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Biomedical subjects

G Tassinari

Publications and source records attributed to G Tassinari.

At least 55 records · Page 3Linked to original sources

Hemiretinal differences in speed of light detection in esotropic amblyopes.

Nine esotropic amblyopes were tested monocularly in a simple reaction time (RT) paradigm with brief suprathreshold flashes of light presented at various eccentricities along the horizontal meridian of the nasal or temporal hemiretinae. All were clinically amblyopic in one eye only. RT was significantly longer in the amblyopic than in the other eye at 1, 5 and 10 deg but not at 25 and 35 deg from the fovea. Another clearcut finding concerned hemiretinal differences: in the non-amblyopic eye, as in control subjects, RT was faster in the nasal than in the temporal hemiretina and such a difference increased with the eccentricity of stimulus presentation. In the amblyopic eye, however, the only significant hemiretinal effect was at 10 deg with a temporal retina advantage and at 35 deg with a nasal retinal advantage. Furthermore, unlike in normal control subjects and the non-amblyopic eye of our esotropes, in the amblyopic eye there was no increase in RT with the eccentricity of stimulus presentation, except for the most peripheral visual field positions. It can be concluded that esotropic amblyopia affects the speed of suprathreshold light detection in the most central 10 deg of visual field and that the nasal hemiretina is clearly more impaired than the temporal hemiretina.

Adult↗

Visual and somatosensory integration in the anterior ectosylvian cortex of the cat.

We recorded from single neurons in both banks of the posterior two-thirds of the anterior ectosylvian sulcus. All neurons were tested with visual and tactile stimulations. In each bank of the anterior ectosylvian sulcus the majority of neurons were bimodal, i.e. responded to both visual and tactile stimuli (B cells); the remaining population was strictly unimodal, responding either to visual (V cells) or to somatosensory (T cells) stimulation. Bimodal and unimodal neurons were recorded at all explored cortical sites and were consistently intermixed. Unlike bimodal neurons, unimodal neurons showed an asymmetric localization: the V cells were significantly more numerous in the ventral bank while the T neurons were preferentially found in the dorsal bank of the sulcus. We could not detect an orderly somatotopic or visuotopic representation, nor was it possible to find a systematic spatial correspondence between somatic and visual receptive fields. The functional organization of the anterior ectosylvian cortex is discussed in terms of a hierarchical processing of sensory information.

Animals↗

Electrophysiological evidence for interhemispheric connections in the anterior ectosylvian sulcus in the cat.

We report electrophysiological data regarding the contribution of the corpus callosum to visual responses in the cortex around the anterior ectosylvian sulcus (AES). The experiments were performed in cats in which the optic input from each eye was surgically restricted to the ipsilateral hemisphere (split-chiasm cats), and where neuronal responses to stimulation of the contralateral eye were mediated by interhemispheric connections. A very high proportion of cells were driven by stimuli presented to either eye indicating that they were activated not only through an intrahemispheric pathway from the ipsilateral eye, but also through an interhemispheric pathway from the contralateral eye. With few exceptions, both receptive fields (RFs) of each binocular neuron abutted or were in the vicinity of the vertical meridian. All neurons responded well to moving stimuli and most of them showed directional selectivity. A few cells were activated by stimuli moving in depth. Following an additional section of the posterior half of the corpus callosum, cells in AES responded only to stimulation of the ipsilateral eye, demonstrating thus that the input from the contralateral eye was conveyed by this part of the corpus callosum. By contrast following a section of the anterior half of the corpus callosum, all visually responsive AES neurons were binocularly activated. These results suggest that the interhemispheric visual input to this ectosylvian region is conveyed via a polysynaptic loop involving visual cortical areas that are connected through the posterior portion of the corpus callosum.

Animals↗

Distribution in the visual field of the costs of voluntarily allocated attention and of the inhibitory after-effects of covert orienting.

By using a simple reaction time (RT) paradigm we have investigated the spatial distribution of the benefits and costs of voluntarily directed attention and of the inhibitory after-effects of covert orienting. In the first experiment subjects deliberately allocated attention to each one of five stimulus positions disposed along the horizontal meridian, while at the same time fixing their eyes on the central position. The separation in visual angle between the central position and the two nearest positions, one on the left and the other on the right, was 10 degrees; that between the central position and the two most eccentric positions was 30 degrees. By comparing RT to brief flashes of light presented at each position during directed attention with RT to identical flashes at the same position during diffuse attention (i.e. in a condition in which subjects paid equal attention to all five positions), it was possible to determine that benefits, that is RT decreases relative to the diffuse-attention condition, were strictly limited to the attended position. Costs, i.e. RT increases relative to the diffuse-attention condition, showed a more diffuse and complex spatial pattern. When attention was directed to one of the noncentral positions, costs were apparent at the two contralateral positions and at the central position, but not at the ipsilateral position. When attention was directed to the central position, costs occurred at all other positions. This suggests a special role for the vertical meridian in delimiting the area of costs when one covertly orients towards the opposite right or left visual half field. Work of others and our preliminary evidence indicate that the area of costs is similarly limited by the horizontal meridian when one orients toward the opposite upper or lower visual field. In the second experiment we studied the inhibitory after-effect of covert orienting. Orienting to a light stimulus without moving the eyes to it may induce a short-lived facilitation of the speed of response to a second stimulus presented at the same position, but this facilitation is followed by a profound and prolonged RT retardation. By using a two-flashes paradigm we observed this RT retardation not only when the two stimuli appeared at the same position, but also when they occurred at different locations in the same altitudinal or lateral visual hemifield. There were no inhibitory after-effects when the two stimuli appeared on opposite sides of the vertical or horizontal meridian.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Spatial summation across the vertical meridian in hemianopics: a test of blindsight.

Twenty hemianopic patients with retrochiasmatic lesions have been tested for spatial summation of pairs of flashes simultaneously presented either to the same hemifield or to opposite hemifields across the vertical meridian. In such a task normal subjects show summation, i.e. a faster reaction time in response to a pair of stimuli than in response to a single stimulus. Such an effect is present both for pairs of stimuli presented within the same hemifield and for pairs of stimuli in which the two flashes are presented one in the right and the other in the left hemifield. In contrast to normals, hemianopics as a group did not show interfield summation although, like normals, showed summation within one hemifield. A single-case analysis, however, revealed that in one patient there was a reliable overall interfield summation and that in three others there was evidence of summation in at least one testing session. The presence of interfield spatial summation between the normal and the affected hemifield of hemianopics thus provides further evidence of blindsight in a task paradigm in which guessing strategies and stimulus artefacts can be eliminated. The very small proportion of patients showing blindsight can be in part related to the relatively low stimulus intensity and the very brief stimulus exposure duration used.

Adolescent↗

Interhemispheric influences on area 19 of the cat.

Anatomical studies have shown an extensive network of homotopic and heterotopic interhemispheric connections in area 19 of the cat visual cortex (Segraves and Rosenquist 1982a; 1982b). We have investigated their functional organization by recording visual responses in area 19 of cats following a midsagittal section of the optic chiasm. This operation interrupts all crossed optic fibers coming both from the nasal and the temporal retinae; as a result, each hemisphere receives optic fibers only from the lateral hemiretina of the ipsilateral eye which conveys information from the contralateral visual field. Visual information transmitted to the same hemisphere from the contralateral retina and the ipsilateral visual field must be attributed to an indirect, interhemispheric pathway. We found that a rather high proportion of neurons (31.8%) in area 19 of seven split-chiasm cats responded to visual stimuli presented to the contralateral eye. All neurons receiving this interhemispheric activation were also driven by the ipsilateral eye via an intrahemispheric pathway. The property of binocularity was significantly related to the visuotopic map in that both receptive fields of each binocular neuron adjoined or were in the immediate vicinity of the vertical meridian. Due to the small size of receptive fields in area 19, the contribution of the interhemispheric pathway to the representation of the visual field is rather limited and it is certainly less extensive than that predicted by anatomical studies. The representation of the ipsilateral visual field in area 19 of intact cats, as assessed electrophysiologically, was comparable to that found in split-chiasm cats. Recordings in areas 17-18 of split-chiasm cats showed that the visual field represented through the corpus callosum in these visual areas is certainly not less and probably more, extensive than that found in area 19. The results support the conclusion that the relation to the vertical meridian and the receptive field size can explain the organization of the interhemispheric connections in the visual areas studied so far.

Animals↗

Hemispheric asymmetry in face perception tasks of different cognitive requirement.

Three laterality experiments using tasks of different cognitive requirement were performed in order to determine the stage at which hemispheric differences in face perception arise. All experiments employed the same set of faces and a vocal reaction time paradigm. In experiment 1, subjects were required to discriminate male from female faces and no hemispheric asymmetries were found. In experiment 2, subjects were required to decide whether or not faces were of famous or unknown people and a right hemisphere advantage was found. Finally, in experiment 3 subjects were required to verbally identify the famous faces and no hemispheric differences were found. The results suggest that a right hemisphere superiority exists for the comparison of stimulus faces with an internal representation. Contrary to expectation, face naming does not result in a selective left hemisphere involvement.

Adult↗

Interhemispheric transmission of information in manual and verbal reaction-time tasks.

In principle, interhemispheric transmission time can be assessed in normal man by measuring simple reaction time (RT) to lateralized light stimuli. Two paradigms have usually been employed: (1) a manual RT paradigm, whereby interhemispheric transfer time is equated with the difference between ipsilateral and contralateral responses, and (2) a vocal RT paradigm whereby interhemispheric transmission time is equated with a right field/left hemisphere advantage. Experiment I demonstrated the expected systematic advantage of the ipsilateral over the contralateral manual responses, but failed to show a right field advantage for four types of verbal responses, including two monosyllabic and two bisyllabic words. The RT of a blowing response was also equal for the two visual fields. In Experiment II the same words that had failed to yield a right field advantage in Experiment I were used for discriminating between digits presented in the right and left visual fields. Digits were discriminated by naming or by association with a given word. In both tasks RT was significantly faster for right field presentations, and the advantage over the left field was about 5 ms. In Experiment III verbal and manual RTs were measured in a task involving the discrimination between single and double light stimuli presented in the right and left visual fields. There was a nonsignificant advantage for the right field, which was equal for manual and verbal responses. It is concluded that the right field superiority observed with verbal stimuli is due to the processing of the input, and is independent of the verbal or non-verbal nature of the output.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Iconic storage in the two hemispheres.

Three experiments have tested for the existence of laterality effects in iconic storage by employing a Sperling partial-report paradigm and lateralized presentations of alphabetical or pattern material. Even though an overall laterality effect was found in favor of the right visual field for the alphabetical material and in favor of the left visual field for the pattern material, the amount and time decay of partial-report advantage was similar in the two visual fields. These results indicate that hemispheric asymmetries occur beyond the iconic stage of visual information processing.

Discrimination Learning↗

[Some human mycoses].

The increase in cases of mycosis, especially those due to "opportunistic fungi", is examined. Reference is made to some rare cases of infection that appear to show that some fungi not usually regarded as pathogenic, but merely as parasites of animals and plants, now tend to result in human infection. Various clinical and epidemiological features of "deep mycosis" caused by fungi with dimorphism are also discussed.

Aspergillosis↗

Influence of spatial stimulus-response compatibility on reaction time of ipsilateral and contralateral hand to lateralized light stimuli.

In a simple reaction time task, key-pressing responses to unpatterned light stimuli presented in the right and left visual fields were faster for the hand ipsilateral to the visual stimulus than for the hand contralateral to the stimulus. The superiority of the ipsilateral reactions was seen also when responses were made with the hands crossed, so that such a superiority cannot be attributed to spatial compatibility between the side of the stimulus and the position of the response device. Similar results were obtained in a reaction time task of the Donders's c-type. It is argued that these laterality effects in visuomotor reaction time tasks are best explained by the anatomical relationships between the visual fields, the cerebral hemispheres, and the hands. The possible interaction between these effects and the effects of spatial compatibility between side of stimulus and side of response device are discussed in relation to reaction time tasks of the Donder's b-type.

Adult↗

Efficacy and safety of bimatoprost in patients with uncontrolled glaucoma as alternative to filtration surgery.

PURPOSE: To evaluate the efficacy and safety of bimatoprost 0.03% as an alternative to filtration surgery in patients with uncontrolled glaucoma. DESIGN: Interventional study. METHODS: A total of 83 consecutive patients (83 eyes) awaiting glaucoma surgery were enrolled in eight ophthalmic centers. Reasons for listing were inadequate intraocular pressure (IOP) control despite medical therapy and documented progression of visual field loss. All patients discontinued the previous treatment and were switched to bimatoprost 0.03% QD (one drop at 9 pm). The primary efficacy outcome was a 20% IOP reduction from baseline at each timepoint. IOP was measured at day 7, day 30, day 60, and day 90 of treatment; less than 20% IOP reduction was considered as a failure. RESULTS: An IOP reduction of at least 20% was achieved in 74 patients (89.1%) after 7 days and in 64 patients (86.5%) after 30 days. Sixty-two patients (74.6%) maintained IOP readings 20% lower than baseline after 60 and 90 days. In these patients, visual field indices improved in 8 eyes (13%), and remained unchanged in 54 eyes (87%). Ocular side effects were conjunctival injection (15.6%), burning sensation (9.6%), foreign body sensation (4.8%), and eyelash growth (2.4%). CONCLUSIONS: This preliminary study shows that bimatoprost 0.03% could represent a useful therapeutic tool that might defer filtration surgery.

Aged↗