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  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Neuroscience and Physiology / Inst för neurovetenskap och fysiologi
  • Doctoral Theses / Doktorsavhandlingar Institutionen för neurovetenskap och fysiologi
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  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Neuroscience and Physiology / Inst för neurovetenskap och fysiologi
  • Doctoral Theses / Doktorsavhandlingar Institutionen för neurovetenskap och fysiologi
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Thin-fibre signalling in humans: Cortical processing of sensory afference and autonomic efference

Sammanfattning
Thin nerve fibres innervate the entire human body and mediate sensations such as pain, temperature and visceral sensory input. Moreover, a special class of unmyelinated afferents responsive to light touch has recently been found in humans: C-tactile (CT) fibres. In the efferent side, C-fibres are the path for signalling in the autonomic nervous system, controlling the internal milieu of the body. There is growing evidence that C-fibres form the basis for monitoring and regulating the physical status of the body. This thesis focuses on central projections of mild thin-fibre input and their integration with autonomic reactions. Brain activity was studied with functional magnetic resonance imaging (fMRI). The first paper examined cortical activation of selective CT-stimulation by soft tactile stimulation in two rare patients lacking Aβ fibres. The results confirmed previous findings based on one of these patients, showing that CT stimulation activates the insular cortex. In addition, CT stimulation deactivated somatosensory cortices. The second paper further investigated cortical effects of CT stimulation in healthy controls by comparing rapid vibration (predominantly activating Aβ fibres) and soft brush stroking (combined Aβ and CT activation) on the skin. The ventromedial prefrontal cortex was significantly more activated by brushing than by vibration, an area previously implied in coding for the expected emotional value of an event. The third paper focused on the role of CT fibres and autonomic function. We again studied the two Aβ deafferented patients to examine whether CT stimulation could evoke an autonomic response. We also examined their ability to localise the CT stimulations to the correct limb. Capacity for localisation of the stimulus was poor but above chance. Despite producing only a vague percept in the patients, the CT stimulus gave rise to a skin sympathetic reaction which was indexed by a galvanic skin response. The fourth paper studied the cortical mechanisms behind a restricted autonomic response elicited by a perceptually weak C-fibre input in healthy subjects. We used low-intensity rectal distension while recording autonomic variables and cortical responses. Rectal distension activated insular cortex. Central activation specifically related to the skin sympathetic response was, in addition to the brainstem, limited to the right inferior frontal gyrus (IFG). The CT evoked insular activation and the Aβ-denervated patients’ poor ability to localise a CT stimulation support the concept that these fibres underpin affective rather than discriminative aspects of touch. The rectal distension study indicated that insular activation via low-threshold mechanovisceral thin fibres predominantly reflects afferent processing whereas IFG and the brainstem may be important in the generation of autonomic responses. Further, the studies suggest that stimulus perception is a prerequisite for cutaneous autonomic responses to both CT and visceral thin fibre stimuli. These findings set the stage for future studies of thin nerve fibre function, including neural mechanisms of hedonic processing as well as pathophysiological studies of conditions such as irritable bowel syndrome, which may tease out putative contributions from afferent input, cognitive processing and autonomic consequences.
Delarbeten
I. Olausson HW, Cole J, Vallbo A, McGlone F, ElamM, Krämer HH, Rylander K, Wessberg J, Bushnell MC. Unmyelinated tactile afferents have opposite effects on insular and somatosensory cortical processing. Neuroscience Letters 2008 May 9; 436(2):128-32. ::PMID::18395979
 
II. Rylander K, Elam M, Olausson H. Cortical processing of tactile C-fibre stimulation. Manuscript
 
III. Olausson H, Cole J, Rylander K, McGlone F, Lamarre Y, Wallin BG, Krämer H, Wessberg J, Elam M, Bushnell MC, Vallbo A. Functional role of unmyelinated tactile afferents in human hairy skin: sympathetic response and perceptual localization. Experimental Brain Research 2008 Jan; 184(1):135-40. ::PMID::17962926
 
IV. Rylander K, Posserud I, Simrén M, Olausson H, Elam M. Central nervous control of cutaneous sympathetic responses: disentangling afferent and efferent processing of mild rectal distension. Submitted manuscript
 
Examinationsnivå
Doctor of Philosophy (Medicine)
Universitet
University of Gothenburg. Sahlgrenska Academy
Institution
Institute of Neuroscience and Physiology. Department of Clinical Neuroscience and Rehabilitation
Disputation
Fredagen den 11 december 2009, kl. 13.00, Hörsal Arvid Carlsson, Academicum, Medicinaregatan 3, Göteborg
Datum för disputation
2009-12-11
E-post
karin.rylander@neuro.gu.se
URL:
http://hdl.handle.net/2077/21181
Samlingar
  • Doctoral Theses / Doktorsavhandlingar Institutionen för neurovetenskap och fysiologi
  • Doctoral Theses from Sahlgrenska Academy
  • Doctoral Theses from University of Gothenburg / Doktorsavhandlingar från Göteborgs universitet
Fil(er)
Thesis frame (1.597Mb)
Abstract (204.1Kb)
Errata to thesis (105.0Kb)
Datum
2010-03-04
Författare
Rylander, Karin
Nyckelord
CT afferent
thin fibre
autonomic
insula
fMRI
Publikationstyp
Doctoral thesis
ISBN
978-91-628-7978-5
Språk
eng
Metadata
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