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V Tullo

Publications and source records attributed to V Tullo.

4 recordsLinked to original sources

Neuroimaging and pain: a window on the autonomic nervous system.

Pain is one of the most common experiences of humans. Neuroimaging techniques can visualize the main brain areas involved in pain modulation, the pain matrix. It is noteworthy that many of the brain areas forming the pain matrix are also involved in modulating autonomic nervous system (ANS) activity that in turn plays a major role in determining the best adaptive response to the pain experience. The tight connection between the pain system and ANS is also evident from neuroanatomical studies indicating that the lamina 1 neurons receive both painful and visceral stimuli from all visceral organs giving rise to the spinothalamocortical pathway concerned with conveying interoceptive information to central structures. The resulting interoceptive stream projects to the viscerosensory cortex in the mid-insula and onto the right anterior insula and orbitofrontal cortices. Right anterior insula activation is involved in the sympathetic arousal associated with mental tasks. This brain region receives numerous other inputs including pain and painful stimuli are conveyed somatotopically to both insulae. A similar somatotopic organization of painful stimuli has also been shown in the basal ganglia involved in cognitive, affective, motor and autonomic states. This highly specialized organization of nociceptive information in these brain areas may subserve a number of functions, particularly of coupling pain with the most appropriate autonomic states and affective/emotional states. The anterior cingulated cortex, another brain area playing a crucial role in nociception, is also directly involved in the control of autonomic functions such as arousal during volitional behaviour, including effortful cognitive processing. It is evident that the nociceptive system and ANS closely interact in many processes involved in maintaining internal homeostatis and in order to give the most appropriate biological substrate for cognitive, affective and emotional states.

Autonomic Nervous System↗

Reflections on the nosology of cranio-facial pain syndromes.

Orofacial pain syndromes have traditionally been divided into two groups: the typical neuralgias and atypical facial pain. While typical neuralgias are well characterised, the term atypical facial pain (now persistent idiopathic facial pain) covers a variety of poorly defined head and face pains whose aetiological mechanisms are poorly understood. This paper examines the characteristics and nosography of these conditions, and suggests they should not be considered as neuralgias (section 13 of the 2004 IHS classification) but as other primary headaches (section 4).

Facial Neuralgia↗

Deep brain stimulation and cluster headache.

In recent years, neuroimaging data have greatly improved the knowledge on trigeminal autonomic cephalalgias' (TACs) central mechanisms. Positron emission tomography studies have shown that the posterior inferior hypothalamic grey matter is activated during cluster headache attacks as well as in short-lasting unilateral neuralgiform headache attacks with conjunctival injection and tearing (SUNCT). Voxel-based morphometric MRI has also documented alteration in the same area in cluster headache patients. These data suggest that the cluster headache generator is located in this region and leads us to hypothesise that stimulation of this brain area could relieve intractable cluster headache just as deep brain stimulation improves intractable movements disorders. This view received support by the observation that high frequency stimulation of the ipsilateral hypothalamus prevented attacks in an otherwise intractable chronic cluster headache patient previously treated unsuccessfully by surgical procedures to the trigeminal nerve. So far, 16 patients with intractable cronic cluster headache (CCH) and one intractable SUNCT patient have been successfully treated by hypothalamic stimulation. The procedures were well tolerated with no significant adverse events. Hypothalamic DBS is an efficacious and safe procedure to relieve otherwise intractable CCH and SUNCT.

Cluster Headache↗

Strategies for the treatment of autonomic trigeminal cephalalgias.

Trigeminal autonomic cephalalgias (TACs) are a group of primary headache syndromes characterised by two main clinical characteristics: pain and oculofacial autonomic phenomena. Three headache forms are grouped as TACs: cluster headache (CH), paroxysmal hemicrania (PH) and short-lasting unilateral neuralgiform headache attacks with conjunctival injection and tearing (SUNCT). These are distinguished mainly on the basis of attack duration. It lasts from 15 to 180 min in CH, from 2 to 30 min in PH and from 5 to 240 s in SUNCT. The most effective drug preventative in PH is indomethacin even if in few cases other non-steroidal anti-inflammatory drugs have been reported to be effective. SUNCT is commonly described as drug resistant. Recent studies report that lamotrigin may be the drug of choice for SUNCT.

Adrenal Cortex Hormones↗