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W Schultz

Publications and source records attributed to W Schultz.

At least 73 records · Page 4Linked to original sources

Responses to reward in monkey dorsal and ventral striatum.

The sources of input and the behavioral effects of lesions and drug administration suggest that the striatum participates in motivational processes. We investigated the activity of single striatal neurons of monkeys in response to reward delivered for performing in a go-nogo task. A drop of liquid was given each time the animal correctly executed or withheld an arm movement in reaction to a visual stimulus. Of 1593 neurons, 115 showed increased activity in response to delivery of liquid reward in both go and nogo trials. Responding neurons were predominantly located in dorsal and ventromedial parts of anterior putamen, in dorsal and ventral caudate, and in nucleus accumbens. They were twice as frequent in ventral as compared to dorsal striatal areas. Responses occurred at a median latency of 337 ms and lasted for 525 ms, with insignificant differences between dorsal and ventral striatum. Reward responses differed from activity recorded in the face area of posterior putamen which varied synchronously with individual mouth movements. Responses were directly related to delivery of primary liquid reward and not to auditory stimuli associated with it. Most of them also occurred when reward was delivered outside of the task. These results demonstrate that neurons of dorsal and particularly ventral striatum are involved in processing information concerning the attribution of primary reward.

Animals↗

[Stress reactions--stress fracture of the upper femoral neck in endurance sports].

Stress reactions of the musculoskeletal system may be interpreted as possible precursors of stress fractures. Biological material, in contrast to artificial products, can react in numerous and complex ways. This can not only lead to a continual weakening of the tissue, but also to adaptation phenomena in response to overuse. The causes of such stress reactions are still unclear in many respects. For example, it is unknown to what extent a predisposition to these stress symptoms is created by mechanical stress alone or whether other factors such as physical condition, nutrition or even hormone balance come into play. Early diagnosis considerably reduces the healing process and, the later the diagnosis of the stress reaction, the more drawn out is the healing process and the extent of the athlete's absence from training. In this connection may be discussed whether the stress reaction can be the represent as the precursor of the stress fracture. In light of the need for taking special care in obtaining anamnestic data and determining the predisposition of an athlete, it appears to be justified to perform whole body bone scanning in the initial stages and particularly after an innocuous radiological finding. To what extent more current methods (e. g. MRI) can be applied without exposing the athlete to undue radiation cannot be conclusively judged at present. The treatment of a stress reaction should, at least at the beginning, be the same as for a diagnosed stress fracture.

Adult↗

Histopathological findings in harbour seals (Phoca vitulina) found dead on the German North sea coast.

Various organs--lung, trachea, liver, kidney, heart, adrenal gland, skin, spleen, thymus, lymph node, gut, thyroid, spinal cord and brain--were removed from 43 seals at dissections performed on the German North sea coast. The specimens were fixed in formalin and routinely processed for light microscopy. The major pathological findings were Lung: acute congestion with interstitial and intra-alveolar oedema; intra-alveolar haemorrhage; suppurative bronchitis and bronchopneumonia; larvae and adult forms of Parafilaroides gymnurus. Liver: acute congestion; granulomatous lesions and infiltrates of eosinophils; intravascular nematodes. Spleen: varying degrees of atrophy of the white pulp; haemosiderosis; acute congestion of the red pulp. Lymph nodes: varying degrees of atrophy of the lymphatic tissue; long-standing sinus histiocytosis with partial fibrotic obliteration of the lumina; parasitic infiltration, sometimes with the Splendore-Hoeppli phenomenon; germinal centre hyperplasia. Thymus: pronounced atrophy of the lymphatic tissue, particularly in the cortical areas. Thyroid: marked reduction in colloid content. The other organs studied were normal or showed only minor histopathological changes. The morphological findings do not allow definite conclusions to be made about the aetiology and pathogenesis of the illness and death of the seals. However, evidence has been published that the seals' illness is probably due to canine distemper virus. The atrophy of the lymphoreticular tissues is consistent with infection by this virus.

Animals↗

Dopamine neurons of the monkey midbrain: contingencies of responses to active touch during self-initiated arm movements.

1. Previous studies have shown that midbrain dopamine (DA) neurons in monkeys respond to external stimuli that are used to initiate behavioral reactions. In the present study, we investigated to what extent changes in neuronal activity would occur when behavioral acts are generated internally or whether they would depend solely on external stimuli. 2. Monkeys performed self-initiated arm movements from a resting key into a covered, food-containing box at a self-chosen moment and without external preparatory or triggering signals. In a second task, the arm movement was triggered by rapid opening of the door of the food box. This stimulus was either audible and visible or only audible to the animal. Impulses of DA neurons were recorded with movable microelectrodes from the pars compacta of substantia nigra (area A9) and areas A8 and A10 and were discriminated from those of other neurons by their long duration (1.5-5.0 ms) and low spontaneous frequency (0.5-8.5 imp/s). 3. The activity of 12% of 104 DA neurons increased slowly and moderately up to 1,500 ms before the onset of individual self-initiated arm movements. Median increases amounted to 91% over background discharge rate. A further 16% of DA neurons were activated together with the onset of muscle activity and during the movement. 4. During self-initiated movements, a nonhabituating, phasic burst of impulses occurred when the monkey's hand touched a morsel of food inside the box. This response was seen in 84% of 154 neurons on the contralateral side, with median onset latency of 65 ms and duration of 160 ms. A comparable percentage of neurons responded to ipsilateral touch with similar latency and duration. 5. The touch response during self-initiated movements was absent, both on the contra- and ipsilateral sides, when the animal's hand touched the bare wire normally holding the food, when touching nonfood objects, or during tactile exploration of the empty interior of the food box. Thus responses appeared to be related to the appetitive properties of the object being touched rather than the object itself. 6. In the task employing stimulus-triggered movements, 77% of 86 DA neurons discharged a burst of impulses in response to door opening but entirely failed to respond to the touch of food in the box. The response to door opening in this task was similar to the touch response during self-initiated movements in the same neurons in terms of latency, duration, and magnitude.(ABSTRACT TRUNCATED AT 400 WORDS)

Action Potentials↗

Dopamine neurons of the monkey midbrain: contingencies of responses to stimuli eliciting immediate behavioral reactions.

1. This study investigates the behavioral conditions in which dopamine (DA) neurons of substantia nigra and adjoining areas A8 and A10 respond with impulses to visual and auditory trigger stimuli eliciting immediate arm- and eye-movement reactions. 2. In a formal task, the rapid opening of the door of a small, food-containing box located at eye level ahead of the animal served as visible and audible trigger stimulus. Most DA neurons on the contralateral side responded to this stimulus with a short burst of impulses with median onset latency of 50 ms and duration of 90 ms (75% of 164 neurons). Similar responses were seen in a comparable fraction of DA neurons during ipsilateral task performance, suggesting that responses were not specific for the limb being used. 3. When the sensory components of the door opening stimulus were separated, DA neurons typically responded in a similar manner to the moving visual stimulus of the opening door, the low-intensity sliding noise of the opening door, and the 1-kHz sound of 90-92 dB intensity emitted from a distant source at the onset of door opening. Responses to each component alone were lower in magnitude than to all three together. 4. In a variation of the task, a neighboring, identical food box opened in random alternation with the other box but without permitting animals to reach out (asymmetric, direct-reaction go/no-go task). With each sensory component, DA neurons typically responded both to opening of go and no-go boxes. Responses were enhanced when stimuli elicited limb movements in go trials. 5. Monkeys reacted to door opening with target-directed saccadic eye movements in the majority of both go and no-go trials. Neuronal responses were equally present during the occasional absence of eye movements. Thus responses were not specific for the initiation of individual arm or eye movements. 6. Neuronal responses were absent when the same stimuli occurred outside of the behavioral task with target-direct arm and eye movements lacking. This shows that responses were not of purely sensory nature but were related to the capacity of the stimulus for eliciting behavioral reactions. 7. In a variation of the go/no-go task, an instruction light illuminated 2-3 s before door opening prepared the animal to perform the reaching movement on door opening or to refrain from moving (asymmetric, instruction-dependent go/no-go task).(ABSTRACT TRUNCATED AT 400 WORDS)

Acoustic Stimulation↗

Saccadic reaction times, eye-arm coordination and spontaneous eye movements in normal and MPTP-treated monkeys.

The oculomotor performance of monkeys was investigated before and after destruction of nigrostriatal dopamine neurons by MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine). Stimulus-triggered saccades and their relationships to arm movements were measured in a reaction time task. Spontaneous eye movements were recorded while monkeys sat in a primate chair and looked around the laboratory without performing any task. In the reaction time task, saccades and arm movements were commonly triggered by the rapid, visible and audible opening of a small food-containing box which was located at a constant position in front of the animal at eye level. Median saccadic latencies ranged from 68 to 118 ms in intact animals. Saccades were followed by onset of electromyographic (EMG) activity in the extensor digitorum communis and the biceps brachii, the prime mover muscles for the following arm reaching movement. Latencies of stimulus-triggered saccades showed an absence of linear relationship to EMG or arm movement reaction time in intact animals (correlation coefficients of 0.15-0.56). This suggests that eye and arm movements were initiated independently from each other in this experimental situation. Treatment with MPTP resulted in 98-99.5% loss of striatal dopamine in both monkeys. This induced a 29-93% increase in saccadic latency in the reaction time task. The sequential occurrence of saccade, EMG activity and arm movement in each trial was preserved, although intervals between onset of saccades and onsets of EMGs and arm movements were prolonged by 53-173% and 33-679% respectively. Onsets of individual saccades remained uncorrelated with onsets of EMG activity or arm movement. Spontaneous eye movements were strongly reduced in frequency and amplitude after MPTP. Administration of the dopamine precursor L-Dopa increased spontaneous eye movements for less than two hours. The severe deficits in stimulus-triggered and spontaneous saccadic eye movements are oculomotor components of hypokinesia arising after MPTP-induced lesions of the nigrostriatal dopamine system in primates. The data are further evidence for a role of midbrain dopamine neurons in behavioral responsiveness and spontaneous activity.

Animals↗

Protection against 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-induced parkinsonism by the catecholamine uptake inhibitor nomifensine: behavioral analysis in monkeys with partial striatal dopamine depletions.

The neurotoxic effects of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine on dopamine neurons in monkeys were found to be reduced when the catecholamine uptake inhibitor nomifensine was administered during several weeks after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine. The obtained protection was partial, leading to 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-induced changes in dopamine levels to 8, 16, 52 and 59% of control values in the caudate nucleus and to 10, 16, 101 and 99% in the putamen of four animals, respectively. At the same doses, 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine alone is known to deplete striatal dopamine levels to 0.5-7% of control values. Extra-nigrostriatal monoamine neurons were generally well protected by nomifensine. Neurological examinations revealed modest hypokinesia for a maximum of 10 days after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in the two more severely affected animals. Reaction times of arm and eye movements were measured in a formal task in two of the monkeys having a moderate and a more important depletion of striatal dopamine, respectively. Only moderate impairments were seen during the initial 2 weeks after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in both animals. All parameters recovered to control levels thereafter. At 3.5 and 5.5 months after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine, task performance was significantly better than control. The speed of arm movement remained largely unaffected during all periods of experimentation. Spontaneous eye movements were reduced in frequency and amplitude during the initial 1-2 weeks after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine, and recovered completely thereafter. These data suggest a substantial reduction of neurotoxicity of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine by inhibition of catecholamine uptake. Particularly striking was the absence of major and permanent impairments in behavioral tests in which monkeys treated with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine alone were severely impaired. These results may warrant the development of new catecholamine uptake inhibitors for protecting nigrostriatal dopamine neurons against potential environmental toxins.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Somatosensory input to dopamine neurones of the monkey midbrain: responses to pain pinch under anaesthesia and to active touch in behavioural context.

The somatosensory responses of single dopamine (DA) neurones were recorded in the pars compacta of substantia nigra and in neighbouring DA cell groups of four Macaca fascicularis monkeys. These neurones were electrophysiologically discriminated against other cells by their polyphasic, relatively long impulses (2.0-5.0 ms) occurring at low rates (mostly 1.0-5.0/s), by antidromic activation from caudate or putamen, and by reduction of impulse rate following subcutaneous injection of apomorphine (0.05-0.15 mg/kg). Of 140 DA neurones recorded in two monkeys under barbiturate anaesthesia, 51% showed reductions and 17% increases in impulse rate during intense noxious pinch stimulation. Neurones responded non-somatotopically to stimulation of the hand, foot, face, dorsum and tail on both sides of the body. Innocuous, even intense, surface or deep somatosensory stimuli were ineffective. Systemic injection of the DA receptor antagonist haloperidol (0.33-0.5 mg/kg) strongly reduced the pinch responses. Of 154 DA neurones recorded in two monkeys during self-initiated arm movements, 84% showed phasic activations with latencies of 65 ms when the monkey's hand touched a food morsel inside the target box. Responses were absent when touching other objects. Touch responses to food did not occur when the reaching movement into the same food box was performed in reaction to an external trigger stimulus. In conclusion, DA neurones were activated in specific behavioural contexts by somatosensory stimuli of low intensities while responding unconditionally to noxious input.

Action Potentials↗

Deficits in reaction times and movement times as correlates of hypokinesia in monkeys with MPTP-induced striatal dopamine depletion.

1. We quantitatively assessed deficits in the initiation and execution of arm movements occurring after destruction of nigrostriatal dopamine neurons by systemic administration of MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) (Sigma). Three monkeys performed a reaction time task in which they reached toward a single and constant target for food reward. 2. After administration of MPTP, all three monkeys showed hypokinesia necessitating dopamine precursor or receptor agonist treatment. The partial recovery of one animal from initial akinesia after 19 days permitted discontinuation of dopaminergic drug therapy, although marked hypokinesia remained present. The two other animals displayed additional, intermittent phases of rigidity and activation tremor and needed continuous dopaminergic drug therapy for most of the postlesion period. 3. Administration of MPTP significantly prolonged EMG reaction time in prime mover muscles and arm movement reaction time by 47-225% and 18-129%, respectively, on the six sides of the three animals, compared with control measurements before the lesion. EMG and arm movement reaction time increased over consecutive trials in most sessions comprising 110-130 movements, the first 20 movements showing almost normal values. The delay time between onsets of EMG and arm movement showed unsystematic changes. These deficits in movement initiation were observed both with and without dopamine precursor therapy. They lasted during the whole testing period of several months. 4. Linear correlations between arm movement onset and EMG onset in the two prime mover muscles, the extensor digitorum communis and the biceps, showed coefficients of mostly 0.7-0.9, both before and after MPTP. These data suggest that the temporal relationship between onsets of arm movement and EMG were not substantially affected by MPTP. 5. Arm movement time was divided into two phases. The duration of movement between the resting key and the target, a small food-containing box located ahead of the animal, was denoted as reaching movement time. The following hand manipulation inside the food box was measured as box movement time. After MPTP, both measures were significantly prolonged by 10-103% and 12-251%, respectively, on the six sides of the three monkeys. These deficits in movement execution were observed both with and without dopaminergic drug therapy and during the whole testing period. 6. Task performance after MPTP treatment was studied in one monkey in the absence of dopaminergic drug therapy. EMG and arm movement reaction times recovered partially over several weeks, while the prolongations in reaching and box movement times remained unchanged.(ABSTRACT TRUNCATED AT 400 WORDS)

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Neuronal activity in the monkey striatum during the initiation of movements.

The sources of afferent input to the striatum (caudate nucleus and putamen) suggest that this structure may be engaged in neuronal processes related to the initiation of movement. We found that 26% of 508 neurons in both parts of the striatum were activated during the presentation of visual signals which prepared the animals for the execution or withholding of individual arm reaching movements. In a second task, 20% of 382 striatal neurons were activated up to 3 s before self-initiated, non automatic and purposive arm movements which were performed in the complete absence of phasic external stimuli. The data demonstrate an involvement of the striatum in externally and internally generated processes which are related to presetting mechanisms during the initiation of behavioral acts.

Action Potentials↗

Acute electrophysiological and neurochemical effects of administration of MPTP in mice.

The changes occurring during the first few hours after subcutaneous administration of the catecholaminergic neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) were investigated. Injections of MPTP (30-60 mg/kg s.c.) reduced the impulse rate by 12-45% in all dopaminergic neurones tested in the pars compacta of the substantia nigra. Depressions were maximal at 11 min and remained present for more than 2 hr after injection. This effect was completely abolished by prior administration of the catecholamine uptake inhibitor, nomifensine (13-69 mg/kg s.c.), which prevents the toxic metabolite of MPTP 1-methyl-4-phenylpyridine (MPP+) from entering dopaminergic neurones. These results suggest an intraneuronal mechanism underlying the observed depressions in impulse rate. Levels of dopamine (DA) were decreased at 3 hr after administration of MPTP (50 mg/kg s.c.) by 60% and 54% in the striatum and substantia nigra, respectively. Pretreatment with nomifensine (25 mg/kg, intraperitoneally) prevented the decrease in DA only in the striatum. This suggests an acute DA-releasing effect of MPTP in the striatum, mediated by intracellular accumulation of MPP+, while not explaining the depression of activity of DA neurones occurring with a different time course.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

The catecholamine uptake inhibitor nomifensine depresses impulse activity of dopamine neurons in mouse substantia nigra.

Systemic administration of the catecholamine uptake inhibitor nomifensine (NOM) in doses of 20-36 mg/kg strongly depressed the discharge rate of dopamine (DA) neurons in the substantia nigra of mice for more than 2-3 h. This effect was fully reverted by the systemically administered DA receptor antagonist haloperidol. Impulse activity of most neurons showed a reduced rhythmicity under the influence of NOM, as assessed by autocorrelograms. It is suggested that the depression of discharge activity of DA neurons by NOM represents an indirect agonist action on the DA receptor, probably via reduced elimination of DA from the extraneuronal space.

Action Potentials↗

Neuronal activity preceding self-initiated or externally timed arm movements in area 6 of monkey cortex.

Several lines of evidence suggest that the supplementary motor area (SMA) and the premotor cortex (PM) may participate in neuronal mechanisms for the initiation of movements. We recorded the impulse activity of single neurons in monkeys that were trained in two behavioral tasks employing, respectively, self-initiated and externally timed movements. Neurons in both areas were activated up to 2.6 s in advance of self-initiated, reward-related arm reaching movements. In the externally timed task, changes occurred during light instructions that preceded movements by 2 s. Neurons also responded to the trigger stimulus for movement. In view of similar premovement activity in the basal ganglia, these cortical regions appear to be parts of a distributed neuronal system for movement initiation.

Animals↗

Responses of nigrostriatal dopamine neurons to high-intensity somatosensory stimulation in the anesthetized monkey.

Nigrostriatal dopamine (DA) neurons of the mammalian midbrain play an important role in behavioral reactions. Their destruction in Parkinsonian patients and experimentally lesioned animals leads to a reduction and slowing of movements as well as other motor, cognitive, and motivational deficits. We tested the responses of DA neurons to somatosensory stimulation to gain insight into the nature of peripheral information reaching these neurons. Experiments were performed as repeated sessions in two anesthetized monkeys having chronically implanted recording chambers, thereby reducing the number of primates required for experimentation. Midbrain DA neurons were characterized by their histological location, by the form, duration, and frequency of extracellularly recorded, spontaneously occurring impulses, by antidromic activation from caudate and putamen, and by the reduction of impulse rate following systemic administration of low doses of the DA autoreceptor agonist apomorphine. Half of the midbrain DA neurons (65 of 145 neurons, 45%) were antidromically activated from chronically implanted stimulating electrodes in caudate (35 neurons), putamen (47 neurons), or both structures (17 of them). Conduction velocities ranged from 0.7 to 2.5 m/s, with medians of 1.2 and 1.5 m/s for neurons projecting to caudate and putamen, respectively. Half of the midbrain DA neurons were depressed (72 of 140 neurons, 51%) and less than a quarter activated (24 of 140 neurons, 17%) by intense noxious pinch stimulation to the body surface. Innocuous, even intense, surface or deep somatosensory stimuli were ineffective. Pinch responses continued during the whole stimulating period of several seconds in most DA neurons. There was no response habituation during repeated stimulation. Convergence between spinal and trigeminal input and from both body sides was seen for virtually all noxious pinch responses. Thus DA neurons typically responded in the same direction to pinch stimulation of hand, foot, face, tail, and dorsum of both sides. Systemic administration of the DA receptor antagonist haloperidol (0.33 or 0.50 mg/kg) strongly reduced pinch responses in all seven DA neurons tested. This provides evidence for an involvement of DAergic neurotransmission in the representation of exteroceptive input in the brain. The results show that midbrain DA neurons projecting to the striatum respond to noxious somatosensory input in the anesthetized monkey. The bilateral nontopographic nature of the responses does not support a role in precise stimulus recognition, rather it suggests a mechanism involved in basic neuronal processes underlying behavioral responsiveness.

Anesthesia↗

[Right ventricular stroke volume--comparison of various methods of angiography and equilibrium radionuclide ventriculography].

In 21 patients with various heart diseases RVEF was measured angiographically and by radionuclide ventriculography. Using biplane angiocardiography evaluation was performed by 7 different methods (Simpson's rule, Dogde, Arcilla, Ferlinz, Duebel). Using equilibrium RNV, evaluation was performed by 9 modifications of analysis. Problems were evident to separate the right atrium from the ventricle and to define the site of the pulmonary valve. The results show that when using the various methods of angiography considerable variations of the absolute volumes occur, but least so with RVEF. When using RNV with one single enddiastolic ROI, the RVEF was much too low. By means of the enddiastolic/endsystolic Double-ROI-method a good agreement with angiography was found, with correlation coefficients up to r = 0.85. There was only a minor effect of background correction.

Adult↗