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Bulletin of Mathematical Biology - By means of physico-mathematical models, formulas are obtained for the purpose of making analyses of external carbon dioxide respiration in man under conditions... 相似文献
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Tests of a linear model of visual-vestibular interaction using the technique of parameter estimation
Vallabh E. Das Alfred O. DiScenna Andrew Feltz Stacy Yaniglos R. John Leigh 《Biological cybernetics》1998,78(3):183-195
The goal of this study was to test whether a superposition model of smooth-pursuit and vestibulo-ocular reflex (VOR) eye
movements could account for the stability of gaze that subjects show as they view a stationary target, during head rotations
at frequencies that correspond to natural movements. Horizontal smooth-pursuit and the VOR were tested using sinusoidal stimuli
with frequencies in the range 1.0–3.5 Hz. During head rotation, subjects viewed a stationary target either directly or through
an optical device that required eye movements to be approximately twice the amplitude of head movements in order to maintain
foveal vision of the target. The gain of compensatory eye movements during viewing through the optical device was generally
greater than during direct viewing or during attempted fixation of the remembered target location in darkness. This suggests
that visual factors influence the response, even at high frequencies of head rotation. During viewing through the optical
device, the gain of compensatory eye movements declined as a function of the frequency of head rotation (P < 0.001) but, at any particular frequency, there was no correlation with peak head velocity (P > 0.23), peak head acceleration (P > 0.22) or retinal slip speed (P > 0.22). The optimal values of parameters of smooth-pursuit and VOR components of a simple superposition model were estimated
in the frequency domain, using the measured responses during head rotation, as each subject viewed the stationary target through
the optical device. We then compared the model's prediction of smooth-pursuit gain and phase, at each frequency, with values
obtained experimentally. Each subject's pursuit showed lower gain and greater phase lag than the model predicted. Smooth-pursuit
performance did not improve significantly if the moving target was a 10 deg × 10 deg Amsler grid, or if sinusoidal oscillation
of the target was superimposed on ramp motion. Further, subjects were still able to modulate the gain of compensatory eye
movements during pseudo-random head perturbations, making improved predictor performance during visual-vestibular interactions
unlikely. We conclude that the increase in gain of eye movements that compensate for head rotations when subjects view, rather
than imagine, a stationary target cannot be adequately explained by superposition of VOR and smooth-pursuit signals. Instead,
vision may affect VOR performance by determining the context of the behavior.
Received: 16 June 1997 / Accepted: 5 December 1997 相似文献
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David J. Gonthier Katherine K. Ennis Stacy M. Philpott John Vandermeer Ivette Perfecto 《BioControl》2013,58(6):815-820
Ants frequently prevent herbivores from damaging plants. In agroecosystems they may provide pest control services, although their contributions are not always appreciated. Here we compared the ability of eight ant species to prevent the coffee berry borer from colonizing coffee berries with a field exclusion experiment. We removed ants from one branch (exclusion) and left ants to forage on a second branch (control) before releasing 20 berry borers on each branch. After 24 h, six of eight species had significantly reduced the number of berries bored by the berry borer compared to exclusion treatment branches. While the number of berries per branch was a significant covariate explaining the number of berries bored, ant activity (that varied greatly among species) was not a significant factor in models. This study is the first field experiment to provide evidence that a diverse group of ant species limit the berry borer from colonizing coffee berries. 相似文献
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Stacy A. Ruse Vicki G. Davis Alexandra S. Atkins K. Ranga R. Krishnan Kolleen H. Fox Philip D. Harvey Richard S.E. Keefe 《Journal of visualized experiments : JoVE》2014,(86)
Cognitive impairments affect the majority of patients with schizophrenia and these impairments predict poor long term psychosocial outcomes. Treatment studies aimed at cognitive impairment in patients with schizophrenia not only require demonstration of improvements on cognitive tests, but also evidence that any cognitive changes lead to clinically meaningful improvements. Measures of “functional capacity” index the extent to which individuals have the potential to perform skills required for real world functioning. Current data do not support the recommendation of any single instrument for measurement of functional capacity. The Virtual Reality Functional Capacity Assessment Tool (VRFCAT) is a novel, interactive gaming based measure of functional capacity that uses a realistic simulated environment to recreate routine activities of daily living. Studies are currently underway to evaluate and establish the VRFCAT’s sensitivity, reliability, validity, and practicality. This new measure of functional capacity is practical, relevant, easy to use, and has several features that improve validity and sensitivity of measurement of function in clinical trials of patients with CNS disorders. 相似文献
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Ji-Yoen Kim Stacy D. Grunke Yona Levites Todd E. Golde Joanna L. Jankowsky 《Journal of visualized experiments : JoVE》2014,(91)
With the pace of scientific advancement accelerating rapidly, new methods are needed for experimental neuroscience to quickly and easily manipulate gene expression in the mouse brain. Here we describe a technique first introduced by Passini and Wolfe for direct intracranial delivery of virally-encoded transgenes into the neonatal mouse brain. In its most basic form, the procedure requires only an ice bucket and a microliter syringe. However, the protocol can also be adapted for use with stereotaxic frames to improve consistency for researchers new to the technique. The method relies on the ability of adeno-associated virus (AAV) to move freely from the cerebral ventricles into the brain parenchyma while the ependymal lining is still immature during the first 12-24 hr after birth. Intraventricular injection of AAV at this age results in widespread transduction of neurons throughout the brain. Expression begins within days of injection and persists for the lifetime of the animal. Viral titer can be adjusted to control the density of transduced neurons, while co-expression of a fluorescent protein provides a vital label of transduced cells. With the rising availability of viral core facilities to provide both off-the-shelf, pre-packaged reagents and custom viral preparation, this approach offers a timely method for manipulating gene expression in the mouse brain that is fast, easy, and far less expensive than traditional germline engineering. 相似文献
1000.
The Antarctic shelf fauna is isolated from other continental shelf faunas both physically by distance, and oceanographically
by the Antarctic circumpolar current (ACC). To elucidate the relative importance of these two isolating mechanisms, we used
the seastar fauna of the south-Atlantic sub-Antarctic islands to address the hypothesis that the ACC is dominant in controlling
the distribution pattern of Antarctic fauna. We expected that seastar faunas from islands on the high latitude side of the
ACC would show more similarities to each other than to faunas from islands on the low latitude side. The alternative isolation
by distance model predicted that the island furthest from others would have the most unique fauna. For shelf-depth (<500 m)
Asteroidea of the Scotia Arc region, assemblages were more similar between islands on each side of the ACC barrier than islands
that were closer together, and this pattern was caused by differences in abundance of a few ubiquitous species. 相似文献