Search results
All genres
Meeting Abstract (71)
2012
Meeting Abstract
Layer-dependent orientational structure in primary human somatosensory (S1) and motor cortices (M1). In 18th Annual Meeting of the Organization for Human Brain Mapping (OHBM 2012). (2012)
Meeting Abstract
High-resolution diffusion-weighted imaging of the orientational structure of motor and somatosensory cortex in human cadaver brain. In Proceedings of the 20th Annual Meeting of the International Society for Magnetic Resonance in Medicine. (2012)
2011
Meeting Abstract
Intracortical structure in the human primary visual cortex visualized by high-resolution DWI. In ESMRMB CONGRESS 2011, 28th Annual Scientific Meeting. (2011)
Meeting Abstract
Cortical profiles of diffusion weighted imaging (DWI) data differ between cortical areas. In Book of Abstracts, ESMRMB 2012, 29th Annual Scientific Meeting, p. 320 - 320. (2011)
Meeting Abstract
Visualization of the orientational structure of the human stria of gennari with high-resolution DWI. In Proceedings of the 19th scientific meeting ISMRM, Montreal, p. 2371 - 2371. (2011)
Meeting Abstract
Visualization of the orientational structure of the human stria of Gennari with high resolution DWI. In Proceedings of the 17th annual meeting of the organization for human brain mapping, Quebec, #982. (2011)
Meeting Abstract
17 (5-6), p. 268 - 268. (2011)
Rhythmus in Verkleidung: Warum melodische Intonation wohl nicht der Schlüssel zu nicht flüssiger Aphasie ist. In Neurologie und Rehabilitation, 2009
Meeting Abstract
Connectivity-based parcellation of the human inferior parietal cortex - new insights into the problem of structure-function relationships in humans and Macaques. In 35. Arbeitstagung Psychophysiologie und Methodik, p. 109. Leipziger Universitätsverlag GmbH, Leipzig (2009)
Meeting Abstract
47 (Supplement 1), p. S127. (2009)
Connectivity-based parcellation of the human inferior parietal cortex – new insights into the problem of structure-function relationships in humans and Macaques. In NeuroImage,
Meeting Abstract
MRT-basierte Volumetrie und Subparzialisierung des Hypothalamus. In . (2009)
Meeting Abstract
T²* mapping of human post-mortem brain at 7T. In Proceedings of the 15th Annual Meeting of the Organization for Human Brain Mapping, pp. 234 F - PM. (2009)
2008
Meeting Abstract
Cortical connections of human inferior parietal area PF: trobabilistic cytoarchitectonic mapping and diffusion Tensor tractography show a similar structural organization as compared to Macaques. In Proceedings of the 14th Annual Meeting of the Organization for Human Brain Mapping, pp. 651 W - AM. (2008)
2006
Meeting Abstract
31 (Suppl. 1), pp. CD - ROM. (2006)
Cortical connectivity of human inferior parietal area PF: Diffusion tensor tractography combined with cytoarchitectonic mapping implies equivalencies between humans and macaques. In NeuroImage, 2005
Meeting Abstract
26 (Suppl. 1), pp. CD - ROM. (2005)
Cytoarchitectonic analysis of the human inferior parietal cortex: A population map in MNI space. In NeuroImage, 2004
Meeting Abstract
878.12. (2004)
The macaque inferior parietal lobule: Neurochemistry and cytoarchitecture. In Abstract Viewer/Itinerary Planner, Washington, DC: Society for Neuroscience, 2003
Meeting Abstract
19 (2), p. [CD-ROM]. (2003)
Imagery of voluntary movements of fingers, toes, and tongue activates corresponding body-part specific motor representations. In NeuroImage, 2002
Meeting Abstract
16 (2), pp. CD - ROM. (2002)
Cytoarchitectonic analysis and stereotaxic map of the human secondary somatosensory cortex region. In NeuroImage,
Meeting Abstract
262.2. (2002)
A 3-D population map of Brodmanns area 6 (supplementary motor and premotor cortex) in humans. In Abstract Viewer/Itinerary Planner, Washington, DC: Society for Neuroscience,
Meeting Abstract
16 (2), pp. CD - ROM. (2002)
The human primary motor cortex: Probabilistic cytoarchitecture and function in MNI reference space. In NeuroImage, 2001
Meeting Abstract
13, p. S1130 - S1130. (2001)
Differential processing of tactile shape and other mechanoreceptive stimuli in somatosensory cortex. In NeuroImage,