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V J Wulff

Publications and source records attributed to V J Wulff.

At least 19 recordsLinked to original sources

Temporal relationships of latency and magnitudes of Limulus ventral photoreceptor potentials elicited by two light pulses.

As the dark interval between two stimulating light pulses increases, the latent period of the ensuing receptor potential increases to an asymptote reached about midway during the latency and is, thereafter, constant. The latent period is thus divisible into two segments, the first of which is light sensitive and the second not. The possible significance of these segments has been explored [12]. During the time the latent period is increasing toward its limiting value, the magnitudes of both components of the receptor potential are constant and maximal. The magnitude of the first component of the receptor potential begins to decline at a pulse interval of 15 msec, signify that the contribution of photons incident on the photoreceptor from the second pulse is diminishing. The magnitude of the second component of the receptor potential begins to decline at a pulse interval of 20 msec, suggesting that the contribution of photons delivered by the first pulse is diminishing. These results demonstrate that the two pulse stimulating paradigm reveals two segments of the receptor potential latent period and the ability of the photoreceptor to integrate radiant energy incident during the latent period, as measured by receptor potential magnitude.

Animals↗

Two latent period processes in Limulus ventral photoreceptors.

The latent period of Limulus ventral photoreceptor potentials consists of two contiguous time segments, S1 and S2, which exhibit the following properties: (1) the duration of S1 is inversely dependent on the incident energy provided by the first stimulating light flash; (2) the duration of S1 is prolonged in the presence of GTP-gamma-S [guanosine-5'-0- (3-thiotriphosphate)] or papaverine; (3) the duration of S1 is abbreviated in the presence of sodium vanadate or chlorobutanol; (4) the duration of S2 is abbreviated by light adaptation; and (5) the duration of S2 is prolonged more than S1 in a low temperature environment. The existence of these two components of the Limulus ventral photoreceptor potential latent period is demonstrable both in dark adapted photoreceptors, using single constant intensity light pulses of varying duration, or in partially light adapted photoreceptors, using a stimulating conditioning pulse-test pulse sequence. On the basis of these results it is tentatively concluded that the two segments of the latent period of Limulus ventral photoreceptor potentials are occupied by different processes. The first process, occupying the S1 segment, generates a critical concentration of a photoproduct which, directly or indirectly, eventually alters the conductance of the active photoreceptor membrane. The second process, occupying the S2 segment, is concerned with the initiation of the SPFs which sum to produce the receptor potential. It is possible that the hydrolysis of GTP actively participates in the first process.

Aminophylline↗

Visual receptor potential: modification by injected current in the limulus lateral eye.

The latent period of the light-evoked receptor potential was increased by hyperpolarizing currents injected directly into doubly impaled retinular cells. Indirect hyperpolarization of these cells by injection of hyperpolarizing current into the eccentric cell or other intraommatidial retinular cells either shortened or did not change the latent period. The modification of the latent period may depend upon the direction of current flow across some regions of the membrane system constituting the rhabdomere. The reduction in magnitude of the receptor potential obtained with strong hyperpolarizing currents may also depend upon the direction of current flow. The results support the conclusion that the receptor potential originates in retinular cells within the membrane system of the rhabdomere.

Animals↗