Following stroke, functional networks reorganize and the brain demonstrates widespread alterations in cortical activity. Implicit motor learning is preserved after stroke. However the manner in which brain reorganization occurs, and how it supports behaviour within the damaged brain remains unclear. In this functional magnetic resonance imaging (fMRI) study, we evaluated whole brain patterns of functional connectivity during the performance of an implicit tracking task at baseline and retention, following 5 days of practice. Following motor practice, a significant difference in connectivity within a motor network, consisting of bihemispheric activation of the sensory and motor cortices, parietal lobules, cerebellar and occipital lobules, was observed at retention. Healthy subjects demonstrated greater activity within this motor network during sequence learning compared to random practice. The stroke group did not show the same level of functional network integration, presumably due to the heterogeneity of functional reorganization following stroke. In a secondary analysis, a binary mask of the functional network activated from the aforementioned whole brain analyses was created to assess within-network connectivity, decreasing the spatial distribution and large variability of activation that exists within the lesioned brain. The stroke group demonstrated reduced clusters of connectivity within the masked brain regions as compared to the whole brain approach. Connectivity within this smaller motor network correlated with repeated sequence performance on the retention test. Increased functional integration within the motor network may be an important neurophysiological predictor of motor learning-related change in individuals with stroke.
Objectives:
The role of adjuvant radiotherapy for lymph node-negative stage IB patients with tumor- related negative prognostic factors is not uniformly accepted. It is advocated based on the GOG 92 trial, which was initiated in 1989. The aim of the current study is to report the oncological outcome of “intermediate risk” patients treated by tailored surgery without adjuvant radiotherapy. Data from two institutions that refer these patients for adjuvant radiotherapy served as a control group.
Methods:
Included were patients with stage IB cervical cancer treated with radical hysterectomy and pelvic lymphadenectomy, who had negative pelvic lymph nodes but a combination of negative prognostic factors adopted from the GOG 92 trial. Data were obtained from prospectively collected databases of three institutions. Radical surgery was a single-treatment modality in one of them and in the remaining two institutes it was followed by adjuvant chemoradiation.
Results:
In 127 patients who received only radical surgery, with a median follow-up of 6.1 years, the local recurrence rate was 1.6% (2 cases), and total recurrence was 6.3% (8 cases). Disease-specific survival at five years was 95.7% (91.9%; 99.4%) and 91% (83.7%; 98.3%) at 10 years. The only significant factor for disease-specific survival was tumor size ≥4 cm (P=0.032). The recurrence rate, local control or overall survival did not differ from the control group. Adjuvant radiotherapy was not a significant prognostic factor within the whole cohort.
Conclusions:
An excellent oncological outcome, especially local control, can be achieved by both radical surgery or combined treatment in stage IB lymph node-negative cervical cancer patients with negative prognostic factors. The substantially better outcome than in the GOG 92 trial can be attributed to more accurate pre-operative and pathological staging and an improvement in surgical techniques.
These findings replicate our previous work showing generalized speech-related functional network hypercoupling in schizophrenia during inner verbal thought and SP, but extend them by suggesting that hypercoupling is related to past-week hallucination severity scores during SP only, when control over verbal material is not required. This result opens the possibility that practicing control over inner verbal thought processes may decrease the likelihood or severity of hallucinations.
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