TY - JOUR
T1 - Neural substrates of spatial and temporal disorientation in Alzheimer's disease
AU - Giannakopoulos, Panteleimon
AU - Gold, Gabriel
AU - Duc, Myriam
AU - Michel, Jean Pierre
AU - Hof, Patrick R.
AU - Bouras, Constantin
N1 - Funding Information:
Acknowledgements We thank Dr. F. Herrmann for statistical analysis, Drs. N. K. Robakis and A. Delacourte for generously providing antibodies to tau and Ab amyloid proteins, Dr. E. Giacobini for helpful discussion, and M. Surini and P. Y. Vallon for expert technical assistance. This work was supported by grant AG05138 from the National Institutes of Health, Bethesda, Md. (P.R.H.), and by grant 31-52997.97 from the Swiss National Science Foundation, Bern, Switzerland (P.G. and C.B.).
PY - 2000/8
Y1 - 2000/8
N2 - To examine the neuroanatomical correlates of spatial and temporal disorientation in Alzheimer's disease (AD), we performed an anterograde clinicopathological study of 29 patients with clinically and neuropathologically confirmed AD. Spatial and temporal disorientation was assessed using the locational orientation subtests of the Mini Mental State Examination and the Benton's test for temporal orientation. Quantitative analysis of neurofibrillary tangles and senile plaques were performed in the CA1 field of the hippocampus, layers II and V of the entorhinal cortex, and layers II-III and V-VI of areas 9, 7, 39, 19, 37, 20 and 23 in the right hemisphere. Forward stepwise logistic regression was used to assess the relationship between lesion densities and the presence of either spatial or temporal disorientation; severity scores and brain weight were included as covariants. A statistically significant relationship was found between neurofibrillary tangle densities in Brodmann's areas 7, 23 and the CA1 field of hippocampus and both spatial and temporal disorientation. Senile plaque counts did not correlate with any of the neuropsychological parameters. Both temporal and spatial disorientation in AD are related to the degeneration of the same pathways linking the hippocampus with the superior parietal and posterior cingulate cortex in the right hemisphere. These observations are discussed with respect to the notion of global corticocortical disconnection in AD.
AB - To examine the neuroanatomical correlates of spatial and temporal disorientation in Alzheimer's disease (AD), we performed an anterograde clinicopathological study of 29 patients with clinically and neuropathologically confirmed AD. Spatial and temporal disorientation was assessed using the locational orientation subtests of the Mini Mental State Examination and the Benton's test for temporal orientation. Quantitative analysis of neurofibrillary tangles and senile plaques were performed in the CA1 field of the hippocampus, layers II and V of the entorhinal cortex, and layers II-III and V-VI of areas 9, 7, 39, 19, 37, 20 and 23 in the right hemisphere. Forward stepwise logistic regression was used to assess the relationship between lesion densities and the presence of either spatial or temporal disorientation; severity scores and brain weight were included as covariants. A statistically significant relationship was found between neurofibrillary tangle densities in Brodmann's areas 7, 23 and the CA1 field of hippocampus and both spatial and temporal disorientation. Senile plaque counts did not correlate with any of the neuropsychological parameters. Both temporal and spatial disorientation in AD are related to the degeneration of the same pathways linking the hippocampus with the superior parietal and posterior cingulate cortex in the right hemisphere. These observations are discussed with respect to the notion of global corticocortical disconnection in AD.
KW - Cortical connections
KW - Neurofibrillary tangles
KW - Neuropathology
UR - https://www.scopus.com/pages/publications/0033949104
U2 - 10.1007/s004019900166
DO - 10.1007/s004019900166
M3 - Article
C2 - 10963367
AN - SCOPUS:0033949104
SN - 0001-6322
VL - 100
SP - 189
EP - 195
JO - Acta Neuropathologica
JF - Acta Neuropathologica
IS - 2
ER -