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Biomedical subjects

P M Nickolls

Publications and source records attributed to P M Nickolls.

6 recordsLinked to original sources

Antibody responses to bacteriophage phi X-174 in human subjects exposed to the antarctic winter-over model of spaceflight.

BACKGROUND: It has been proposed that exposure to long-term spaceflight conditions (stress, isolation, sleep disruption, containment, microbial contamination, and solar radiation) or to ground-based models of spaceflight will alter human immune responses, but specific antibody responses have not been fully evaluated. OBJECTIVE: We sought to determine whether exposure to the 8-month Antarctic winter-over model of spaceflight would alter human antibody responses. METHODS: During the 1999 Australian National Antarctic Research Expeditions, 11 adult study subjects at Casey, Antarctica, and 7 control subjects at Macquarie Island, sub-Antarctica, received primary and secondary immunizations with the T cell-dependent neoantigen bacteriophage phi X-174. Periodic plasma samples were analyzed for specific antibody function. RESULTS: All of the subjects from Casey, Antarctica, cleared bacteriophage phi X-174 normally by 1 week after primary immunization, and all had normal primary and secondary antibody responses, including immunologic memory amplification and switch from IgM to IgG antibody production. One subject showed a high normal pattern, and one subject had a low normal pattern. The control subjects from Macquarie Island also had normal immune responses to bacteriophage phi X-174. CONCLUSIONS: These data do not support the hypothesis that de novo specific antibody responses of subjects become defective during the conditions of the Antarctic winter-over. Because the Antarctic winter-over model of spaceflight lacks the important factors of microgravity and solar radiation, caution must be used in interpreting these data to anticipate normal antibody responses in long-term spaceflight.

Adult↗

Optical design in a flow system for imaging cells.

The imaging flow cytometer is an instrument that acquires the images of cells in a flow system. These images are analyzed for real-time cell classification and sorting. The optical units in the system perform the functions of laser beam focusing, cell detection, and cell imaging. The glass nozzle in which the cell stream flows introduces air-glass optical interfaces, resulting in optical aberrations that impair performance. This report describes the analysis of the optical aberrations in nozzles fabricated from a cylindrical glass capillary tube. Flat surfaces could be machined on the originally cylindrical surface to reduce the severity of these aberrations. The analysis shows that a nozzle with three flat surfaces is a feasible low-cost solution.

Equipment Design↗

Multicompartment models of cancer chemotherapy incorporating resistant cell populations.

The pharmacokinetics of antineoplastic drugs based on compartmental models are combined with deterministic exponential growth models of tumors containing drug-resistant and sensitive cells. Model predictions for single-drug therapy are compared with in vivo data obtained by other investigators for L1210 t-cell leukemia in mice treated with BCNU and Ara-C and for in vitro treatment of L1210 with Ara-C. The model and data compare favorably in terms of rate of tumor growth and duration of drug action for both constant infusion and bolus delivery of the drugs.

Animals↗

Non-invasive technique for examining the respiratory proprioceptor system in man.

Our technique enables non-invasive experiments to be conducted on the proprioceptor part of respiratory control, while eliminating misleading responses due to interaction with the chemoreceptor system; interaction was prevented by stabilizing arterial PO2 and PCO2 with the aid of an optimal regulator based on a mini-computer which controlled the inspired gas mixture. The proprioceptor system in a human was disturbed by applying positive pressure pulses at the mouth, responses were derived from continuous air-flow measurement. The classical inflation inhibiting reflex and an effect akin to Head's paradoxical reflex were demonstrated.

Biomedical Engineering↗

Technique for assessing the response of the respiratory controller to hypoxia and hypercapnia.

A technique, suitable for clinical practice, has been developed to measure quantitatively and separately the effects of hypercapnia on the central and peripheral chemoreceptors, and hypoxia on the peripheral chemoreceptors of a human subject. The technique uses a model to account for the dynamics of CO2 transport in the brain and is based on current concepts of the chemoreceptor system and makes a minimum of assumptions. The method was tested in one subject and there was evidence for hysteresis in the response to hypoxia and short-term adaptation in the response to hypercapnia of the chemoreceptor controller.

Biomedical Engineering↗