Hypothalamic self-stimulation - interaction of hypoxia and stimulus intensity.
Electrical stimulation of brain - interaction between hypoxia and changes in central nervous system activity in rats
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Electrical stimulation of brain - interaction between hypoxia and changes in central nervous system activity in rats
There are approximately 50,000 autistic and retarded people in the United States alone, and many of them engage in self-injurious behavior, principally compulsive headbanging. Hope is offered by an automated unit, manufactured at Johns Hopkins University, called the Self-Injurious Behavior Inhibiting System (SIBIS). Components of SIBIS are stimulus module which is worn on upper arm or leg, and headgear which includes an impact detector and a transmitter on back of head. When there is a blow to the head it is sensed by impact detector which generates a coded signal that is automatically transferred to stimulus module which delivers a mild electrical stimulus to the skin for less than 1/10 of a second. Stimulus is sufficient to halt headbanging. Microprocessor computes impacts allowing measurement of patient progress.
Hypoxia effects on skilled motor task by rats, investigating interaction of hypoxia and electric stimulus intensity on hypothalmic self stimulation
Electronic coupling effects such as Inter-Pixel Capacitance (IPC) affect the quantitative interpretation of image data from CMOS, hybrid visible and infrared imagers alike. Existing methods of characterizing IPC do not provide a map of the spatial variation of IPC over all pixels. We demonstrate a deterministic method that provides a direct quantitative map of the crosstalk across an imager. The approach requires only the ability to reset single pixels to an arbitrary voltage, different from the rest of the imager. No illumination source is required. Mapping IPC independently for each pixel is also made practical by the greater S/N ratio achievable for an electrical stimulus than for an optical stimulus, which is subject to both Poisson statistics and diffusion effects of photo-generated charge. The data we present illustrates a more complex picture of IPC in Teledyne HgCdTe and HyViSi focal plane arrays than is presently understood, including the presence of a newly discovered, long range IPC in the HyViSi FPA that extends tens of pixels in distance, likely stemming from extended field effects in the fully depleted substrate. The sensitivity of the measurement approach has been shown to be good enough to distinguish spatial structure in IPC of the order of 0.1%.
Animals trained to respond to a given pattern of electrical stimuli applied to pathways or centers of the auditory nervous system respond also to certain patterns of acoustic stimuli without additional training. Likewise, only certain electrical stimuli elicit responses after training to a given acoustic signal. In most instances, if a response has been learned to a given electrical stimulus applied to one center of the auditory nervous system, the same stimulus applied to another auditory center at either a higher or lower level will also elicit the response. This kind of transfer of response does not take place when a stimulus is applied through electrodes implanted in neural tissue outside of the auditory system.
Experiments were done on 28 rabbits in which puncture instruments were left in the brain for 1-2 days until the calori-puncture hyperthermia had passed and the body temperature was again normal. The instrument remaining in the brain was then used as a galvanic electrode and a second fever was produced, this time due to the electrical stimulus. It was concluded that heat is a centrally acting antipyretic and that cold is a centrally acting stimulus which produces hyperpyrexia cold-induced fever.
Electric stimulation of crossed olivocochlear cats and effect on auditory nerve responses
Avoidance conditioning of heart rate in humans with visual stimulus signaling availability of electric shock punishment
Comparison of selected features of electric responses recorded from units in auditory nerve and cochlear nucleus
Reinforcing effect of informative stimulus that is not positive discriminative stimulus
Reaction time to onset and offset of electrocutaneous stimulus as function of rise and decay time
Effect of electric stimulation on spinocervical tract of cat
Telestimulator systems for observation of physiological responses of subjects receiving electric stimulation of brain
Hypothalamic stimulation of rats suffering from foot shocks
Mathematical theory relating neuronal geometry to parameters of excitation in unconditioned response of planarians to electric shock
Importance of neural site and experimental conditions in determining motivational direction /positive or negative/ produced by electrical stimulation of brain in animals
Holtzman strain experiments on rats, determining if electrical stimulation of various neural sites produce motivational consequences of appetitive or defensive behavior