Publications by authors named "G J Pass"

Article Synopsis
  • Insect antennae are hollow, blood-filled structures that allow for complex movements controlled by muscles in the basal segments, while the muscle-free flagellum can flex and twist.
  • A study compared the tensile properties of antennae from different species, finding they behave as either brittle or strain-adaptive fibers that can stiffen under tension.
  • The researchers developed a theory to explain how blood pressure and cuticle deformation work together to influence antennal movement, suggesting similar principles may apply to other insect appendages and offering potential applications for fiber-based microfluidics.
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Aims: Limited information exists on what preoperative weight loss interventions (lifestyle, pharmacological, surgical) are effective in improving outcomes of elective, nononcological, gynecological surgery. Obesity rates are increasing and associated with poorer operative outcomes. We aimed to identify high quality studies into preoperative weight loss interventions and perform a systematic review of the literature to guide recommendations for reducing gynecological surgical complications and guide future research.

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Biogenic purine crystals function in vision as mirrors, multilayer reflectors and light scatterers. We investigated a light sensory organ in a primarily wingless insect, the jumping bristletail Lepismachilis rozsypali (Archaeognatha), an ancestral group. The visual system of this animal comprises two compound eyes, two lateral ocelli, and a median ocellus, which is located on the front of the head, pointing downwards to the ground surface.

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Wings are probably the most advanced evolutionary novelty in insects. In the fruit fly Drosophila melanogaster, proper development of wings requires the activity of so-called wing hearts located in the scutellum of the thorax. Immediately after the imaginal ecdysis, these accessory circulatory organs remove hemolymph and apoptotic epidermal cells from the premature wings through their pumping action.

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Background: Phylogenetic relationships among the myriapod subgroups Chilopoda, Diplopoda, Symphyla and Pauropoda are still not robustly resolved. The first phylogenomic study covering all subgroups resolved phylogenetic relationships congruently to morphological evidence but is in conflict with most previously published phylogenetic trees based on diverse molecular data. Outgroup choice and long-branch attraction effects were stated as possible explanations for these incongruencies.

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