al. 1998; Kwan et al. 2001).
Although there are numerous methods of spinal axial rotation measurements, the majority of them are indirect techniques, which use landmark identification such as Cobb method based on spinal processes positioning [ 1].
We have developed a novel method of measuring spinal cord-evoked potentials with stimulation and recording at the intercostal nerves (transintercostal-evoked spinal cord potential: Tic-ESCP).
Human spinal cord injuries are extremely variable in their extent and pathology [17], therefore a reproducible method of producing spinal trauma is required, otherwise potentially useful therapies will be lost in the haze of variability.
This study provides a reproducible method of assaying spinal microglial dynamics following peripheral nerve injury both quantitatively and spatially.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com