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M Pina

Biographic Data

ID68971
NAMEM Pina
GIVEN NAMESM
FAMILY NAMEPina
SIGNATUREPINA M
AFFILIATIONSUniversitat Autonòma de Barcelona
ORCID0000-0001-9762-6402
VERIFIEDYes
TOTAL WORKS11
TOTAL CITATIONS71
AUTHOR COUNT11
EDITOR COUNT0
FIRST PUBLICATION YEAR2012
LATEST PUBLICATION YEAR2025
H-INDEX5
  • Femoral neck cortical bone distribution in Nacholapithecus from the Middle Miocene of Kenya

    Open Access•Yuma Tomizawa, M Pina et al.•ARTICLE•Journal of Human Evolution•2025•References: 45

  • Postcranial evidence does not support habitual bipedalism in Sahelanthropus tchadensis: A reply to Daver et al. (2022)

    Open Access•M Cazenave, M Pina et al.•ARTICLE•Journal of Human Evolution•2024•Cited by: 1•References: 16

  • Calcar femorale variation in extant and fossil hominids: Implications for identifying bipedal locomotion in fossil hominins

    Open Access•M Cazenave, T L Kivell et al.•ARTICLE•Journal of Human Evolution•2022•Cited by: 3•References: 105

  • New femoral remains of Nacholapithecus kerioi: Implications for intraspecific variation and Miocene hominoid evolution

    Open Access•M Pina, Yasuhiro Kikuchi et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 5•References: 56

  • A comparative analysis of the vestibular apparatus in Epipliopithecus vindobonensis: Phylogenetic implications

    Open Access•Alessandro Urciuoli, C Zanolli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 8•References: 74

  • Comparative anatomy of the carotid canal in the Miocene small-bodied catarrhine Pliobates cataloniae

    Open Access•Florence Bouchet, Alessandro Urciuoli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 3•References: 59

  • New forelimb long bone specimens of Nacholapithecus kerioi from the Middle Miocene of northern Kenya

    Open Access•Tomo Takano, M Nakatsukasa et al.•ARTICLE•Anthropological Science•2020•Cited by: 6•References: 5

    This article reports eight new humeral, ulnar, and radial fragments of Nacholapithecus kerioi collected from Nachola, Kenya during the 1998/1999 field seasons. The study refines the description of its forelimb bones, which was mostly based on a single partial skeleton. The most distinctive feature of the distal humerus is a large, globular, medially tilted capitulum. The groove between the capitulum and the zona conoidea is quite deep. The medial…

  • Femoral neck cortical bone distribution of dryopithecin apes and the evolution of hominid locomotion

    Open Access•M Pina, David M Alba et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 13•References: 75

  • Bio- and magnetostratigraphic correlation of the Miocene primate-bearing site of Castell de Barberà to the earliest Vallesian

    Open Access•David M Alba, Mario Garcés et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 5•References: 53

  • First record of Mesopithecus (Cercopithecidae, Colobinae) from the Miocene of the Iberian Peninsula

    Open Access•David M Alba, Plini Montoya et al.•ARTICLE•Journal of Human Evolution•2015•Cited by: 14•References: 52

  • Brief communication: Paleobiological inferences on the locomotor repertoire of extinct hominoids based on femoral neck cortical thickness: The fossil great ape hispanopithecus laietanus as a test‐case…

    Open Access•M Pina, David M Alba et al.•ARTICLE•American Journal of Physical…•2012•Cited by: 13•References: 26

    The relationship between femoral neck superior and inferior cortical thickness in primates is related to locomotor behavior. This relationship has been employed to infer bipedalism in fossil hominins, although bipeds share the same pattern of generalized quadrupeds, where the superior cortex is thinner than the inferior one. In contrast, knuckle‐walkers and specialized suspensory taxa display a more homogeneous distribution of cortical bone. Thes…

  • First record of Mesopithecus (Cercopithecidae, Colobinae) from the Miocene of the Iberian Peninsula

    Open Access•David M Alba, Plini Montoya et al.•ARTICLE•Journal of Human Evolution•2015•Cited by: 14•References: 52

  • Femoral neck cortical bone distribution of dryopithecin apes and the evolution of hominid locomotion

    Open Access•M Pina, David M Alba et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 13•References: 75

  • Brief communication: Paleobiological inferences on the locomotor repertoire of extinct hominoids based on femoral neck cortical thickness: The fossil great ape hispanopithecus laietanus as a test‐case…

    Open Access•M Pina, David M Alba et al.•ARTICLE•American Journal of Physical…•2012•Cited by: 13•References: 26

    The relationship between femoral neck superior and inferior cortical thickness in primates is related to locomotor behavior. This relationship has been employed to infer bipedalism in fossil hominins, although bipeds share the same pattern of generalized quadrupeds, where the superior cortex is thinner than the inferior one. In contrast, knuckle‐walkers and specialized suspensory taxa display a more homogeneous distribution of cortical bone. Thes…

  • A comparative analysis of the vestibular apparatus in Epipliopithecus vindobonensis: Phylogenetic implications

    Open Access•Alessandro Urciuoli, C Zanolli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 8•References: 74

  • New forelimb long bone specimens of Nacholapithecus kerioi from the Middle Miocene of northern Kenya

    Open Access•Tomo Takano, M Nakatsukasa et al.•ARTICLE•Anthropological Science•2020•Cited by: 6•References: 5

    This article reports eight new humeral, ulnar, and radial fragments of Nacholapithecus kerioi collected from Nachola, Kenya during the 1998/1999 field seasons. The study refines the description of its forelimb bones, which was mostly based on a single partial skeleton. The most distinctive feature of the distal humerus is a large, globular, medially tilted capitulum. The groove between the capitulum and the zona conoidea is quite deep. The medial…

  • New femoral remains of Nacholapithecus kerioi: Implications for intraspecific variation and Miocene hominoid evolution

    Open Access•M Pina, Yasuhiro Kikuchi et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 5•References: 56

  • Bio- and magnetostratigraphic correlation of the Miocene primate-bearing site of Castell de Barberà to the earliest Vallesian

    Open Access•David M Alba, Mario Garcés et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 5•References: 53

  • Calcar femorale variation in extant and fossil hominids: Implications for identifying bipedal locomotion in fossil hominins

    Open Access•M Cazenave, T L Kivell et al.•ARTICLE•Journal of Human Evolution•2022•Cited by: 3•References: 105

  • Comparative anatomy of the carotid canal in the Miocene small-bodied catarrhine Pliobates cataloniae

    Open Access•Florence Bouchet, Alessandro Urciuoli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 3•References: 59

  • Postcranial evidence does not support habitual bipedalism in Sahelanthropus tchadensis: A reply to Daver et al. (2022)

    Open Access•M Cazenave, M Pina et al.•ARTICLE•Journal of Human Evolution•2024•Cited by: 1•References: 16

  • Brief communication: Paleobiological inferences on the locomotor repertoire of extinct hominoids based on femoral neck cortical thickness: The fossil great ape hispanopithecus laietanus as a test‐case…

    Open Access•M Pina, David M Alba et al.•ARTICLE•American Journal of Physical…•2012•Cited by: 13•References: 26

    The relationship between femoral neck superior and inferior cortical thickness in primates is related to locomotor behavior. This relationship has been employed to infer bipedalism in fossil hominins, although bipeds share the same pattern of generalized quadrupeds, where the superior cortex is thinner than the inferior one. In contrast, knuckle‐walkers and specialized suspensory taxa display a more homogeneous distribution of cortical bone. Thes…

  • First record of Mesopithecus (Cercopithecidae, Colobinae) from the Miocene of the Iberian Peninsula

    Open Access•David M Alba, Plini Montoya et al.•ARTICLE•Journal of Human Evolution•2015•Cited by: 14•References: 52

  • Femoral neck cortical bone distribution of dryopithecin apes and the evolution of hominid locomotion

    Open Access•M Pina, David M Alba et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 13•References: 75

  • Bio- and magnetostratigraphic correlation of the Miocene primate-bearing site of Castell de Barberà to the earliest Vallesian

    Open Access•David M Alba, Mario Garcés et al.•ARTICLE•Journal of Human Evolution•2019•Cited by: 5•References: 53

  • New forelimb long bone specimens of Nacholapithecus kerioi from the Middle Miocene of northern Kenya

    Open Access•Tomo Takano, M Nakatsukasa et al.•ARTICLE•Anthropological Science•2020•Cited by: 6•References: 5

    This article reports eight new humeral, ulnar, and radial fragments of Nacholapithecus kerioi collected from Nachola, Kenya during the 1998/1999 field seasons. The study refines the description of its forelimb bones, which was mostly based on a single partial skeleton. The most distinctive feature of the distal humerus is a large, globular, medially tilted capitulum. The groove between the capitulum and the zona conoidea is quite deep. The medial…

  • New femoral remains of Nacholapithecus kerioi: Implications for intraspecific variation and Miocene hominoid evolution

    Open Access•M Pina, Yasuhiro Kikuchi et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 5•References: 56

  • A comparative analysis of the vestibular apparatus in Epipliopithecus vindobonensis: Phylogenetic implications

    Open Access•Alessandro Urciuoli, C Zanolli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 8•References: 74

  • Comparative anatomy of the carotid canal in the Miocene small-bodied catarrhine Pliobates cataloniae

    Open Access•Florence Bouchet, Alessandro Urciuoli et al.•ARTICLE•Journal of Human Evolution•2021•Cited by: 3•References: 59

  • Calcar femorale variation in extant and fossil hominids: Implications for identifying bipedal locomotion in fossil hominins

    Open Access•M Cazenave, T L Kivell et al.•ARTICLE•Journal of Human Evolution•2022•Cited by: 3•References: 105

  • Postcranial evidence does not support habitual bipedalism in Sahelanthropus tchadensis: A reply to Daver et al. (2022)

    Open Access•M Cazenave, M Pina et al.•ARTICLE•Journal of Human Evolution•2024•Cited by: 1•References: 16

  • Femoral neck cortical bone distribution in Nacholapithecus from the Middle Miocene of Kenya

    Open Access•Yuma Tomizawa, M Pina et al.•ARTICLE•Journal of Human Evolution•2025•References: 45

Evolution and Paleontology Studies (11 works) · Primate Behavior and Ecology (10 works) · Anatomy (9 works) · Biology (9 works) · Anatomy (8 works) · Paleontology (7 works) · Paleontology (7 works) · Bat Biology and Ecology Studies (5 works) · Evolutionary biology (4 works) · Geology (4 works)

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