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Life Sciences Commons

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2016

Biology Faculty Publications

Biology

College of Saint Benedict and Saint John's University

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Full-Text Articles in Life Sciences

External Morphology Of The Eggs Of Asplanchnopus Multiceps (Schrank, 1793) (Rotifera): Solving The 150-Year-Old Case Of Mistaken Identity, Elizabeth S. Wurdak Aug 2016

External Morphology Of The Eggs Of Asplanchnopus Multiceps (Schrank, 1793) (Rotifera): Solving The 150-Year-Old Case Of Mistaken Identity, Elizabeth S. Wurdak

Biology Faculty Publications

This report calls into question the practice of passing along illustrations and anatomical descriptions from the literature without scrutiny. An error made by Leydig (Zeischrift für wissenschaftliche Zoologie 6:1–120, 1854) in characterizing the egg of Asplanchnopus multiceps was perpetuated in authoritative publications (Hyman, The Invertebrates: Acanthocephala, Aschelminthes, and Entoprocta. The pseudocoelomate Bilateria, McGraw-Hill Book Company, New York, 1951; Voigt, Rotatoria: Die Rädertiere Mitteleuropas, Gebrüder Borntraeger, Berlin-Nikolassee, 1957; Ruttner-Kolisko, Plankton rotifers, biology and taxonomy supplementary edition of Die Binnengewässer 26, Stuttgart, 1974; Koste, Rotatoria: Die Rädertiere Mitteleuropas begründet von Max Voigt. Monogononta 2. Auflage neubearbeitet von Walter Koste, Gebrüder Borntraeger, Berlin, …


Skeletal Muscle Mass And Composition During Mammalian Hibernation, Clark J. Cotton Jan 2016

Skeletal Muscle Mass And Composition During Mammalian Hibernation, Clark J. Cotton

Biology Faculty Publications

Hibernation is characterized by prolonged periods of inactivity with concomitantly low nutrient intake, conditions that would typically result in muscle atrophy combined with a loss of oxidative fibers. Yet, hibernators consistently emerge from winter with very little atrophy, frequently accompanied by a slight shift in fiber ratios to more oxidative fiber types. Preservation of muscle morphology is combined with down-regulation of glycolytic pathways and increased reliance on lipid metabolism instead. Furthermore, while rates of protein synthesis are reduced during hibernation, balance is maintained by correspondingly low rates of protein degradation. Proposed mechanisms include a number of signaling pathways and transcription …