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F Seijo

Publications and source records attributed to F Seijo.

10 recordsLinked to original sources

Changes in arterial blood pressure induced by percutaneous thermocoagulation of the trigeminal ganglion and rootlets.

The changes in arterial blood pressure which occur during the different steps of thermocoagulation of the trigeminal ganglion and rootlets are reported. The arterial blood pressure of 54 patients with trigeminal neuralgia was recorded continuously by catheterization of the radial artery. The maximal values were recorded (a) during the analgesic-sedation stage; (b) when the electrode came into contact with the base of the cranium during movement of the needle towards the foramen ovale; (c) during insertion of the electrode into the foramen ovale, and (d) during the thermocoagulation. One-way analysis of variance and Student's t test were used for analysis of the data. There was a significant increase of arterial blood pressure during the various stages of thermocoagulation.

Aged↗

Changes in hypothalamic met-enkephalin levels of rats induced by painful stimulation and morphine treatment.

The possible influence of painful stimulation and morphine analgesia on hypothalamic met-enkephalin levels, and the possible correlation between this biochemical parameter and animal behaviour was studied. The results indicate that both painful stimulation and morphine treatment induce an increase in hypothalamic metenkephalin. On the other hand, naloxone did not cause any variation. In animals submitted to painful stimulus, morphine treatment induced a decrease in hypothalamic met-enkephalin levels. Finally, when both morphine and naloxone were administrated before nociceptive stimulation, much higher levels were measured. There was no correlation between the level of hypothalamic met-enkephalin and the pain rating.

Animals↗

[Stereotactic target identification for neurosurgery of Parkinson disease].

INTRODUCTION: The use of applied neurophysiological methods to improve the stereotactic localization of devices in the deep human brain is a high and systematic technology in Parkinson's neurosurgery today. The available standard equipment for clinical neurophysiology practice may constitute the basic set for high tech functional neurosurgery. Free run and event related multiunit recording, naturalistic and electrical evoked potentials, and deep brain microstimulation responses are the basic methodological set to neurophysiological target localization. DEVELOPMENT AND CONCLUSIONS: This article is concerned with the topic: set out a high technology using low cost equipment. So our 41 cases experienced in pallidal and thalamic nucleolisis and thalamus and subthalamus DBS results suggest that the proposed equipment and methods are the required to assure accuracy and safety for target location.

Cost-Benefit Analysis↗

[Neurophysiological monitoring in the treatment of pain].

INTRODUCTION: The concept of transynaptic deafferentation secondary to a lesion is the basis of the therapeutic criteria of functional neurosurgery. DEVELOPMENT: Pain due to deafferentation requires clinical neurophysiological techniques for characterization, and when appropriate, for localization of the level of the lesion and the ectopic focus or foci which cause the pain syndrome. However, monitoring therapeutic interventions in the pain clinic is an ever increasing need, and obliges the clinical neurophysiologist to master the range of techniques involved in his specialty, so that he can use the most suitable techniques and methods as required by each condition and/or case. The use of techniques such as micro-recordings of the unitary or multiunitary activity of the nerves or nuclei, intracerebral evoked potentials, nociceptive evoked potentials, reflexology, polysomnography and topography, together with techniques such as percutaneous objective localization of deep nerves, allows quantitative evaluation pre-, intra- and postoperative. CONCLUSION: The development of neuromodulation, and in particular of acute or long-term neurostimulation by use of percutaneous techniques, offers an effective therapeutic option in the field of clinical neurophysiology.

Cost-Benefit Analysis↗

[Applied neurophysiology in the deep brain stimulation treatment of multiple sclerosis tremor].

INTRODUCTION: Many patients with multiple sclerosis (MS) develop tremors that may involve one or both lower and/or upper extremities, head and/or voice. In the last few years, chronic high frequency deep brain stimulation of the ventral intermedious (Vim) thalamic nucleus (Vim-DBS, deep brain stimulation) seems to be gradually replacing Vim-thalamotomy in surgical treatment of tremor. The thalamotomy is a destructive procedure of the whole neural components, whereas Vim-DBS has shown to be a selective neurophysiological procedure to block a specific group of neural components, in particular large, fast and low threshold ones. MS is a disease of uncertain etiology characterized by demyelinating plaques in central nervous system. The neurophysiological intraoperative targeting applied to this pathology identifies demyelinated plaques and the functional state of Vim, reduces pitfalls and increases accuracy. Methods included spontaneous and induced multiunit activity recording, semimicroelectrode and tetraelectrode thalamic evoked potentials recording and micro/macro stimulation techniques.

Adult↗

[An automatic system for anatomophysiological correlation in three planes simultaneously during functional neurosurgery].

INTRODUCTION: The Neurosurgical Deep Recording System (NDRS) using a personal computer takes the place of complex electronic equipment for recording and processing deep cerebral electrical activity, as a guide in stereotaxic functional neurosurgery. It also permits increased possibilities of presenting information in direct graphic form with automatic management and sufficient flexibility to implement different analyses. OBJECTIVE: This paper describes the possibilities of automatic simultaneous graphic representation in three almost orthogonal planes, available with the new 5.1 version of NDRS so as to facilitate the analysis of anatomophysiological correlation in the localization of deep structures of the brain during minimal access surgery. MATERIAL AND METHODS: This new version can automatically show the spatial behaviour of signals registered throughout the path of the electrode inside the brain, superimposed simultaneously on sagittal, coronal and axial sections of an anatomical atlas of the brain, after adjusting the scale automatically according to the dimensions of the brain of each individual patient. This may also be shown in a tridimensional representation of the different planes themselves intercepting. RESULTS: The NDRS system has been successfully used in Spain and Cuba in over 300 functional neurosurgery operations. The new version further facilitates analysis of spatial anatomophysiological correlation for the localization of brain structures. CONCLUSION: This system has contributed to increase the precision and safety in selecting surgical targets in the control of Parkinson s disease and other disorders of movement.

Brain↗

[An experimental pain model: the formaldehyde test].

Some papers have been published in relation to alternative models of experimental pain in animals. In this work, with the aim of proving the validity, safety, reproducibility and objectivity of this model, we have compared the behaviour of the animal under the formaldehyde test before and after the intracerebroventricular administration of morphine, proving itself as an ideal model for the study of chronic pain caused by an excess of nociception.

Animals↗