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B Pakkenberg

Publications and source records attributed to B Pakkenberg.

57 records · Page 4Linked to original sources

No deficit in total number of neurons in the prefrontal cortex in schizophrenics.

The prefrontal cortex (PFC), defined as the cortical region which has the major reciprocal connections with the mediodorsal thalamic nucleus (MD), has often been implicated in schizophrenia. Morphometric studies have shown altered neuronal density and structure in parts of the PFC in schizophrenic brains. In addition, the MD and nucleus accumbens have shown a significant deficit in total neuron number. The purpose of the present study was to estimate the total neuron number in the PFC in schizophrenics and controls. Using a stereological design, the PFC was studied in eight brains from schizophrenic patients and 10 age-matched control brains. The bilateral average total number of neurons in the PFC was estimated to be 2.76 x 10(9) (CV=S.D./mean=0.15) in the schizophrenic brains whereas that of controls was a non-significantly different value of 3.11 x 10(9) (CV=0.22; P=0.23). Furthermore, no significant differences were found between the two groups in neuronal density (P=0.10) or volume of the PFC (P=0.49). It is of course possible that a neuronal deficit, which cannot be revealed when estimating the total global number of neurons in the whole PFC, might exist in a subregion of the PFC. In conclusion, uniform loss of neuronal soma in the PFC does not appear to constitute the neural substrate of the pathological process in schizophrenia.

Adult↗

Age-induced white matter changes in the human brain: a stereological investigation.

In the present pilot study, age-related white matter changes were investigated by the use of design-based stereological methods. In the brains of elderly subjects, the total volume of the white matter and the total volume of the myelinated fibers therein were lower than in those of young subjects (15% and 17%, respectively), but the differences were not statistically significant. The total length of the myelinated fibers of the white matter in the elderly group of 86,000 km was, statistically, significantly decreased by 27% compared with 118,000 km in the young group. This loss of the total nerve fiber length was accompanied in particular by a decline of the myelinated fibers with a small diameter. The mean diameter of the myelinated fibers in the young group was significantly smaller than in the old group, but the relative size distributions of the myelinated fiber diameters between the young and old groups were similar. Our findings show that the atrophy of the human white matter during ageing is probably caused by a loss of myelinated fibers with a small diameter.

Adult↗

Six billion neurons lost in AIDS. A stereological study of the neocortex.

Human immunodeficiency virus type 1 (HIV1) is neurotropic. One of the morphological changes that is seen in patients with acquired immunodeficiency syndrome (AIDS) is cerebral atrophy affecting various structures including the neocortex. The cause of atrophy is not known. The total number of neocortical neurons was estimated in formalin fixed brains of 12 males with AIDS and 12 male controls matched for age and height. The mean number of neocortical neurons was 16.0 x 10(9) (coefficient of variation = 0.11) in the AIDS patients compared with 21.9 x 10(9) (coefficient of variation = 0.22) in the controls, a difference of approximately six billion (p < 0.005, 2-tailed). The global neuronal loss was 37%, and affected all four neocortical lobes. Ten patients did not have a history of central nervous system symptoms; two patients had a history of dementia. The number of neurons in the AIDS cases was not associated with dementia. AIDS is the first disease in which a global loss of neocortical neurons has been demonstrated using unbiased stereological methods. The loss of more than one third of the neurons may partly explain the cortical atrophy. Focal neuron loss has been reported by several authors, but none have been based on unbiased methods. In this group of AIDS patients the severe loss of neurons did not correspond to neurological deficits.

Acquired Immunodeficiency Syndrome↗