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Biomedical subjects

R Hoy

Publications and source records attributed to R Hoy.

11 recordsLinked to original sources

Mushroom bodies of vespid wasps.

Mushroom bodies are higher centers in the brains of insects. Studies on honey bees and species of ants suggest that these centers are particularly prominent in social insects. The present study confirms the presence of large mushroom bodies in five subfamilies of vespid wasps, while at the same time showing significant departures from the mushroom body organization that typifies bees and ants. Although the basic organizational plan of the insect mushroom body into calyces, peduncle, and lobes is maintained, as is the arrangement of axons of intrinsic neurons, the size and arrangements of the vespid mushroom body lobes differ markedly from those known from other Hymenoptera. Furthermore, considerable variation is found both between and within vespid subfamilies. The present results are discussed with respect to current hypotheses about functional attributes of mushroom bodies and the phylogeny of the Vespidae.

Animals↗

Chunk versus point sampling: visual imaging in a small insect.

The eyes of strepsipteran insects are very unusual among living insects. In their anatomical organization they may form a modern counterpart to the structural plan proposed for the eyes of some trilobites. Externally they differ from the usual "insect plan" by presenting far fewer but much larger lenses. Beneath each lens is its own independent retina. Anatomical and optical measurements indicate that each of these units is image-forming, so that the visual field is subdivided into and represented by "chunks," unlike the conventional insect compound eye that decomposes the visual image in a pointwise manner. This results in profound changes in the neural centers for vision and implies major evolutionary changes.

Animals↗

The neuroethology of acoustic startle and escape in flying insects.

The acoustic startle/escape response is a phylogenetically widespread behavioral act, provoked by an intense, unexpected sound. At least six orders of insects have evolved tympanate ears that serve acoustic behavior that ranges from sexual communication to predator detection. Insects that fly at night are vulnerable to predation by insectivorous bats that detect and locate their prey by using biosonar signals. Of the six orders of insects that possess tympanate hearing organs, four contain species that fly at night and, in these, hearing is sensitive to a range of ultrasonic frequencies found in the biosonar signals of bats. Laboratory and field studies have shown that these insects (including some orthopterans, lepidopterans, neuropterans and dictyopterans), when engaged in flight behavior, respond to ultrasound by suddenly altering their flight, showing acoustic startle or negative phonotaxis, which serve as bat-avoidance behavior. A neural analysis of ultrasound-mediated escape behavior was undertaken in the field cricket Telegryllus oceanicus. An identified thoracic interneuron, int-1, was shown to trigger the escape response, but only when the cell was driven (synaptically or electrically) at high spike rates, and only when the insect was performing flight behavior; avoidance steering only occurs in the appropriate behavioral context: flight. Thus, significant constraints operate upon the ability of int-1 to trigger the escape response. The integration of auditory input and flight central pattern generator output occurs in the brain. It is found that neural activity descending from the brain in response to stimulation by ultrasound is increased when the insect is flying compared to when it is not. Although the behavioral act of avoidance steering may appear to be a simple reflex act, further analysis shows it to be anything but simple.

Acoustic Stimulation↗

An evaluation of a high resolution closed-circuit television link in a hospital radiology department.

We have installed and developed a high resolution closed-circuit television system for transmission of radiographic film images from the emergency room in our hospital to the reading room in our radiology department. Using this system, the radiologist can consult promptly on all films and he has increased efficiency. To transmit high detail images, our television system uses a high resolution vidicon camera with a scan rate of 1029 lines and with a limiting resolution of 1200 TV lines. To further increase the overall diagnostic value of our system, we have added remote controls for changing the magnification, illumination and position of the film. In a preliminary clinical trial, seven radiologists were each shown 27 patient film sets transmitted through the television system and then viewed directly on a conventional view box. An analysis of variance of the accuracy rates in each method showed a statistical difference in methods. Even though the error rate was slightly higher using closed-circuit system, radiologist performance was of acceptable accuracy when considering the advantages of the system. In addition, many of the factors reducing the TV system performance have been eliminated or controlled, and further experiments should reflect an even smaller difference between the two methods.

False Positive Reactions↗

Healthcare in Kenya: learning from a Third World country.

Kenya's healthcare problems are exacerbated by illiteracy, widespread communities, poor sanitation in some areas, and tribal customs and traditions. This article gives an overview of Kenya's healthcare system that was gained by the author during a study tour to Kenya in March 1991.

Academies and Institutes↗