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Biomedical subjects

J B Phillips

Publications and source records attributed to J B Phillips.

45 records · Page 3Linked to original sources

Magnetic compass orientation in the Eastern red-spotted newt (Notophthalmus viridescens).

Laboratory tests were carried out to examine the orientation behavior of adult Eastern red-spotted newts (Notophthalmus viridescens) to earth-strength magnetic fields. Groups of 30 to 40 newts were housed in water-filled, all-glass aquaria with an artificial shoreline at one end. The aquaria were located in a greenhouse or outdoors adjacent to the laboratory building, and aligned on either the magnetic north-south or east-west axis. Tests were carried out in an enclosed indoor arena. Newts were tested in four horizontal alignments of the magnetic field: the ambient magnetic field (magnetic north at North) and three altered fields (magnetic north rotated to East, South or West). Data were analyzed after pooling the magnetic bearings from all four conditions in such a way as to retain the component of the newts' orientation that was a consistent response to the magnetic field. Elevation of training tank water temperature was used to increase the newts' motivation to orient in the direction of shore. Newts exposed to a training tank water temperature of 33-34 degrees C just prior to testing exhibited consistent unimodal magnetic compass orientation. The direction of orientation was altered predictably by changing training tank alignment and location relative to the laboratory building. The results provide the first evidence of a strong, replicable magnetic compass response in a terrestrial vertebrate under controlled laboratory conditions. Further, the present study demonstrates that the Eastern newt is able to learn a directional response relative to the earth's magnetic field.

Animals↗

Determination of methane in ambient air by multiplex gas chromatography.

A multiplex gas chromatographic technique for the determination of methane in ambient air over extended periods is reported. A modest gas chromatograph which uses air as the carrier gas was modified by adding a silver oxide sample modulator for multiplex operation. The modulator selectively catalyzes the decomposition of methane in air. The resulting analytical systems requires no consumables beyond power. A profile of the methane concentration in this laboratory was obtained for an 8-day period. During this period, methane concentration varied with an approximately daily period from a low of 1.53 +/- 0.60 ppm to a high of 4.63 +/- 0.59 ppm over the entire 8 days. Some of the measured concentrations are higher than those reported elsewhere indicating the presence of some local source or sources for methane. This work has demonstrated the utility of a relatively simple multiplex gas chromatograph for the analysis of environmental samples. The technique should be applicable to other trace components in air through use of other selective modulators.

Air↗

Protein recovery from reversed micellar solutions through contact with a pressurized gas phase.

We describe a new process for the recovery of encapsulated protein from reversed micellar solution in concentrated form. The method involves desolubilization of the protein by decreasing solvent density through gas dissolution. Under appropriate thermodynamic conditions, the micellar water pool can be converted to clathrate hydrates. Protein recovery is facilitated by clathrate hydrate formation, which causes the desolubilized protein to exist in a solid phase, distinct from the micellar supernatant. The process is carried out without any ionic strength or pH modification.

Dioctyl Sulfosuccinic Acid↗

Umbilical artery catheter blood sampling alters cerebral blood flow velocity in preterm infants.

OBJECTIVE: Changes in cerebral blood flow velocity (CBFV) have been associated with occurrence of intraventricular hemorrhage in preterm infants. Blood sampling from umbilical artery catheters (UACs) may cause changes in CBFV. Two UAC positions are generally used, high (T6 to T10) and low (L3 to L5). We hypothesized that CBFV changes would occur during UAC sampling and that CBFV changes would be greater in the high than the low position. STUDY DESIGN: We measured CBFV in the anterior cerebral artery in 30 very low birth weight infants before, during, and after aspiration and replacement of blood from UACs in both high and low positions. CBFV was calculated as the area under the velocity curve (AUVC) and the pulsatility index. Data were analyzed by paired t tests and repeated-measures multivariate analysis of variance. RESULTS: Blood sampling from UACs produced significant changes from baseline in CBFV during aspiration (-19%) and replacement (+9%) of blood from high UACs and during aspiration (-8%) of blood from low-positioned UACs. Overall, there was a 35% difference in AUVC CBFV between sampling and replacement in the high position, compared with a 15% difference in the low position. Changes in AUVC during both aspiration and replacement were significantly greater in the highpositioned UACs. No significant changes were noted for pulsatility index throughout the study. CONCLUSIONS: Blood sampling from UACs produces clinically significant changes in CBFV and may contribute to intraventricular hemorrhage. Blood sampling from low-positioned UACs caused smaller CBFV changes, thus this position may be safer for use in infants at risk for intraventricular hemorrhage.

Blood Flow Velocity↗