Literature DB >> 10920789

Mechanical vibration in neonatal transport: a randomized study of different mattresses.

G Gajendragadkar1, J A Boyd, D W Potter, B G Mellen, G D Hahn, J P Shenai.   

Abstract

OBJECTIVE: To test the hypothesis that a gel mattress is most effective in attenuating mechanical vibration in neonatal transport, we performed a randomized block study of four mattress combinations (none, foam, gel, gel on foam) using mannequins and an ambulance traveling on fixed routes (city, highway). STUDY
DESIGN: Mechanical vibration was assessed by measuring vertical accelerations at two locations: the forehead of a 2000-gm mannequin and the transport incubator base. From time histories of these accelerations, root mean square (RMS) values and power spectral density functions were calculated. The effect of the mattress on the transmission of vibration was determined from ratios of the RMS values at the two locations. An RMS ratio of < 1.0 indicates attenuation, whereas a ratio of > 1.0 indicates accentuation of vibration. From the power spectral density functions, the natural frequency of the system was determined for each mattress combination in relation to the natural frequencies of the ambulance. To determine the effect of the weight of the mannequin on vibration, additional measurements were performed using a 300-gm mannequin.
RESULTS: All the observed RMS ratios were > 1. The highest ratios were observed on the city route in the absence of the gel mattress. The gel mattress, used alone or with the foam mattress, in contrast to foam or no mattress, shifted the natural frequency of the system away from the natural frequencies of the ambulance, avoiding a large amplification of vibration. A decrease in the weight of the mannequin caused the gel mattress to be less effective in attenuating vibration.
CONCLUSION: A gel mattress, used alone or with a foam mattress, results in the least accentuation of vibration, but vibration in ambulance transport is not attenuated by any of the mattress combinations. The hazard of vibration may be particularly relevant when transporting extremely low birth weight neonates. These findings indicate a need for study and design of more effective devices that can reduce the vibratory stress.

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Year:  2000        PMID: 10920789     DOI: 10.1038/sj.jp.7200349

Source DB:  PubMed          Journal:  J Perinatol        ISSN: 0743-8346            Impact factor:   2.521


  5 in total

1.  The interfacility transport of critically ill newborns.

Authors:  Hilary Ea Whyte; Ann L Jefferies
Journal:  Paediatr Child Health       Date:  2015 Jun-Jul       Impact factor: 2.253

Review 2.  Fit to fly: practical challenges in neonatal transfers by air.

Authors:  C H Skeoch; L Jackson; A M Wilson; P Booth
Journal:  Arch Dis Child Fetal Neonatal Ed       Date:  2005-11       Impact factor: 5.747

3.  Decreasing sound and vibration during ground transport of infants with very low birth weight.

Authors:  J Prehn; I McEwen; L Jeffries; M Jones; T Daniels; E Goshorn; C Marx
Journal:  J Perinatol       Date:  2014-11-27       Impact factor: 2.521

4.  Excessive exposure of sick neonates to sound during transport.

Authors:  L Buckland; N Austin; A Jackson; T Inder
Journal:  Arch Dis Child Fetal Neonatal Ed       Date:  2003-11       Impact factor: 5.747

5.  Do transport factors increase the risk of severe brain injury in outborn infants <33 weeks gestational age?

Authors:  Stephanie Redpath; Prakesh S Shah; Gregory P Moore; Junmin Yang; Jennifer Toye; Thérèse Perreault; Kyong-Soon Lee
Journal:  J Perinatol       Date:  2019-08-19       Impact factor: 2.521

  5 in total

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