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J B Martens

Publications and source records attributed to J B Martens.

2 recordsLinked to original sources

An object-oriented model for brightness perception.

An object-oriented model for the brightness perception of static images is presented. The philosophy behind the model is that the visual system aims at a brightness representation that displays object properties, and consequently is insensitive to variations in light source and changes in viewing position. The model assumes an ensemble of neural units that differ in receptive field size, i.e. identical operations are performed at a number of (spatial) scales. The brightness at each retinal position is the weighted sum of the neural activities that exist at this position in the different scales. The weighting function is such that the brightness impression is robust against variation in viewing distance. The operating characteristics of the neural units are derived from ganglion cell behaviour, and are robust against variation in light level. The model is able to unify different aspects of brightness perception, such as brightness induction and brightness assimilation. In order to gain in transparency, the approach adopted in this paper is a general one: we aim at showing how different aspects of brightness perception can be explained and unified within the model, at the expense of a less detailed description of psychophysical data.

Humans

Hypothalamo-adenohypophyseal-thyroid interrelationships in the chick embryo. IV. Immunocytochemical demonstration of TSH in the hypophyseal pars distalis.

The cells that synthesize thyroid-stimulating hormone (TSH) in the pars distalis of the chick embryo were identified immunocytochemically (immunoperoxidase and immunofluorescence) using anti-bovine TSH-beta and anti-human TSH-beta sera. TSH cells are first demonstrable on Day 6.5 of incubation. By Day 11.5, when the two lobes (rostral and caudal) of the pars distalis are easily recognized, TSH cells are confined exclusively to the rostral lobe. TSH cells identified by means of immunofluorescence were stained with the periodic acid-Schiff component of the performic acid-Alcian blue periodic acid-Schiff's Orange G stain. Immunoreactive TSH cells in the pares distales of Day 13.5 chick embryos, injected at 5.5 days of incubation with thiourea, were more intensively stained than their normal counterparts. The marked change in immunocytochemically demonstrable TSH on Day 11.5 corresponds with physiological and morphological events occurring within the hypothalamus, adenohypophysis, and the thyroid gland of the developing chick during this midincubational (midgestational) period. The data suggest that not only is hypophyseal TSH present in greater quantities after Day 10.5, but that adenohypophyseal synthesis and secretion of TSH may be stimulated by another factor (hypothalamic TRH) at this time, signaling functional maturation of the hypothalamo-adenohypophyseal-thyroid axis.

Animals