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Magdalena N Muchlinski

Biographic Data

ID3073574
NAMEMagdalena N Muchlinski
GIVEN NAMESMagdalena N
FAMILY NAMEMuchlinski
SIGNATUREMUCHLINSKI M N
AFFILIATIONSMarshall University
ORCID0000-0001-9244-5338
VERIFIEDYes
TOTAL WORKS9
TOTAL CITATIONS30
AUTHOR COUNT9
EDITOR COUNT0
FIRST PUBLICATION YEAR2010
LATEST PUBLICATION YEAR2018
H-INDEX3
  • The ligamentum teres femoris in orangutans

    Open Access•Magdalena N Muchlinski, Ashley S Hammond et al.•ARTICLE•American Journal of Physical…•2018•References: 31

    OBJECTIVES: It is widely viewed that orangutans lack a ligamentum teres femoris (LTF) inserting on the femoral head because orangutans lack a distinct fovea capitis. Orangutans employ acrobatic quadrumanous clambering that requires a high level of hip joint mobility, and the absence of an LTF is believed to be an adaptation to increase hip mobility. However, there are conflicting reports in the literature about whether there may be a different LT…

  • Relative tooth size at birth in primates: Life history correlates

    Open Access•T D Smith, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Physical…•2017•References: 34

    OBJECTIVES: Dental eruption schedules have been closely linked to life history variables. Here we examine a sample of 50 perinatal primates (28 species) to determine whether life history traits correlate with relative tooth size at birth. MATERIALS AND METHODS: ) of the upper jaw were measured and residuals from cranial length were calculated with least squares regressions to obtain relative dental volumes (RDVs). RESULTS: Relative dental volumes…

  • A comparative analysis of infraorbital foramen size in Paleogene euarchontans

    Open Access•Magdalena N Muchlinski, E Christopher Kirk•ARTICLE•Journal of Human Evolution•2017•Cited by: 4•References: 72

  • Does the primate pattern hold up? Testing the functional significance of infraorbital foramen size variation among marsupials

    Open Access•Amanda N Spriggs, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Physical…•2016•Cited by: 1•References: 58

    OBJECTIVES: The relative size of the infraorbital foramen (IOF) has been used to infer the ecology of extinct primates for several decades. Primates have relatively smaller IOFs than most other mammals, which may result from the fact that they pre-process and manipulate food with their hands rather than their muzzles. In primates, relative IOF area co-varies with diet, where insectivores and folivores have relatively smaller IOFs than frugivores.…

  • The vomeronasal organ of Lemur catta

    Open Access•T D Smith, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Primatology•2015

    The vomeronasal organ (VNO), also known as the Jacobson's organ, is a bilateral chemosensory organ found at the base of the nasal cavity specialized for the detection of higher-molecular weight (non-volatile) chemostimuli. It has been linked to pheromone detection. The VNO has been well studied in nocturnal lemurs and lorises, but poorly studied in diurnal/cathemeral species despite the large repertoire of olfactory behaviors noted in species suc…

  • Comparative histomorphology of intrinsic vibrissa musculature among primates: Implications for the evolution of sensory ecology and “face touch”

    Open Access•Magdalena N Muchlinski, Emily L Durham et al.•ARTICLE•American Journal of Physical…•2013•Cited by: 2•References: 43

    Macrovibrissae are specialized tactile sensory hairs present in most mammalian orders, used in maxillary mechanoreception or “face touch.” Some mammals have highly organized vibrissae and are able to “whisk” them. Movement of vibrissae is influenced by intrinsic vibrissa musculature, striated muscle bands that attach directly to the vibrissa capsule. It is unclear if primates have organized vibrissae or intrinsic vibrissa musculature and it is un…

  • Muscle Mass Scaling in Primates: An Energetic and Ecological Perspective

    Open Access•Magdalena N Muchlinski, Jeffrey Snodgra et al.•ARTICLE•American Journal of Primatology•2012

    Body composition is known to vary dramatically among mammals, even in closely related species, yet this issue has never been systematically investigated. Here, we examine differences in muscle mass scaling among mammals, and explore how primate body composition compares to that of nonprimate mammals. We use a literature‐based sample of eutherian and metatherian mammals, and combine this with new dissection‐based data on muscularity in a variety o…

  • Ecological correlates of infraorbital foramen area in primates

    Open Access•Magdalena N Muchlinski•ARTICLE•American Journal of Physical…•2010•Cited by: 12•References: 79

    The infraorbital foramen (IOF) transmits the infraorbital nerve (ION) to specialized sensory cells (mechanoreceptors) in the maxillary region. The size of the IOF has been used in numerous paleoecological interpretations of the fossil record. However, these interpretations have been applied without an explicit analysis of the relationship between ecological variables and the IOF. ION and IOF cross‐sectional area show a strong positive correlation…

  • A comparative analysis of vibrissa count and infraorbital foramen area in primates and other mammals

    Open Access•Magdalena N Muchlinski•ARTICLE•Journal of Human Evolution•2010•Cited by: 11•References: 87

  • Ecological correlates of infraorbital foramen area in primates

    Open Access•Magdalena N Muchlinski•ARTICLE•American Journal of Physical…•2010•Cited by: 12•References: 79

    The infraorbital foramen (IOF) transmits the infraorbital nerve (ION) to specialized sensory cells (mechanoreceptors) in the maxillary region. The size of the IOF has been used in numerous paleoecological interpretations of the fossil record. However, these interpretations have been applied without an explicit analysis of the relationship between ecological variables and the IOF. ION and IOF cross‐sectional area show a strong positive correlation…

  • A comparative analysis of vibrissa count and infraorbital foramen area in primates and other mammals

    Open Access•Magdalena N Muchlinski•ARTICLE•Journal of Human Evolution•2010•Cited by: 11•References: 87

  • A comparative analysis of infraorbital foramen size in Paleogene euarchontans

    Open Access•Magdalena N Muchlinski, E Christopher Kirk•ARTICLE•Journal of Human Evolution•2017•Cited by: 4•References: 72

  • Comparative histomorphology of intrinsic vibrissa musculature among primates: Implications for the evolution of sensory ecology and “face touch”

    Open Access•Magdalena N Muchlinski, Emily L Durham et al.•ARTICLE•American Journal of Physical…•2013•Cited by: 2•References: 43

    Macrovibrissae are specialized tactile sensory hairs present in most mammalian orders, used in maxillary mechanoreception or “face touch.” Some mammals have highly organized vibrissae and are able to “whisk” them. Movement of vibrissae is influenced by intrinsic vibrissa musculature, striated muscle bands that attach directly to the vibrissa capsule. It is unclear if primates have organized vibrissae or intrinsic vibrissa musculature and it is un…

  • Does the primate pattern hold up? Testing the functional significance of infraorbital foramen size variation among marsupials

    Open Access•Amanda N Spriggs, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Physical…•2016•Cited by: 1•References: 58

    OBJECTIVES: The relative size of the infraorbital foramen (IOF) has been used to infer the ecology of extinct primates for several decades. Primates have relatively smaller IOFs than most other mammals, which may result from the fact that they pre-process and manipulate food with their hands rather than their muzzles. In primates, relative IOF area co-varies with diet, where insectivores and folivores have relatively smaller IOFs than frugivores.…

  • Ecological correlates of infraorbital foramen area in primates

    Open Access•Magdalena N Muchlinski•ARTICLE•American Journal of Physical…•2010•Cited by: 12•References: 79

    The infraorbital foramen (IOF) transmits the infraorbital nerve (ION) to specialized sensory cells (mechanoreceptors) in the maxillary region. The size of the IOF has been used in numerous paleoecological interpretations of the fossil record. However, these interpretations have been applied without an explicit analysis of the relationship between ecological variables and the IOF. ION and IOF cross‐sectional area show a strong positive correlation…

  • A comparative analysis of vibrissa count and infraorbital foramen area in primates and other mammals

    Open Access•Magdalena N Muchlinski•ARTICLE•Journal of Human Evolution•2010•Cited by: 11•References: 87

  • Muscle Mass Scaling in Primates: An Energetic and Ecological Perspective

    Open Access•Magdalena N Muchlinski, Jeffrey Snodgra et al.•ARTICLE•American Journal of Primatology•2012

    Body composition is known to vary dramatically among mammals, even in closely related species, yet this issue has never been systematically investigated. Here, we examine differences in muscle mass scaling among mammals, and explore how primate body composition compares to that of nonprimate mammals. We use a literature‐based sample of eutherian and metatherian mammals, and combine this with new dissection‐based data on muscularity in a variety o…

  • Comparative histomorphology of intrinsic vibrissa musculature among primates: Implications for the evolution of sensory ecology and “face touch”

    Open Access•Magdalena N Muchlinski, Emily L Durham et al.•ARTICLE•American Journal of Physical…•2013•Cited by: 2•References: 43

    Macrovibrissae are specialized tactile sensory hairs present in most mammalian orders, used in maxillary mechanoreception or “face touch.” Some mammals have highly organized vibrissae and are able to “whisk” them. Movement of vibrissae is influenced by intrinsic vibrissa musculature, striated muscle bands that attach directly to the vibrissa capsule. It is unclear if primates have organized vibrissae or intrinsic vibrissa musculature and it is un…

  • The vomeronasal organ of Lemur catta

    Open Access•T D Smith, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Primatology•2015

    The vomeronasal organ (VNO), also known as the Jacobson's organ, is a bilateral chemosensory organ found at the base of the nasal cavity specialized for the detection of higher-molecular weight (non-volatile) chemostimuli. It has been linked to pheromone detection. The VNO has been well studied in nocturnal lemurs and lorises, but poorly studied in diurnal/cathemeral species despite the large repertoire of olfactory behaviors noted in species suc…

  • Does the primate pattern hold up? Testing the functional significance of infraorbital foramen size variation among marsupials

    Open Access•Amanda N Spriggs, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Physical…•2016•Cited by: 1•References: 58

    OBJECTIVES: The relative size of the infraorbital foramen (IOF) has been used to infer the ecology of extinct primates for several decades. Primates have relatively smaller IOFs than most other mammals, which may result from the fact that they pre-process and manipulate food with their hands rather than their muzzles. In primates, relative IOF area co-varies with diet, where insectivores and folivores have relatively smaller IOFs than frugivores.…

  • Relative tooth size at birth in primates: Life history correlates

    Open Access•T D Smith, Magdalena N Muchlinski et al.•ARTICLE•American Journal of Physical…•2017•References: 34

    OBJECTIVES: Dental eruption schedules have been closely linked to life history variables. Here we examine a sample of 50 perinatal primates (28 species) to determine whether life history traits correlate with relative tooth size at birth. MATERIALS AND METHODS: ) of the upper jaw were measured and residuals from cranial length were calculated with least squares regressions to obtain relative dental volumes (RDVs). RESULTS: Relative dental volumes…

  • A comparative analysis of infraorbital foramen size in Paleogene euarchontans

    Open Access•Magdalena N Muchlinski, E Christopher Kirk•ARTICLE•Journal of Human Evolution•2017•Cited by: 4•References: 72

  • The ligamentum teres femoris in orangutans

    Open Access•Magdalena N Muchlinski, Ashley S Hammond et al.•ARTICLE•American Journal of Physical…•2018•References: 31

    OBJECTIVES: It is widely viewed that orangutans lack a ligamentum teres femoris (LTF) inserting on the femoral head because orangutans lack a distinct fovea capitis. Orangutans employ acrobatic quadrumanous clambering that requires a high level of hip joint mobility, and the absence of an LTF is believed to be an adaptation to increase hip mobility. However, there are conflicting reports in the literature about whether there may be a different LT…

Biology (9 works) · Primate Behavior and Ecology (8 works) · Anatomy (7 works) · Anatomy (6 works) · Ecology (5 works) · Evolution and Paleontology Studies (5 works) · Primate (5 works) · Zoology (5 works) · Ecology (3 works) · Neuroscience (3 works)

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