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[2 types of generalization in the evolution of the visual brain].

It has been shown that mechanism of generalization with respect to the size (shift of differentiation of the size from objects of one form to other forms) is located in dogs within the suprasylvian convolution, in cats--within the median part of the lateral suprasylvian region. After removal of these parts of the brain, other visual functions including the invariant description of the image, remain unaffected. The latter is disturbed after extirpation of the field 21; however, the shift with respect to the size does not undergo any significant changes. Therefore, two types of visual generalization, i.e. phylogenetically less ancient generalization of the detected properties and evolutionary more ancient subject generalization (invariant image), are located in different parts of the visual brain.

Animals

Electron microscopic study of central axons degeneration in traumatic human brain edema.

Cortical axonal degeneration was studied in seven cortical biopsies taken from patients with traumatic brain injuries. After one day of evolution of brain injury, myelinated axons underwent axonal swelling, myelin sheath vacuolization and distortion, rupture of axolemma and phagocytosis of myelin ovoids by neuroglial cells. After 8 days, the brain trauma induced an increased number of neurofilaments and augmented volume of oligodendroglial ad-axonal cytoplasm. Fifteen days after brain lesion, varicose fiber swelling and retraction of axoplasm were found with disappearance of axoplasmic organelles. After 21 days, the dark type of degeneration was observed in two cases. At this time, hypertrophic oligodendrocytes invaded the myelin sheath and phagocyted the axoplasmic content. After a long evolution time (2 years) the complete sequence of degeneration events could be followed from the initial axoplasmic changes to the advanced degeneration with phagocytosis by neuroglial and invading cells.

Adolescent

Evolution of clonality and invasive behavior of Epstein-Barr virus immortalized lymphoblastoid cell lines in SCID mice brains.

BACKGROUND: Recently established Epstein-Barr virus immortalized lymphoblastoid cell lines express polyclonal immunoglobulins, are diploid, and grow into invasive tumors when injected intracerebrally into mice with severe combined immunodeficiency (SCID). It is unclear whether clonal selection of neurotropic cell lines occurs during long-term growth in the brain and the effect of this selection on brain invasiveness. EXPERIMENTAL DESIGN: Epstein-Barr immortalized lymphoblastoid cell lines from a normal Epstein-Barr negative donor were serially passaged seven times intracerebrally within groups of SCID/SCID CB 17 mice. Each cell line was injected into five or more animals during each passage. Clonality of the rescued cell lines, genotype, and brain invasiveness were examined. RESULTS: All mice developed extensive intracerebral lymphoproliferative disease within 10-18 days after injection. Intracerebral, subarachnoid, intraventricular, and perivascular lymphoid lesions were noted. Infiltrates were similar in all animals studied regardless of the passage number. Clonal B cell populations were detectable in lesions after the first passage by Southern blot hybridization using JH probe. Immunohistochemically, polyclonal tumors were seen initially, but after the fourth passage, monoclonal cytoplasmic immunoglobulin was predominantly expressed by all tumors. Minor bands seen in the early passages disappeared subsequently. Random chromosomal abnormalities appeared in the rescued cell lines after the third passage; however, after the sixth passage, the abnormalities became more consistent. Clonability in agarose was very low initially in both cell lines and increased significantly after the sixth passage. CONCLUSIONS: These experiments demonstrate that within the immunoprivileged conditions of the SCID mouse brain, the evolution of Epstein-Barr immortalized lymphocytes from polyclonal to oligo- and monoclonal cell lines with chromosomal abnormalities occurs very early. This evolution is not paralleled by increased invasiveness in vivo.

Animals

[Man and his brain].

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Animals

An anthropological perspective on the evolution and lateralization of the brain.

The purpose of this paper is to review the anthropological evidence relating to the cultural determinants of the right-hand first postaulted by Hertz in his classic study. Also a genetic/cultural conformity model of handedness is presented that postulates that the incidence of handedness in a society is held to result both from the genetic expression of handedness interacting with cultural pressures towards conformity. The evolutionary basis for the hemispheric functional organization into cognitive and perceptual hemispheric functions is discussed in terms of "right-handed dominant homozygotes, DD," "heterozygotes, DR," mixed-handers, and "left-handed recessive homozygotes, RR." The cross-cultural distribution of handedness provides support for this model since the more conforming agriculturalists as measured by the Asch Test have a significantly lower incidence of left-handedness (0.59%, 1.5% and 3.4%), while the more permissively socialized Eskimo and Arunta hunters, who are seen to be more independent on the Asch Test, have 11.3% and 10.5% left-handers, respectively. Also, due to the greater pressures for females to conform in agricultural societies, the incidence of female left-handedness in agricultural societies is 0% out of 330 female Ss, with 3.8%, 0.79%, and 2.5% in agricultural males, as contrasted with the Eskimo hunters who have 12.5% left-handed males and 10.3% left-handed females, showing no significant sex difference. A further Hong Kong-English study also supports the genetic/cultural conformity model with a significantly lower incidence of Hong Kong Chinese left-handers (RR: male = 2.7%, and female = 4.2%). The next section, concerned with the neonatal sex-hormone differentiation and lateralization processes, provides a neuropsychologic theory relating to spatial and linguistic skills that is relevant to the following section, which deals with relationships between laterality and cognitive style. The results are also presented for the Alaskan Eskimo in relation to hand, eye, auditory dominance and cognitive style. The analysis of Eskimo fixed-versus mixed-laterality data also confirms, as predicted, that both within and across a modality (e.g., right hand/right eye/right ear) fixed right-dominance Eskimo Ss are more field-independent than mixed-dominance Ss, while the fixed left-dominance Ss are the most field-dependent and have lower spatial skills. The discussion section reviews the papers relating to the genetic/conformity model of handedness, as well as laterality and cognitive style. The evolutionary adaptive significance of sex differences in gonadal differentiation and lateralization of the brain on spatial and linguistic skills are also reviewed. The conclusions are concerned with the implications for biosocial theory and the rapidly changing incidence of left-handedness due to accompanying changes in cultural pressures both within and across cultures.

Adult

Cerebral blood flow and edema in perinatal hypoxic-ischemic brain damage.

The relationship between cerebral blood flow (CBF) and the evolution of brain edema was investigated in an experimental model of perinatal hypoxic-ischemic brain damage. Seven-d postnatal rats were subjected to unilateral common carotid artery ligation followed by 3 h of hypoxia with 8% oxygen at 37 degrees C. This insult produces neuronal necrosis and/or infarction only in the cerebral hemisphere ipsilateral to the arterial occlusion in the majority of animals; hypoxia alone produces no damage. CBF, measured by the indicator diffusion technique using iodo[14C]-antipyrine, and tissue water content were determined concurrently in both cerebral hemispheres at specific intervals during recovery from cerebral hypoxia-ischemia. Water contents in the ipsilateral cerebral hemisphere were 89.1, 89.6, 89.7, 91.0, and 88.3% at 30 min, 4 h, 24 h, 3 d, and 6 d, respectively (p less than 0.001); whereas the percent tissue water in the contralateral hemisphere was unchanged from values in nonligated, hypoxic control rats (87.7%). CBF was similar in both cerebral hemispheres at 30 min, 4 h, and 24 h of recovery (50-65 mL/100 g/min) and not different from age-matched controls. At 3 and 6 d, CBF in the ipsilateral cerebral hemisphere was 30 and 26% of the contralateral hemisphere and 23 and 29% of the control animals, respectively (p less than 0.001). No inverse correlation existed between the changes in brain water content and CBF at any interval until 6 d of recovery. Thus, an early hypoperfusion does not follow perinatal cerebral hypoxia-ischemia, as occurs in adults.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Arteriovenous malformations. Locations and evolution in the fetal brain.

Almost all cerebral arteriovenous malformations in the fetus involve the vein of Galen, although occasionally they may involve the frontal area of the brain instead. In all reported cases arteriovenous malformations have presented some time after 30 weeks as a sonolucent oval lesion located in the midline behind the third ventricle. Previous scans have been normal. Evidence of high output failure such as cardiomegaly, enlarged neck veins, or hydrops predicts a poor outcome.

Aneurysm