Tracking Movement and Temperature Selection of Larvae of Two Forensically Important Blow Fly Species Within a "Maggot Mass"

The current study responds to the lack of understanding about the temperatures experienced by individual blow fly larvae within “maggot masses.” The temperature selection of both aggregating (in a mass) and nonaggregating larvae was compared and their pattern of movement assessed. Infrared imaging d...

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Veröffentlicht in:Journal of forensic sciences 2014-11, Vol.59 (6), p.1586-1591
Hauptverfasser: Johnson, Aidan P., Wighton, Samuel J., Wallman, James F.
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container_issue 6
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container_title Journal of forensic sciences
container_volume 59
creator Johnson, Aidan P.
Wighton, Samuel J.
Wallman, James F.
description The current study responds to the lack of understanding about the temperatures experienced by individual blow fly larvae within “maggot masses.” The temperature selection of both aggregating (in a mass) and nonaggregating larvae was compared and their pattern of movement assessed. Infrared imaging determined the temperatures within a mass and in the vicinity of the constituent individual larvae, whose movements were tracked by dyeing their tissues red. Individual Chrysomya rufifacies larvae selected temperatures above 27°C, significantly higher than the temperature selected by Calliphora vicina larvae (24.5°C). However, this same difference was not seen within a mass, with both species selecting temperatures around 28°C. Larval movement in a mass was nonrandom, indicating that larvae actively select their position in a mass. Furthermore, larvae have a strong tendency to select the hottest part of a mass; therefore, maximum mass temperatures might provide a reliable proxy for the actual temperatures experienced by larvae.
doi_str_mv 10.1111/1556-4029.12472
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source MEDLINE; Wiley Online Library Journals Frontfile Complete
subjects Animals
Calliphora vicina
Chrysomya rufifacies
Diptera - physiology
Entomology
forensic entomology
forensic science
Forensic Sciences
Larva - physiology
maggot mass
Movement - physiology
path analysis
Temperature
temperature gradient
temperature selection
thermal regulation
title Tracking Movement and Temperature Selection of Larvae of Two Forensically Important Blow Fly Species Within a "Maggot Mass"
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