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M Westerveld

Publications and source records attributed to M Westerveld.

30 records · Page 2Linked to original sources

Right hemisphere mediation of verbal learning and memory in acquired right hemisphere speech dominant patients.

Forty-eight patients with temporal lobe epilepsy completed measures of narrative recall and list learning prior to surgery. The intracarotid amytal procedure (IAP) established that 13 patients were right hemisphere dominant for speech and 35 (18 left foci, 17 right foci) were left hemisphere dominant. Hippocampal volumetric neuron densities were measured after surgery. The left hippocampal neuron densities in subfields CA3 and the hilar area were significantly correlated with list learning ability and percent retention for narrative recall only for left hemisphere speech dominant patients with left seizure foci. No significant correlations between measures of neuron volume and memory were found for the left hemisphere speech dominant patients with right seizure foci or the right hemisphere speech dominant patients with left seizure foci. This suggests that the right hemisphere of right speech dominant patients mediates verbal memory as well as speech. This conclusion is supported by patterns of correlations among measures of verbal memory that differed for patients undergoing resection of the dominant hemisphere versus those undergoing resection of the nondominant hemisphere. However, it is premature to conclude that the cerebral organization of cognitive functions of right hemisphere speech dominant patients is equivalent albeit reversed from that of left hemisphere speech dominant patients. Right hemisphere speech dominant patients with left temporal foci differed from left hemisphere speech dominant patients with right temporal foci with respect to the patterns of correlations between measures of verbal memory and intelligence as well as the level of intellectual ability that they demonstrated.

Adult↗

Predicting cognitive impairment in epilepsy: findings from the Bozeman epilepsy consortium.

We examined the contribution of age of seizure onset, seizure duration, seizure laterality, seizure location, gender, handedness, and cerebral speech representation to cognitive attainment in 1,141 patients with medically refractory seizures. The combined influence of the predictor variables was modest. Age of seizure onset was the best single indicator of Full Scale IQ (partial r = .23) and General Memory (partial r = .20). Laterality and location of dysfunction, and cerebral speech dominance were also relevant and independent indicators of aspects of cognition. Except for age of onset of seizures (early onset was associated with poorer cognitive attainment), however, the magnitude of the effects was limited.

Adult↗

Wada memory disparities predict seizure laterality and postoperative seizure control.

We examined the efficacy of a memory difference score (DS: right minus left hemisphere memory) during the Wada test (intracarotid amobarbital procedure, IAP) for predicting seizure laterality and postoperative seizure outcome in 70 left speech dominant patients from two epilepsy centers. DS > or = 2, after addition of 1 point to the left hemisphere injection score to account for aphasia, were noted in 71.4% of patients and correctly predicted surgery side for 98.0% of these patients. The DS related significantly to seizure outcome at 1-year follow-up (p < 0.002) and correctly predicted 80% of patients who were seizure-free. Patients whose DS did not correctly predict seizure laterality more frequently required invasive studies to establish seizure onset. The relationship of the DS to laterality did not differ significantly by class of IAP memory stimuli. When seizures originate from the temporal lobe, the IAP memory DS predicts seizure laterality by assessing the functional adequacy of the involved hemisphere and is predictive of seizure control.

Adolescent↗

Verbal memory impairment resulting from hippocampal neuron loss among epileptic patients with structural lesions.

We recently demonstrated statistically significant correlations between presurgical memory impairment and hippocampal volumetric cell densities (in CA3 and the hilar area only) for patients with idiopathic left temporal lobe epilepsy who exhibited marked hippocampal neuron loss. In the present research we determine whether the same relationship exists for patients with structural lesions, in whom hippocampal neuron loss was minimal. Rank-order correlations of verbal memory test results (ie, Long Term Retrieval score of the verbal Selective Reminding Test, Percent Retention index of the Logical Memory subtest of the Wechsler Memory Scale) and hippocampal volumetric cell densities (subfields CA1, CA2, CA3, the hilar area, and the granule layer of area dentata) were computed for 22 patients with structural lesions and medically refractory epilepsy of temporal lobe onset (11 left, 11 right). There were statistically significant correlations between Long Term Retrieval and the volumetric cell density of CA1 (r = 0.62, p < 0.05) and between percent retention and the volumetric cell density of CA2 (r = 0.60, p < 0.05) for patients with left hemisphere lesions. No other correlations were found for patients with left or right temporal lobe lesions.

Adult↗

Cerebral dominance for speech and handwriting of patients with cortical vascular malformations.

Lateralization of speech dominance was established using amobarbital for 22 patients with vascular malformations lateralized to the left cerebral hemisphere. Patients' histories were negative for clinically evident neurological events (e.g., seizures or hemorrhage) prior to adulthood. The vascular lesions were categorized as high flow arteriovenous malformations (AVMs) (n = 4), low flow AVMs (n = 6), cavernous hemangiomas (n = 10), or venous angiomas (n = 2) by reviewing angiographic findings and surgical pathology for those patients whose lesions were excised. Three of the malformations encroached upon primary language areas. The frequency of right hemisphere speech dominance was not significantly elevated in comparison with the normal population, even though the incidence of nonright-handedness was. Ninety-five percent of the patients were left hemisphere dominant for speech: only one patient, with a parietal lobe cavernous hemangioma, was found to be right hemisphere dominant for speech. This malformation did not involve the primary language areas. These findings suggest that vascular malformations do not affect speech dominance as readily as other neurological diseases, but frequently affect manual dominance.

Adolescent↗

Specificity in the correlation of verbal memory and hippocampal neuron loss: dissociation of memory, language, and verbal intellectual ability.

Fifty-nine patients with temporal-lobe epilepsy (28 left, 31 right) completed the Boston Naming Test (BNT), verbal subtests of the Wechsler Adult Intelligence Scale-Revised, and the Logical Memory Subtest of the Wechsler Memory Scale (WMS) before surgery. Performances by patients with left temporal seizure foci were significantly more impaired than those of patients with right seizure foci on the WMS Logical Memory subtest and the BNT. After surgical removal of the mesial temporal lobe structures, two blinded observers established volumetric cell densities for hippocampal subfields CA1, CA2, CA3, the hilar area, and the granule cell layer of area dentata. Statistically significant correlations existed only between percent retention scores and hippocampal neuron loss in CA3 and the hilar area for patients with left temporal seizure foci. None of the other dependent measures was significantly correlated with hippocampal neuron density in any subfield. These results support the hypothesis that certain verbal memory impairments are attributable to hippocampal damage specifically, and not to temporal lobe damage in general.

Adult↗

The neural substrate of memory impairment demonstrated by the intracarotid amobarbital procedure.

The intracarotid amobarbital sodium (Amytal) procedure (IAP) was performed for 46 patients with temporal lobe epilepsy (21 with left seizure foci; 25 with right seizure foci). After anteromedial temporal lobectomy, neuronal densities were established for hippocampal subfields CA1, CA2, and CA3; the hilum; and the dentate granule cell layer. Intracarotid amobarbital procedure memory results were related to CA3 neuronal loss only. Patients who did not demonstrate memory after injection contralateral to the seizure focus had significantly fewer cells in CA3 than patients who did. Additionally, a significant correlation was observed between the intracarotid amobarbital procedure memory examination raw score after injection contralateral to the seizure focus and CA3 cell density. Using chi 2 analysis, significant differences were documented in the frequency with which memory was demonstrated after injection contralateral to the seizure focus for groups of patients classified by degree of CA3 neuronal loss. This finding supports prior research showing subfield specificity in some memory processes.

Adolescent↗

Verbal memory impairment correlates with hippocampal pyramidal cell density.

Thirty-five patients with medically refractory epilepsy localized to the temporal lobe (18 left, 17 right) completed the verbal Selective Reminding Test before surgery. Verbal memory impairments existed before surgery regardless of the lateralization of the seizure focus, but patients with left temporal seizure foci were significantly more impaired. After surgical removal of the mesial temporal lobe structures, 2 blinded observers established volumetric cell densities for hippocampal subfields CA1, CA2, CA3, the hilar area, and the granule cell layer of the area dentata. Statistically significant correlations existed between presurgical memory impairment and cell counts (in CA3 and the hilar area, only) for patients with left temporal seizure foci. These findings support the hippocampal model of memory and complement prior research documenting the memory impairments present after surgical removal of the mesial temporal structures.

Adolescent↗

Anterior, total, and two-stage corpus callosum section: differential and incremental seizure responses.

Published reports suggest that control of generalized seizures is improved by callosotomy but do not necessarily indicate that completion of failed anterior callosotomy is beneficial. We studied 42 patients after anterior callosotomy and 22 after total callosotomy, of whom 14 underwent a two-stage procedure. Cure or marked diminution of seizures was most dramatic for atonic and tonic-clonic seizures after anterior callosotomy (100 and 83%), and for tonic-clonic and tonic seizures after total callosotomy (68 and 57%). For the 14 patients who failed to improve after anterior section and then underwent total section, incremental responses were noted for all seizure types, with cure or marked diminution of partial seizures in 2 of 14 patients, of tonic-clonic seizures in 6 of 10, of tonic seizures in 2 of 4, of atonic seizures in 2 of 5, and of myoclonic seizures in 1 of 1. More than two seizure types, verbal IQ < 80, and diffuse ictal EEG patterns were significantly more common in the anterior callosotomy failures. Total callosotomy can be of benefit when anterior callosotomy fails, especially for persistent tonic-clonic and tonic seizures, and will most often be necessary in patients with diffuse cerebral abnormalities.

Adolescent↗

Degree of hippocampal neuron loss determines severity of verbal memory decrease after left anteromesiotemporal lobectomy.

Fifty-eight left speech dominant adults with medically refractory epilepsy originating from the temporal lobe (28 left, 30 right) were examined using the verbal Selective Reminding Test before and after anteromesiotemporal lobectomy. After neuron density in the excised hippocampal tissue was established, a median split procedure was performed to distinguish patients with severe neuron loss (13 left, 16 right) from those with only mild or moderate neuron loss (15 left, 14 right). The memory of patients with severe left hippocampal neuron loss did not decrease significantly postoperatively. Patients with mild or moderate left hippocampal neuron loss experienced significant verbal memory decrease postoperatively. The magnitude of the verbal memory decrease was not related to recurrence of seizures after operation. Patients undergoing right anteromesiotemporal lobectomy exhibited significant improvements in verbal memory, regardless of the condition of the excised hippocampal tissue. The degree of hippocampal neuron loss determines to a great extent the severity of the verbal memory decrease that follows dominant anteromesiotemporal lobectomy.

Adult↗

Left anterior lobectomy and category-specific naming.

Damasio and colleagues (1996) have proposed that the left anterior temporal region supports knowledge pertaining to living objects, whereas more posterior temporal regions play a critical role in naming nonliving things. Accordingly, one might expect that left-sided anterior temporal lobectomy should have a more profound effect on the naming of living as opposed to nonliving things. As part of a multicenter collaborative project, seventy-nine patients (all left-hemisphere speech dominant) were tested pre- and post-left-temporal lobectomy on a task that required naming of living and nonliving items equated for name frequency, familiarity, and visual complexity. Consistent with the proposals of Damasio et al. (1996), left temporal lobectomy impaired naming ability, particularly for living things. When individual outcomes were considered, twice as many patients showed a relative decline in naming living as opposed to nonliving things.

Adult↗

[Intracarotid amytal testing in the evaluation for epilepsy surgery].

INTRODUCTION: The Wada test for language and memory still plays an important role in evaluating the surgery performed on epileptic patients. The measures of the functional deficits carried out with the Wada test, associated with known brain lesions, aid in determining the lateralization of the onset of seizures and provide some estimate of the risk to memory after a temporal lobotomy. DEVELOPMENT: A more refined procedure, based on the correlations with the titration from MRI, fMR and MR spectroscopy, will be needed. Moreover, using the Wada test it is possible to make long term forecasts about the cognitive outcome and about the control of seizures. When used together with other neurological, functional and psychometric evaluations, it becomes easier to select the patients with most chances of benefiting from surgical epilepsy treatment. Finally, the non invasive measures of brain functioning include fMR, which provides far more information than that obtained using the Wada test. However, it remains to be determined whether the procedure based on activation provides data of the same quality as those obtained by the Wada test, which can provide a more adequate reversible model of the effects of surgery on cognition. CONCLUSION: . Ideally, as MRI and other imaging techniques progress, they will be able to offer complementary images, which will improve our capacity to forecast and prevent important post operative cognitive deficiencies.

Adult↗