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The first capitular joint in primates: Cebidae, Cercopithecidae and Homo.

As for the first capitular joint, Ohman (1986) claimed that a univertebral type is unique to modern and fossil hominids among primates. Stern and Jungers (1990) compiled the data in a wider range of primate and demonstrated as follows. The univertebral type, rather than being unique to hominids, is common among siamang, occurs in an occasional gibbon, and is typical of the larger indriids. We added the data of genera of Cebidae and Cercopithecidae to that observation, and found that the univertebral type is also typical of the Pithecia in Cebidae and Papio and Cercopithecus in Cercopithecidae. We also found that the bivertebral type occurs in 19.4% of Homo. Gloobe and Nathan (1970) had already observed that most mammals have a full facet for the first rib and a hemifacet for the second in the first thoracic vertebra. Accordingly, it seems that Ohman's claim is not applicable for nonhominoid primates and for mammals.

Animals

[Molar size sequence in seven species of Cercopithecidae].

The size sequence of the molar teeth in three genera, including seven species, of the Cercopithecidae was examined on the basis of mesiodistal and buccolingual crown diameters, and rectangle measurements (mesiodistal d. X buccolingual d.). The determination of molar size order was estimated by the three methods of mean values, size sequences and reductive indices (M2/M1, M3/M1). The results obtained are summarized as follows: 1. The molar size sequence of the seven species. The pattern of sequence in the molars of the Cercopithecidae was divided into six types: (I) M1 less than M2 less than M3 or (M1M2) less than M3, (II) M1 less than (M2M3), (III) M1 less than M3 less than M2, (IV) (M1M2M3), (V) (M3M1) less than M2, and (VI) M3 less than M1 less than M2 or M3 less than (M1M2). 2. The upper molars. i) The most frequent pattern of mean values found was type II for all the species of the Macaca and Colobus. The two species of Cercopithecus showed predominantly the characteristics of types III, IV and V. ii) The molar size sequence individual data revealed that in the mesiodistal crown diameter types I and II were distributed frequently in the Macaca, types IV and V in the Colobus, and type VI in the Cercopithecus. The reduction of the third molar, therefore, seemed to be more pronounced in the Cercopithecus when compared with the other two genus, Macaca and Colobus, because type VI is the type with more size reduction in the third molar. In the case of the buccolingual crown diameters, the most common size sequences were found in types II and III for the Macaca and Colobus. In the Cercopithecus, however, type V exceeded other types in frequence. iii) The results of the reductive indices showed that the second molars in the Colobus were greatly reduced compared to the first, followed by those of the Cercopithecus and Macaca. In the third molar reduction, the Cercopithecus had a relatively small third molar compared to the first, following the Colobus and Macaca. 3. The lower molars. i) The pattern in the mean values were frequently found to be type I for the Macaca and Colobus, and types III and II for the Cercopithecus. ii) The size sequence in the frequency of the mesiodistal crown diameter was well presented in type I for the Macaca and Colobus, while types IV and V were distributed frequently for Cercopithecus in which the reduction of the third molar was noticeable.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Comparative anatomical study of arteriographs of the hand of primates. Deep palmar arterial arches and their correlating arteries in cercopithecidae, pongidae and hominidae.

A three-dimensional angiographic analysis of the deep palmar arterial arches and their correlating arteries in Cercopithecidae, Pongidae and Hominidae revealed the following features. In Cercopithecidae, 3 deep palmar arches are formed by the perforating branches of the 2nd dorsal metacarpal artery: 2 proximal arches (the catella volaris proximalis and the arcus volaris profundus) and 1 distal arch (the catella volaris distalis). The intermetacarpal arteries arise from the catella volaris proximalis and the palmar metacarpal arteries arise from the arcus volaris profundus. In Pongidae, the arches are formed by the perforating branches of the 1st dorsal metacarpal artery, and they are composed of only the catella volaris proximalis and catella volaris distalis. In Hominidae, the arches are formed by the perforating branches of the 1st dorsal metacarpal artery, and they consist of the arcus volaris profundus and an incomplete catella volaris distalis.

Angiography

[Dental enamel prisms of Mesopithecus pentelicus Wagner, 1839, compared with recent cercopithecids (Primates: Cercopithecidae)].

The dental enamel prisms of Cercopithecidae were examined by scanning electron microscopy. The main task of this study was to show the prism morphology representatives of different genera as well as their comparison with the fossil Mesopithecus pentelicus Wagner, 1839. The method used to show the enamel prisms was to etch the tooth surface with hydrochloric acid. In this way the outlines of the prisms were better contrasted for the descriptive morphology of the prisms than in etching with phosphoric acid. Two types were determined, in accord with the systematic division into subfamilies. In the subfamily Cercopithecinae elongated slender prisms were dominating, some with pointed, others with truncated tops. Most characteristic of this type were Macaca and Cercopithecus. An exception was Papio hamadryas which had broader, rounded prisms. In this way it differed largely from P. anubis whose prisms were short and mostly triangular. A very interesting fact was that very different patterns were found in P. anubis and P. hamadryas, although these two species are regarded as only one species by many authors. The second subfamily, the Colobinae, was characterized by broader prisms with a rounded shape, nearly as long as wide. Exceptions of the 'Colobine type' were at first Colobus with prisms little longer than wide and secondly Nasalis, with mostly parallel sides and truncated tops of the prisms. The prism outlines of Mesopithecus showed the greatest similarity to those of Presbytis which represents the characteristic 'Colobine type'. This fact confirmed the actual systematic position of the fossil Mesopithecus within the subfamily Colobinae. In addition to previously known primitive features of Mesopithecus within the subfamily of Colobinae, we present here a further concrete, common feature with asiatic Colobines.

Animals

Motor activity of different-aged Cercopithecidae: silvered-leaf monkey (Presbytis cristatus Esch.), lion-tailed monkey (Macaca silenus L.), moor macaque (Macaca maura Cuv.) as observed in the Zoological Garden, Berlin (West).

The activity of different-aged monkeys belonging to three species of Cercopithecidae was quantitatively analyzed in a 1 1/2-year study. The species, silvered-leaf monkey (Presbytis cristatus Esch.), lion-tailed monkey (Macaca silenus L.) and moor macaque (Macaca maura Cuv.) were observed in the Zoological Garden, Berlin (West). The data of a combined cross-sectional analysis across all three species indicate that the course of age-related changes in the frequency of movement can be depicted as graduated and differentiated. These results are discussed in terms of a reverse development pattern in old age compared to that of early youth.

Aging

Identity of euchromatic bands from man to cercopithecidae (Cercopithecus aethiops, Cercopithecus sabaeus, Erythrocebus patas, and Miopithecus talapoin).

The karyotypes of four species of Cercopithecidae: Cercopithecus aethiops tantalus, C. sabaeus, Erythrocebus patas, and Miopithecus talapoin are analysed with nearly all the banding techniques. They are compared with each other, and with the karyotypes of the Baboon P. papio and with that of man. It can be concluded that the quasi-totality or the totality of the euchromatin is common to all, but has undergone structural rearrangements, generally detectable. The heterochromatin, defined by C-band staining, and late-replicating DNA, in contrast, appears very variable: In particular, E. patas has acquired very large heterochromatic segments. The significance of these modifications is discussed.

Animals

Evolutionary history of the Cercopithecidae.

The application of cladistic methods (especially a concentration on shared derived rather than ancestral characters) permits the distinction of four dental and two cranial morphocytes among the Cercopithecidae. Comparison with fossils suggests that the Fayum parapithecids are not specially related to the Old World monkeys, while other undoubted Fayum 'hominoids' may share derived features with monkeys. Miocene Victoriapithecus 'species' may document a stage very close to the split between Colobinae and Cercopithecinae. Later African colobines appear to form a monophyletic group, more arboreal than the extinct European branch; Asian forms may be specially related to the latter. Among the Cercopithecinae, after a Miocene separation from the high-forest Cercopithecini, the Papionini divided into three groups: geladas, sub-Saharan Papio-related 'baboons' and Mediterranean-Eurasian macaque relatives; each of these underwent Plio-Pleistocene adaptive radiations and subsequent taxonomic diminution.

Africa

Hindlimb proportions, allometry, and biomechanics in Old World monkeys (primates, Cercopithecidae).

The traditional focus on morphological rather than mechanical units has obscured some significant functional differences in the hindlimbs of primates. This paper examines the allometric and biomechanical basis for some distinctive proportional differences among pairs of morphological units in the hindlimb, and especially the foot, of cercopithecid primates. Five major conclusions are reached. First, many hindlimb dimensions scale allometrically with body mass to maintain mechanical similarity within taxonomic and locomotor groups. Therefore, the majority of traditional indices which describe the shape of the foot within cercopithecids reveal differences which are primarily a function of size. Second, the hindlimb segments in colobines, and especially in Presbytis, are relatively long, probably to enhance leaping. Third, the major distinction of terrestrial cercopithecines among the features analysed is reduction in the length of the phalanges, due to the reduced importance of grasping during locomotion and the assumption of digitigrady. Fourth, Theropithecus and male Erythrocebus have high crural indices, relative to their body masses, which can facilitate curosoriality. Female E. patas already has a high crural index as a function of its body mass. Fifth, macaques form a distinctive group among cercopithecines, characterized by relatively short hindlimbs. Relatively very short hindlimbs in Macaca fuscata and M. thibetana suggest that climatic conditions can have an added effect on the lengths of the hindlimb segments. In summary, this analysis of the lengths of the hindlimb segments relative to body size reveals taxonomic differences which are due in part to phylogeny, to differences in locomotor behavior, and to substrate use.

Analysis of Variance

The evolution of molar occlusion in the Cercopithecidae and early Catarrhines.

Those Eocene prosimians which are possible catarrhine ancestors have four blade-like crests on each lower molar. Each crest shears in sequence across two upper molar crests. Occluding crests are concavely curved to hold the foods being sheared. Each of two medial lower molar crests bordering the principal crushing surface shear past single upper molar crests at about the same time the lateral lower molar crests contact the second rank of upper molar crests. Grinding and crushing areas are restricted to hypoconid, trigonid, and protocone surfaces. Oligocene catarrhine molars have increased crushing-grinding capacities and maintained but modify their shearing. As the crushing surface of the protocone expands and a crushing hypocone is added, the "second rank" upper molar shearing crests are functionally reduced. At the same time medial crests are increasingly emphasized so that the total shearing capacity remains virtually unchanged. Marginal shearing blades are straight edged; leading edges of occluding blades are set at different angles to the occlusal plane so that blades contact at only one point at any given time. Early Primates have separate crushing basins surrounded by shearing blades. Catarrhines tend to link explanding crushing surfaces anteroposteriorly into a continuous surface between all molars. A cladistic analysis based on both new and previously recognized characters indicates that: 1. Apidium may be more closely related to Aegyptopithecus than to Parapithecus; 2. cercopithecids are derived from a Parapithecus-related stock; 3. Oreopithecus could equally well have come from an Apidium or Aegyptopithecus stock.

Animals

Incisor size and diet in anthropoids with special reference to Cercopithecidae.

In 57 species of anthropoids relative size of incisors in highly correlated with diet. Anthropoids that feed primarily on large food objects (large fruits) have larger incisors than those that feed on smaller food objects (berries or leaves). This difference reflects a need for more extensive incisal preparation of larger food objects before mastication. Extensive incisal preparation causes increased tooth wear, therefore, enlarged incisors are probably an adaptive response to increase their wear potential.

Animals

Comparative study of the banding patterns of the chromosomes of Cercopithecidae. I. Subfamily Papinae: Macaca fascicularis and Papio sphinx.

The diploid number of Macaca fascicularis and Papio sphinx is 42. All chromosomes are biarmed. Using G-banding techniques, the complements of these two species have been compared. The topography of the bands is identical in all but one chromosome pair, showing a small pericentric inversion. The results indicate the existence of an extreme conservation in the arrangement of the genetic material and that changes at the gene level may have contributed to speciation in the Papinae.

Animals

Differential habitat utilizati of four Cercopithecidae in a Kenyan forest.

The presence of Papio cynocephalus, Cercopithecus mitis, Cercopithecus aethiops and Colobus angolensis in a small coastal forest is attributed to their differential habitat utilization. Data on diet, space-use patterns and polyspecific associations are given. Habitat partitioning is found to be resource-related and is accomplished through differential reliance on resources as well as different means of exploiting overlapping resources. The implications of the data for understanding the relationship between ecology and social structure are discussed.

Animals

[Cytogenetic study of six species or sub-species of mangabeys monkeys (Papiinae, Cercopithecidae) (author's transl)].

Chromosome banding patterns of six Mangabey species or sub-species are studied and compared. By comparison with the other Papiinae previously studied (Papio and Macaca) Lophocebus albigena and L. aterrimus possess very similar karyotypes, differing a most by a pericentric inversion of the Y chromosome. The other four, Cercocebus torquatus torquatus, C. t. fuliginosus, C. galeritus galeritus and C. g. chrysogaster differ by a complex rearrangement of chromosome no. 10 and by acquisition of heterochromatin on chromosome no 12. No difference was detected nor between the two Lophocebus nor between the four Cercocebus. Cytogenetic criteria age thus in agreement with the morphological, immunological and hematological data, separating the two genuses, and placing Lophocebus closer to the Papio and Macaca than to Cercocebus.

Animals