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K de Vos

Publications and source records attributed to K de Vos.

3 recordsLinked to original sources

Quantitative architectural analysis: a new approach to cortical mapping.

Recent progress in anatomical and functional MRI has revived the demand for a reliable, topographic map of the human cerebral cortex. Till date, interpretations of specific activations found in functional imaging studies and their topographical analysis in a spatial reference system are, often, still based on classical architectonic maps. The most commonly used reference atlas is that of Brodmann and his successors, despite its severe inherent drawbacks. One obvious weakness in traditional, architectural mapping is the subjective nature of localising borders between cortical areas, by means of a purely visual, microscopical examination of histological specimens. To overcome this limitation, more objective, quantitative mapping procedures have been established in the past years. The quantification of the neocortical, laminar pattern by defining intensity line profiles across the cortical layers, has a long tradition. During the last years, this method has been extended to enable a reliable, reproducible mapping of the cortex based on image analysis and multivariate statistics. Methodological approaches to such algorithm-based, cortical mapping were published for various architectural modalities. In our contribution, principles of algorithm-based mapping are described for cyto- and receptorarchitecture. In a cytoarchitectural parcellation of the human auditory cortex, using a sliding window procedure, the classical areal pattern of the human superior temporal gyrus was modified by a replacing of Brodmann's areas 41, 42, 22 and parts of area 21, with a novel, more detailed map. An extension and optimisation of the sliding window procedure to the specific requirements of receptorarchitectonic mapping, is also described using the macaque central sulcus and adjacent superior parietal lobule as a second, biologically independent example. Algorithm-based mapping procedures, however, are not limited to these two architectural modalities, but can be applied to all images in which a laminar cortical pattern can be detected and quantified, e.g. myeloarchitectonic and in vivo high resolution MR imaging. Defining cortical borders, based on changes in cortical lamination in high resolution, in vivo structural MR images will result in a rapid increase of our knowledge on the structural parcellation of the human cerebral cortex.

Algorithms↗

Autonomic dysfunction in Parkinson's disease, tested with a computerized method using a Finapres device.

An automated program using a Finapres device and a personal computer, using a battery of five cardiovascular reflex tests has been developed. This has been used to study cardiovascular autonomic dysfunction in 23 ambulant patients with Parkinson's disease, without disabling fluctuations, and 23 age-matched healthy controls, as a screening method to detect autonomic dysfunction. In one patient only a Finapres signal of insufficient quality due to the tremor excluded subsequent analysis. Heart rate response to forced breathing was abnormal (below the fifth percentile of 124 normals) in six (26.1%) of parkinsonian patients and in one (4.3%) healthy age- and sex-matched control, to standing up four (17.4%) versus none, and to the Valsalva manoeuvre seven (30.4%) versus two (8.7%) respectively. The blood pressure response to standing up was abnormal in two (8.7%) parkinsonian patients and in none of the controls, while the response to sustained handgrip was abnormal in five (21.7%) patients versus one (4.3%) control. Autonomic dysfunction is commonly defined as an abnormal score on two or more of the five tests. Using this arbitrary definition, five patients with Parkinson's disease (= 23%) had cardiovascular autonomic dysfunction, and none of the controls were abnormal.

Autonomic Nervous System Diseases↗