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Browsing by Author "Tosevski, Jovo (13407855200)"

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    Concealed female external genitals: Possible morphopsychological clue to unique emotional and cognitive evolutionary matrix of man
    (2006)
    Tosevski, Jovo (13407855200)
    ;
    Tosevski, Dusica Lecic (6602315043)
    Despite genetic similarities between man and other anthropoids, the cognitive abilities of man are distinct. Inaccessible and concealed external female genitals are one of the morphological characteristics distinguishing humans from other higher primates. External female sexual organs in subhuman primates are visible and accessible in the habitual quadrupedal and occasional bipedal posture, whereas these organs in the human female are inaccessible and concealed in any posture. A prospective consequence of gradual bipedalism of hominids during evolution was a shifting of the external female genitals in an anterior direction. In the completely bipedal Homo sapiens, this resulted in the vulvo-cryptic phenomenon, i.e. concealed female genitals in humans. The unique morphology of the human female pelvis served as an obstacle to easy access of the male in the process of copulation, necessitating the female's conscious decision for sexual intercourse. This circumstance might have created a psychological basis for female propellant psychosexual manipulation of the male as a natural consequence. Also, through the process of positive selection it could have formed a basis for linking reproductive success with the development of cognitive and emotional capacities. Female consent to copulation is a conscious and complex act that would be impossible without the involvement of highly developed emotional-cognitive and memoric brain systems. Thus the extraordinary evolutionary strategy might imply a teleological link between concealed female genitals and the emotional-cognitive characteristics of man, creating a permanent promoter of further development of emotional and cognitive brain systems with an impact on all domains of everyday life. © Med Sci Monit, 2006.
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    Occipital sulci of the human brain: Variability and morphometry
    (2012)
    Malikovic, Aleksandar (9741953000)
    ;
    Vucetic, Biljana (57947350900)
    ;
    Milisavljevic, Milan (6701873424)
    ;
    Tosevski, Jovo (13407855200)
    ;
    Sazdanovic, Predrag (15767944100)
    ;
    Milojevic, Bojan (52663988200)
    ;
    Malobabic, Slobodan (7004232500)
    The external morphology of the occipital lobe was investigated in 15 human post-mortem brains (30 hemispheres) fixed in formalin. We identified, described and measured the lengths of nine major human occipital sulci and five variable ones, comparing both types between individuals and hemispheres. Morphological variability of human occipital sulci is related to interindividual and interhemispheric differences in their presence, origin, type, segmentation, intersection and length. The major occipital sulci, particularly the parieto-occipital, the calcarine, the inferior lateral occipital and the anterior occipital sulci, as well as two points of their intersections (cuneal point and intersection of the transverse occipital and superior occipital sulcus) may be used as reliable anatomical landmarks for the location of architectonically and functionally defined human visual areas (V1, V2, V3, V3A, V5/MT+, LO1 and LO2) and during less invasive neurosurgical procedures in the cases of focal lesions within the occipital lobe. Two lateral occipital sulci (inferior and superior) were defined on the lateral surface of the occipital lobe. The variable lunate sulcus was studied and combining our results with those from histological and functional imaging studies, we suggest that the lunate sulci of human and nonhuman primates are not homologous. © Japanese Association of Anatomists 2011.
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    Types of neurons and some dendritic patterns of basolateral amygdala in humans - A Golgi study
    (2002)
    Tosevski, Jovo (13407855200)
    ;
    Malikovic, Aleksandar (9741953000)
    ;
    Mojsilovic-Petrovic, Jelena (13906917400)
    ;
    Lackovic, Vesna (35754725400)
    ;
    Peulic, Miodrag (57204209397)
    ;
    Sazdanovic, Predrag (15767944100)
    ;
    Alexopulos, Chris (15767151100)
    Classification of the neurons in the human basolateral amygdala is performed on preparations impregnated by the Golgi technique. Three different neuronal types are found in the nuclei of the basolateral amygdala: Type I - Pyramidal cells, with numerous dendritic spines and two subtypes (slender and squat); Type II - Modified pyramidal cells, sparsely spinous with rare dendritic spines and two subtypes (single apical and double apical) and; Type III - Non-pyramidal cells, with few dendritic spines and three subtypes (bipolar, multipolar and gliaform). The analysis of the primary dendritic branches pointed out the occasional presence of dendritic bundles (fascicular dendritic arrangement) with their predomination in the parvicellular division of the basal nucleus and paralaminar nucleus. Additionally, the presence of dendrodendritic contacts, indicated by light microscopy, was also found in the parvicellular division of the basal nucleus and especially in the paralaminar nucleus.
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    Types of neurons and some dendritic patterns of basolateral amygdala in humans - A Golgi study
    (2002)
    Tosevski, Jovo (13407855200)
    ;
    Malikovic, Aleksandar (9741953000)
    ;
    Mojsilovic-Petrovic, Jelena (13906917400)
    ;
    Lackovic, Vesna (35754725400)
    ;
    Peulic, Miodrag (57204209397)
    ;
    Sazdanovic, Predrag (15767944100)
    ;
    Alexopulos, Chris (15767151100)
    Classification of the neurons in the human basolateral amygdala is performed on preparations impregnated by the Golgi technique. Three different neuronal types are found in the nuclei of the basolateral amygdala: Type I - Pyramidal cells, with numerous dendritic spines and two subtypes (slender and squat); Type II - Modified pyramidal cells, sparsely spinous with rare dendritic spines and two subtypes (single apical and double apical) and; Type III - Non-pyramidal cells, with few dendritic spines and three subtypes (bipolar, multipolar and gliaform). The analysis of the primary dendritic branches pointed out the occasional presence of dendritic bundles (fascicular dendritic arrangement) with their predomination in the parvicellular division of the basal nucleus and paralaminar nucleus. Additionally, the presence of dendrodendritic contacts, indicated by light microscopy, was also found in the parvicellular division of the basal nucleus and especially in the paralaminar nucleus.

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