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Jeffrey Zimmerman

Publications and source records attributed to Jeffrey Zimmerman.

3 recordsLinked to original sources

Effect of temperature and relative humidity on the stability of infectious porcine reproductive and respiratory syndrome virus in aerosols.

The objective of this experiment was to describe the stability of airborne infectious porcine reproductive and respiratory syndrome virus (PRRSV) as a function of temperature and relative humidity. A cloud of infectious PRRSV was aerosolized using 24-jet Collison nebulizer into a dynamic aerosol toroid (DAT) maintained at a specific temperature and relative humidity. The PRRSV cloud within the DAT was sampled repeatedly over time using SKC BioSampler impingers and the total viral RNA (RT-PCR) and concentration of infectious PRRSV (TCID50) in the air samples was determined. As measured by quantitative RT-PCR, PRRSV RNA was stable under the conditions evaluated in this study. Thus, a comparison of viral RNA and Rhodamine B dye, a physical tracer, found no significant difference in the slopes of the lines. Titers of infectious virus were plotted by time and the half-life (T1/2) of infectious PRRSV was calculated using linear regression analysis. An analysis of the results showed that aerosolized PRRSV was more stable at lower temperatures and/or lower relative humidity, but temperature had a greater effect on the T1/2 of PRRSV than relative humidity. Based on these results, an equation was derived to predict the T1/2 of infectious airborne PRRSV for any combination of environmental temperature and relative humidity.

Aerosols↗

Nasal septal perforation repair with porcine small intestinal submucosa.

Repair of nasal septal perforations presents a difficult challenge to the otolaryngologist. Successful closure rates of greater than 90% have been published by several authors using bipedicled mucoperichondrial advancement flaps and interpositional grafts. A number of different materials, both autografts and allografts, have been used as interpositional grafts. We report a 100% closure rate (10 of 10) using an open rhinoplasty technique with bipedicled advancement flaps and porcine small intestinal submucosa (SurgiSIS; Cook Biotech Inc, West Lafayette, Ind) as an interpositional graft. We submit that SurgiSIS is an ideal material for use in the repair of nasal septal perforations because it is easy to work with, demonstrates the ability to support the regeneration of adjacent tissue, and avoids the increased operative time and morbidity associated with harvesting autografts.

Adult↗