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Biomedical subjects

R Woodhouse

Publications and source records attributed to R Woodhouse.

7 recordsLinked to original sources

Pharmaceutical transition to non-CFC pressurized metered dose inhalers.

The production of ozone-depleting chlorofluorocarbons (CFCs) was discontinued on 1 January 1996 for all uses deemed non-essential under the Montreal Protocol. However, the use of CFCs as propellants in pressurized metered dose inhalers (pMDIs) was classed as essential, providing an exemption from the agreement. Following extensive research, the hydrofluoroalkanes (HFA) 134a and 227 were identified as the only suitable replacements for CFC propellants in pMDIs. The drug delivery of pMDIs formulated with HFA 134a as a propellant and containing either salbutamol (100 microg per actuation) or fluticasone propionate (125 and 250 microg per actuation) have been assessed for dose uniformity and particle size distribution. All of the HFA 134a pMDIs delivered doses throughout the life of the canisters that were reproducible and within specified regulatory requirements. Each of the products provided an emitted dose which was within +/- 25% of the mean value indicating accurate and consistent dosing (93, 112 and 221 microg per metered dose for the salbutamol 100 microg and fluticasone propionate 125 and 250 microg HFA 134a pMDIs, respectively). These findings were unaffected by changing the storage orientation of the pMDI or by using the device in a manner designed to simulate typical patient use. The particle size distributions of HFA 134a pMDI doses did not differ significantly from those of the corresponding CFC pMDIs. As a result of the similar pharmaceutical performance, it is unnecessary to change the label claim dose of active drug when making the transition from a CFC to an HFA 134a pMDI for salbutamol (Ventolin) and fluticasone propionate (Flixotide). A seamless transition to non-CFC pMDIs will help to maintain the confidence of patients and healthcare professionals in asthma therapy.

Aerosol Propellants↗

Analysis of remote reflection spectroscopy to monitor plant health.

Remote non-contact reflection spectroscopy is examined as a method for detecting stress in Controlled Ecological Life Support System CELSS type crops. Lettuce (Lactuca [correction of Latuca] Sativa L. cv. Waldmans Green) and wheat (Triticum Aestivum L. cv. Yecora Rojo) were grown hydroponically. Copper and zinc treatments provided toxic conditions. Nitrogen, phosphorous, and potassium treatments were used for deficiency conditions. Water stress was also induced in test plants. Reflectance spectra were obtained in the visible and near infrared (400nm to 2600nm) wavebands. Numerous effects of stress conditions can be observed in the collected spectra and this technique appears to have promise as a remote monitor of plant health, but significant research remains to be conducted to realize the promise.

Algorithms↗

Responses of albino and hooded rats to various illumination choices in a six-chambered alleyway.

To determine preferred illumination when multiple choices were simultaneously available, 10 different levels of illuminance (including darkness) were grouped into three overlapping ranges, each composed of six different choices. Subjects were permitted to move freely among six chambers in an enclosed alleyway for 48 continuous hours. Entries and duration in each of the chambers served as the dependent variables. Five groups of seven animals each were tested. Hooded rats preferred darkness, 0.01 ft-c (0.11 lx) and 20 ft-c (215.2 lx) about equally; each albino group preferred the dimmest available illuminated choice, viz., 0.01 ft-c (0.11 lx), 0.1 ft-c (1.08 lx), and 1.0 ft-c (10.76 lx); control rats distributed their time equally among all chambers. Activity of all groups reflected a typical circadian rhythm. These relative preferences for illumination contrast with absolute preference previously reported and perhaps reflect methodological differences.

Animals↗