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Biomedical subjects

C D Marsden

Publications and source records attributed to C D Marsden.

At least 253 records · Page 14Linked to original sources

Neurotensin, substance P, delta and mu opioid receptors are decreased in basal ganglia of Parkinson's disease patients.

The specific binding of [3H]neurotensin, [3H]substance P, [3H]D-Ala2-D-Leu5-enkephalin (delta receptors) and [3H]-Tyr-D-Ala-Gly-(NMe)Phe-Gly-ol (mu receptors) were studied in membrane preparations of caudate nucleus, putamen, globus pallidus and substantia nigra from patients with Parkinson's disease and from age-matched controls. The density of neurotensin receptors was decreased in globus pallidus (lateral and medial segments) in parkinsonian brain. Substance P receptors were reduced in the putamen (anterior and posterior) and in lateral globus pallidus in Parkinson's disease. There was a reduction in the density of opioid receptors in posterior putamen and in mu receptors in caudate nucleus and putamen (anterior and posterior). No differences in neuropeptide receptor binding were observed in substantia nigra from parkinsonian brains compared with control subjects. The reductions in neuropeptide receptor density were less marked than the decrease in caudate and putamen content of dopamine and its metabolites. This suggests that neuropeptide receptors are only partially localized to striatal dopamine terminals.

Adult↗

Rapid wrist movements in patients with essential tremor. The critical role of the second agonist burst.

Ballistic wrist flexion movements towards 15, 30 and 60 degrees visual targets were studied in a group of 17 patients with hereditary essential tremor. Compared with age-matched normal subjects (n = 16), there were three main kinematic differences: patients overshot the target a little more; the kinematic profile of their movements was more 'asymmetric' due to higher peak decelerations; and their movements initiated tremor. Ballistic movements performed by patients with essential tremor were associated with a triphasic pattern of agonist-antagonist-agonist muscle activity similar to that of normal subjects. The duration and size of each EMG burst was normal. The onset latency of the antagonist EMG burst was also normal, but the onset of the second agonist EMG burst was delayed. The delay in the onset of the second agonist EMG activity resulted in unopposed action of the antagonist muscle in the second half of each movement. As a result, deceleration occurred too rapidly as the hand returned past the target leading to a series of damped oscillations around the point of aim. The onset latency of the second agonist EMG burst correlated significantly with the tremor period; the longer the period the later the burst. We speculate that the delay in the second agonist burst reflects an abnormality in the timing of anticipatory muscle activity in essential tremor and that this may involve cerebellar mechanisms.

Adult↗

A study of hereditary essential tremor.

Twenty index patients with hereditary essential tremor and their kindreds were studied to define the phenotype of this condition. Ninety-three first degree and 38 more distant relatives were examined; 53 definite and 18 possible secondary cases were identified. The age of tremor onset was bimodally distributed with a median at approximately 15 years. Segregation analysis indicated autosomal dominant inheritance and penetrance was virtually complete by the age of 65 years. There were no examples of the disease skipping a generation. Men and women were affected in equal proportions. About 50% of cases were alcohol responsive. In the majority of families alcohol responsiveness was either consistently present or did not occur, but in 20% of kindreds definite heterogeneity of responsiveness was encountered within each family. The typical phenotype was a mild symmetrical postural tremor of the upper limbs. Tremor of the legs, head, facial muscles, voice, jaw and tongue occurred but never in isolation and rest, task specific (e.g. primary writing tremor) and primary orthostatic tremors were not found. Head tremor was invariably mild and 75% was of a 'no-no' type. Dystonia (e.g. torticollis and writer's cramp) were not encountered, a finding which strongly suggests that many previous studies of 'essential tremor' were contaminated by cases of idiopathic or hereditary torsion dystonia. No association with Parkinson's disease was found but classical migraine occurred in approximately 26% of cases and co-segregated with tremor. The severity of arm tremor (assessed using a clinical rating scale and by scoring tremor in Archimedes spirals) and disability increased with advancing age and increasing tremor duration, but there was no correlation between age at tremor onset and either tremor severity or disability. Men and women were affected with equal severity. The sex of the affected parent had no influence on the severity of tremor or the degree of disability experienced by an affected child. Disability commenced in the second decade and progressively increased. All the index patients and 59% of the definite secondary cases had tremor induced disabilities. Eighty-five percent of index patients and 38% of secondary cases also reported some degree of social handicap. Twenty-five percent of index patients and 12% of secondary cases had been compelled to change jobs or retire. Biological fitness was normal.

Adolescent↗

The behavioural and motor consequences of focal lesions of the basal ganglia in man.

The behavioural and movement disorders reported in 240 patients described in the literature with lesions affecting the caudate nucleus, putamen and the globus pallidus (lentiform nucleus) have been analysed. Reports were classified into two groups: small or isolated lesions involving the said nuclei alone; and large lesions with additional involvement of the adjacent internal capsule and/or periventricular white matter. Amongst the 240 cases, dystonia was the most frequent movement disorder recorded (36%); chorea (8%) and parkinsonism (6%) or dystonia-parkinsonism (3%) were uncommon. The commonest behavioural disturbance was the syndrome of abulia (apathy with loss of initiative and of spontaneous thought and emotional responses) (13%); disinhibition was rare (4%). Confusion usually was associated with intracerebral haemorrhage and depression was a relatively non-specific finding. Aphasia was extremely rare with lesions confined to these basal ganglia structures. Lesions of the caudate nucleus rarely caused motor disorders but were more likely to cause behavioural problems. Chorea has been described in only 6% of those with caudate lesions, and dystonia in only 9%. The most significant behavioural disturbance described in 28% of those with caudate lesions was the syndrome of abulia, sometimes alternating with disinhibition (11%). Lesions of the lentiform nuclei rarely caused abulia (10%) and did not produce disinhibition, but they commonly caused dystonia (49%), particularly when the putamen was involved (63%). Bilateral lesions of the lentiform nuclei, either of the globus pallidus or of the putamen, caused parkinsonism (19%) or dystonia-parkinsonism (6%) infrequently. The prominence of the behavioural disturbance of abulia with caudate lesions emphasizes the more complex cognitive role of this basal ganglia structure. The frequent occurrence of dystonia and less commonly of parkinsonism with lentiform lesions emphasize the motor roles of putamen and globus pallidus.

Basal Ganglia Diseases↗

The functions of the basal ganglia and the paradox of stereotaxic surgery in Parkinson's disease.

The basal ganglia play a role in controlling movement. The motor circuits within the striato-pallidal complex are thought to facilitate desired movement and inhibit unwanted movement through their influence via thalamus, mainly on precentral motor cortical regions. Lesions in the motor thalamus, or in the globus pallidus, therefore might be expected to impair voluntary movement. But stereotaxic lesions in patients with Parkinson's disease directed at the motor thalamus verified at autopsy, and lesions in the globus pallidus, which improve rigidity and tremor, apparently do not worsen parkinsonian hypokinesia and bradykinesia; nor do they regularly cause dyskinesias. Reasons for this discrepancy are reviewed. It is concluded that the motor circuits of the basal ganglia are part of a distributed motor system which can operate, albeit imperfectly, in the absence of striato-pallido-thalamo-cortical feedback. There may, however, be subtle defects in motor performance after thalamic and pallidal lesions which have escaped attention. Further consideration leads to two hypotheses concerning normal basal ganglia motor function. First, it seems most likely that it is a pause in firing of medial pallidal and substantia nigra reticulata neurons that, by disinhibition of thalamic targets, permits movements generated by cortical motor areas. An increase in firing of medial pallidal neurons, which so far has been the major focus of attention, may be more concerned with inhibition of unwanted movement. Secondly, we suggest that the basal ganglia play a particular role in motor control. A change in firing of medial pallidal neurons appears to occur too late to initiate a new movement. However, the motor circuit within the striato-pallidal system routinely receives a continuous delayed read-out of cortical motor activity and issues an output directed via thalamus mainly to premotor cortical regions. This may permit the routine automatic execution of sequences of movements generated in cortical motor areas. There is evidence that other regions of the striatum respond to significant external or internal cues as dictated by their cortical inputs, the significance being determined by memory, novelty, emotional and other contexts. We suggest that such events capture the attention of the non-motor striatum, which then interrupts the routine operation of the motor circuit, perhaps at the level of the medial pallidum and substantia nigra pars reticulata, to permit new cortical motor action.

Animals↗

Corticobasal degeneration. A clinical study of 36 cases.

The presenting features and their subsequent evolution in 36 patients with pathologically proven or clinically probable corticobasal degeneration are described. The most common initial complaint was of a unilateral 'clumsy, stiff or jerky arm' (n = 20). Typically the arm was akinetic, rigid and apraxic. In about a third of these the arm was held in a striking and characteristic fixed dystonic posture. Jerking of the arm, due to action and stimulus-sensitive myoclonus accompanied these symptoms in about a third of the cases. The next most common presentation (n = 10) was difficulty walking due to clumsiness and loss of fine motor control of one leg due to apraxia or dysequilibrium, or a combination of both. Sensory symptoms in the affected arm heralded the onset of illness in three and accompanied a motor disturbance in two cases. Presentation with dysarthria or a behavioural syndrome were rare. The symptoms progressed slowly, usually involving first the ipsilateral arm and leg, but gradually spread to affect all four limbs. After a mean follow-up of 5.2 years (range 2-8 years) gait difficulties and a supranuclear ophthalmoplegia had emerged in most patients and dysarthria and pyramidal signs were common. Higher mental function was relatively preserved in most and a cortical sensory loss was evident in a quarter of cases.

Adult↗

The myoclonus in corticobasal degeneration. Evidence for two forms of cortical reflex myoclonus.

The clinical and physiological characteristics of myoclonus in 14 patients with corticobasal degeneration are described. The myoclonus was focal, confined to one limb (usually the arm) and was most prominent on voluntary action or in response to sensory stimulation. On clinical inspection, the myoclonus appeared to occur at rest but EMG recordings revealed that apparently spontaneous myoclonus occurred only on a background of more or less continuous muscle activity (responsible for the rigidity and dystonia). The jerks consisted of hypersynchronous short duration bursts of EMG activity coincident in agonists and antagonists. Reflex myoclonus in hand muscles, to stimulation of the median nerve at the wrist, had a latency of approximately 40 ms. In 13 of the 14 patients reflex myoclonus was not associated with enlargement of the cortical sensory evoked potentials (SEPs); the later components of the parietal SEP were poorly formed and dominated by a broad positive wave with a peak latency approximately 45 ms. Prefrontal components of the SEP were relatively preserved, but there were no significant differences between the SEPs evoked from myoclonic and non-myoclonic limbs. Action myoclonus was not preceded by an identifiable cortical wave in the electroencephalogram back-averaged before each jerk. Magnetic, but not electric, brain stimulation evoked repetitive bursts of myoclonus suggesting enhanced cortical excitability. The combination of focal, predominantly distal, hypersynchronous jerks, evidence of enhanced cortical excitability, together with the known cortical pathology in corticobasal degeneration suggests that the myoclonus in these patients may be cortical in origin. Since the latency of reflex myoclonus in corticobasal degeneration is only 1-2 ms longer than the sum of the afferent and efferent times to and from the cortex, we propose the reflex myoclonus is mediated by direct sensory input to motor cortical areas that activate corticospinal tract output. Such myoclonus differs from the typical form of cortical reflex myoclonus in which reflex jerks have a longer latency (50 ms in hand muscles), cortical SEPs are enlarged and action myoclonus is preceded by a cortical discharge. It is proposed that these various forms of cortical myoclonus can be explained by the presence of different cortical relays of sensory information to cortical motor areas. The myoclonus of corticobasal degeneration may represent enhancement of a direct sensory input to the motor cortex. In contrast, the more widely recognized variety of cortical reflex myoclonus may involve abnormal relays through sensory cortex to motor cortex, either directly or via cerebellar-thalamo-cortical projections.

Adult↗

Vestibular, cervical and visual remembered saccades in Parkinson's disease.

In order to assess both vestibulo-cervical perception of head rotation and saccadic function in Parkinson's disease, 14 patients with idiopathic Parkinson's disease were subjected to discrete sigmoid-shaped rotational displacements whilst fixating a target aligned with primary gaze in an otherwise dark room. The rotational stimuli were applied to (i) the whole body (vestibular stimulus); (ii) the trunk whilst the head remained stationary in space (cervical stimulus); (iii) to the head alone whilst the trunk remained stationary (combined vestibular and cervical stimulus). The fixation target was then extinguished and the subjects had to estimate the angle travelled by the head or trunk with an ocular-pointing task using information from the preceding rotational stimulus (vestibular and cervical 'remembered' saccades). It was found that, although these saccades in Parkinson's disease patients were multiple-step and hypometric, the final position of the eyes matched the rotational stimulus as accurately as in normal subjects. A complementary experiment in six patients showed that visual remembered saccads were hypometric, but significantly less so than vestibular remembered saccades. It is concluded that (i) vestibular and cervical perception of head/neck rotation is normal in Parkinson's disease; (ii) abnormalities of 'remembered' saccades, previously reported in Parkinson's disease, are not confined to the visual modality but involve other sensory modalities as well; (iii) across different modalities of memory-guided saccades, visual input improves saccadic performance. This result demonstrates that the known increased visual dependence found in Parkinson's disease extends to memory-driven tasks.

Adult↗

Comparison between a fast and a slow release preparation of levodopa and a combination of the two: a clinical and pharmacokinetic study.

After overnight drug withdrawal and in the fasting state, 11 patients with Parkinson's disease (PD) and a fluctuating response to chronic levodopa treatment were given, in random sequence on consecutive days, equivalent levodopa doses (with peripheral decarboxylase inhibitor) (a) as levodopa methyl ester (ME), (b) as Sinemet CR, or (c) as half the dose of ME together with a halved tablet of Sinemet CR. All patients turned ON rapidly after treatments a and c, but only half did so after treatment b. On period duration was longest after treatment c, intermediate after treatment a, and shortest after treatment b. Pharmacokinetic analysis in a subset of 6 patients revealed no significant difference between treatments a and c, although there was a trend for t1/2 to be longer after treatment c. We conclude that giving ME with a halved tablet of Sinemet CR provided a useful clinical balance between rapid onset and extended duration of action of at least the first levodopa intake of the day. In view of differing release profiles between whole and halved tablets of Sinemet CR, similar single-dose pharmacokinetic studies, followed by sequential-dose clinical studies, are indicated when Sinemet CR 125 tablets soon become available.

Aged↗

Plasma HVA levels following debrisoquine administration do not reflect cerebral dopamine loss in early Parkinson's disease.

Plasma levels of homovanillic acid (pHVA) following debrisoquine (DBQ) administration may be indicative of central dopaminergic activity. The effect of DBQ (10-20 mg) administration on pHVA in young healthy volunteers was studied to establish a protocol for use in de novo patients with Parkinson's disease. Subsequently, pHVA in de novo patients with Parkinson's disease were measured and compared to young healthy volunteers. Following DBQ (10 mg) administration to healthy volunteers, pHVA fell with time to a maximum of 62% of control values at 6 h. The decrease in pHVA was not affected by loading with DBQ (10 mg) 10 h previously (pHVA: 67.6 +/- 5.8% of preDBQ levels) or increasing the dose to 20 mg (56.1 +/- 11.8% of preDBQ levels) compared to a single 10 mg dose of debrisoquine (66.5 +/- 4.5% of preDBQ levels). pHVA was reduced in both de novo patients with Parkinson's disease and in healthy volunteers following DBQ (10 mg) administration. However, there was no difference in pHVA before or after DBQ administration when comparing the two groups. These results suggest that, following DBQ administration, pHVA does not reflect dopamine neuronal loss in de novo patients with Parkinson's disease, so it is unlikely to detect the disease before the clinical symptoms manifest themselves.

Adult↗

Cognitive deficits in progressive supranuclear palsy, Parkinson's disease, and multiple system atrophy in tests sensitive to frontal lobe dysfunction.

Groups of patients with idiopathic Parkinson's disease, multiple system atrophy, and progressive supranuclear palsy or Steele-Richardson-Olszewski syndrome, matched for overall clinical disability, were compared using three computerised cognitive tests previously shown to be sensitive to frontal lobe dysfunction. On a test of planning based on the Tower of London task, all three groups were impaired, but in different ways. The groups with palsy and Parkinson's disease were slower in the measure of initial thinking time, whereas the group with multiple system atrophy was only slower in a measure of thinking time subsequent to the first move, resembling patients with frontal lobe damage. On a test of spatial working memory, each group showed deficits relative to their matched control groups, but the three groups differed in their strategy for dealing with this task. On a test of attentional set shifting, each group was again impaired, mainly at the extradimensional shifting stage, but the group with Steele-Richardson-Olszewski syndrome exhibited the greatest deficit. The results are compared with previous findings in patients with Alzheimer's disease or frontal lobe damage. It is concluded that these basal ganglia disorders share a distinctive pattern of cognitive deficits on tests of frontal lobe dysfunction, but there are differences in the exact nature of the impairments, in comparison not only with frontal lobe damage but also with one another.

Aged↗

The neck-tongue syndrome.

The neck-tongue syndrome, consisting of pain in the neck and altered sensation in the ipsilateral half of the tongue aggravated by neck movement, has been attributed to damage to lingual afferent fibres travelling in the hypoglossal nerve to the C2 spinal roots. The lingual afferents in the hypoglossal nerve are thought to be proprioceptive. Two further cases of the neck-tongue syndrome are described, the spectrum of its clinical manifestations is explored, and the phenomenon of lingual pseudoathetosis is illustrated as a result of the presumed lingual deafferentation.

Adolescent↗

The nature of apraxia in corticobasal degeneration.

Although apraxia is one of the most frequent signs in corticobasal degeneration, the phenomenology of this disorder has not been formally examined. Hence 10 patients with corticobasal degeneration were studied with a standardised evaluation for different types of apraxia. To minimise the confounding effects of the primary motor disorder, apraxia was assessed in the least affected limb. Whereas none of the patients showed buccofacial apraxia, seven showed deficits on tests of ideomotor apraxia and movement imitation, four on tests of sequential arm movements (all of whom had ideomotor apraxia), and three on tests of ideational apraxia (all of whom had ideomotor apraxia). Ideomotor apraxia significantly correlated with deficit in both the mini mental state examination and in a task sensitive to frontal lobe dysfunction (picture arrangement). Two of the three patients with ideomotor apraxia and ideational apraxia showed severe cognitive impairments. The alien limb behaviour was present only in patients with ideomotor apraxia. In conclusion, ideomotor apraxia is the most frequent type of apraxia in corticobasal degeneration, and may be due to dysfunction of the supplementary motor area. There is a subgroup of patients with corticobasal degeneration who have a severe apraxia (ideomotor and ideational apraxia), which correlates with global cognitive impairment, and may result from additional parietal or diffuse cortical damage.

Aged↗

Lessons from a remarkable family with dopa-responsive dystonia.

A family is described in which dopa-responsive dystonia affected six members and segregated in an autosomal dominant fashion. Patients either presented in childhood with dystonia of the legs, going to develop parkinsonism and pseudo-pyramidal deficits, or in adult life with parkinsonian tremor and rigidity, with pseudo-pyramidal signs. Remarkably, in the three cases with childhood onset the symptoms and signs of the condition were abolished 36 to 52 years later by small doses of levodopa. No long term side effects of levodopa have appeared after 15 years of treatment.

Adult↗

Debrisoquine hydroxylase gene polymorphism in familial Parkinson's disease.

Recent molecular genetic studies of the cytochrome P-450 system enzyme CYP2D6, which hydroxylates debrisoquine, have indicated an excess of mutant alleles in patients with Parkinson's disease compared with controls. This indicates that the CYP2D6 locus confers genetic susceptibility to Parkinson's disease. CYP2D6 polymorphism has been investigated in 48 patients with familial Parkinson's disease, from 22 families, and 88 of their unaffected relatives. An excess of CYP2D6 mutant alleles in patients compared with healthy relatives was found only in subjects over the age of 60 years, presumably reflecting the age related prevalence of this disease. There was no difference in distribution of genotypes, however, between sib pairs concordant or discordant for Parkinson's disease. Linkage analysis, exclusively with affected family members, yielded negative lod scores. These data indicate that the CYP2D6 locus is not the major determinant of genetic susceptibility in familial Parkinson's disease.

Age Factors↗

Dystonia after head trauma.

Dystonia is a rare consequence of head trauma. We describe 10 such cases and review 19 similar patients reported in the literature. Twenty-two of the 29 patients suffered head injury during the first or second decade of life. There was a variable delay between the head trauma and the onset of dystonia. In 18 cases with severe head injury, this interval (median, 18 months; range, 1 month to 9 years) was longer than in 11 cases with mild head injury (median, 14 days; range, 3 days to 5 years). In our series, nine of the 10 cases started as a focal dystonia and one as a hemidystonia. The dystonia progressed and spread over several months or years. Two cases remained as focal dystonias, but the others developed segmental, hemi-, multifocal, or generalized dystonia. On brain imaging studies (CT or MRI), the most frequent lesion site was in the contralateral basal ganglia or thalamus, but two cases had normal brain scans. Dysfunction of the lenticulothalamic neuronal circuit seems to be related to the development of dystonia following head trauma.

Adolescent↗