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Biomedical subjects

H E Criswell

Publications and source records attributed to H E Criswell.

5 recordsLinked to original sources

A flexible low cost signal averager.

A 2 channel signal averager based on the KIM-1 microcomputer module is described which can be easily assembled for under $500. Number of samples per pass can be set to 128 or 256 and sample time is variable from 1 msec to 256 msec. Averaged data can be displayed on an oscilloscope, output slowly for use of a chart recorder, or stored on a low cost audio cassette recorder for later analysis. Simply adding additional memory (for less than $100) allows it to be expanded to 8 channels.

Computers

A simple chronic microinjection system for use with chemitrodes.

An inexpensive, electrically operated microinjection system is described which is small enough to be mounted on the animal side of a standard Mercury commutator. This eliminates the troublesome swivel joint needed for chronic microinjection in freely moving animals. This system allows simultaneous electrical stimulation or recording and chemical stimulation via a chemitrode using a standard 4-channel Mercury commutator.

Animals

Analgesia and hyperractivity following morphine microinjection into mouse brain.

Analgesia and a paradoxical hyperreactivity to stimuli of sudden onset have recently been reported following the microinjection of morphine into the periacqueductal gray matter of rats. These effects have not been systematically investigated in other species. In the present study, both analgesia and hyperreactivity were observed as dose dependent effects of morphine microinjection into the periacqueductal gray matter of several strains of mice. Analgesia alone was produced by low doses of morphine while at higher doses analgesia was accompanied by hyperreactivity. Strain differences were noted with B6D2F1 mice being more susceptible to the hyperreactivity following morphine than BALB/c mice.

Analgesia

An injury-induced diffuse slow potential from brain.

Three different slow potential (SP) changes resulting from focal brain injury are described. The first is an immediate, high amplitude (in excess of 25 mV)negative shift at the site of injury. The second is a biphasic negative-positive SP wave which spreads throughout the cortex ipsilateral to injury and is similar to spreading depression (SD). The third SP change, called here the injury-induced diffuse slow potential (IDSP)is a prolonged (lasting approx. 2h) negative shift occurring simultaneously in many brain areas, also in those far removed from the injured focus. The SD can be separated from IDSP by the size of focal injury; a 20 mu pucture of the parenchyma will trigger IDSP but not SD. An injury resulting from a larger puncture triggers both, SD and IDSP. IDSPcan not be induced by a re-entry of a previously damaged tissue. The magnitude of IDSP has anatomical specificity in that the largest amplitude occurrs in white as compared to gray of the cortex or of the caudate nucleus. Aso, the magnitude of the hypothalamic IDSP is larger when ipsilateral corpus callosum-commissural regions are injured. Electrical stimulation of the cortex in rats sufficiently strong to result in tonic-clonic convulsions triggers SD and IDSP; these two slow potential changes are similar to those induced by mechanical injury. A transpinnate electrical stimulus strong enough to elicit a grand-mal type of discharge results in a diffuse negative slow potential change similar to IDSP elicited by mechanical damage or direct cortical stimulation.

Animals