1994/08/01 by John Davenport · 1 citation
Earth and Planetary Sciences · #Marine Invertebrate Physiology and Ecology
paper · doi:10.1080/00222939400770401
openalex publication_date 1994/08/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/29
The buoyancy and locomotion of the hyperiid amphipod Phronima sedentaria (which lives in barrels constructed from the tissues of gelatinous animals) was studied. The amphipods were much denser than sea water. Barrels were slightly denser than sea water and had six times the mass of the amphipods living within them. Phronima sedentaria swims much more quickly (by a factor of about 3–4) when swimming without its gelatinous barrel. The barrel is asymmetrical with one aperture (entrance) having about three times the area of that of the other (exit). All sustained swimming was accomplished with the larger barrel aperture directed forwards and the significance of this is discussed. Water flow around the barrel and much of the flow through the barrel was laminar; turbulence was limited to the posterior third of the interior of the barrel and was associated with the beating of the pleopods that provide both propulsion and the respiratory current.