Murray S Work
Biographic Data
| ID | 7122722 |
|---|---|
| NAME | Murray S Work |
| GIVEN NAMES | Murray S |
| FAMILY NAME | Work |
| SIGNATURE | WORK M S |
| AFFILIATIONS | Sacramento State College |
| VERIFIED | No |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 1964 |
| LATEST PUBLICATION YEAR | 1965 |
| H-INDEX | 0 |
Additional Comment on the Stimulus Train Adjusting Behavior of Rats Controlled by ICSS
Data from nine rats, which could regulate total energy input by adjusting response rate and/or duration, indicate that Ss do not tend to regulate response rate or response duration in a manner that would keep energy input per unit time or per response constant
Self-Determined Stimulus Trains of ICSS Delivered to Preoptic and Forebrain Regions as a Function of Biphasic Rectangular Pulse Frequency
Three rats with electrodes implanted in the preoptic area were trained to administer trains of rectangular biphasic pulses to their own brains for as long as they held a lever down. With pulse frequency as the independent variable it was found that mean response duration was a negatively accelerated decreasing function of pulse frequency. The relation between response rate and frequency suggests an inverted U-shaped function. Other Ss with electr…
Self-Determined Stimulus Train Duration of Intracranial Self-Stimulation as a Function of Pulse Frequency in the Rat
Six rats with bipolar electrodes chronically implanted were trained to press a lever to deliver a brief electric shock via the electrodes to the hypothalamus. The rats were subsequently allowed to maintain the current “on” for as long as the lever was depressed. Under this condition, mean response duration was found to be a decreasing, negatively accelerated function of frequency (pps). These results were discussed in the light of recent findings…
No prominent works on this page.
Self-Determined Stimulus Train Duration of Intracranial Self-Stimulation as a Function of Pulse Frequency in the Rat
Six rats with bipolar electrodes chronically implanted were trained to press a lever to deliver a brief electric shock via the electrodes to the hypothalamus. The rats were subsequently allowed to maintain the current “on” for as long as the lever was depressed. Under this condition, mean response duration was found to be a decreasing, negatively accelerated function of frequency (pps). These results were discussed in the light of recent findings…
Additional Comment on the Stimulus Train Adjusting Behavior of Rats Controlled by ICSS
Data from nine rats, which could regulate total energy input by adjusting response rate and/or duration, indicate that Ss do not tend to regulate response rate or response duration in a manner that would keep energy input per unit time or per response constant
Self-Determined Stimulus Trains of ICSS Delivered to Preoptic and Forebrain Regions as a Function of Biphasic Rectangular Pulse Frequency
Three rats with electrodes implanted in the preoptic area were trained to administer trains of rectangular biphasic pulses to their own brains for as long as they held a lever down. With pulse frequency as the independent variable it was found that mean response duration was a negatively accelerated decreasing function of pulse frequency. The relation between response rate and frequency suggests an inverted U-shaped function. Other Ss with electr…
Audiology (3 works) · Medicine (3 works) · Neuroscience (3 works) · Physics (3 works) · Psychology (3 works) · Stimulus (psychology (3 works) · Cognitive psychology (2 works) · Lever (2 works) · Neural dynamics and brain function (2 works) · Neuroscience and Neural Engineering (2 works)