Publications by authors named "A Zdunczyk"

Background And Objectives: The surgical resection of insular gliomas is associated with a high rate of postoperative morbidity as they grow close to descending motor fibers and lenticulostriate arteries. It is believed that intraoperative perforator infarctions are the determining factor for patients' postoperative outcome, while the majority of patients with intraoperative ischemic events do not develop postoperative motor deficits. This study aims to evaluate whether navigated transcranial magnetic stimulation (nTMS) and nTMS-based fiber tracking could be valuable for the preoperative assessment of patients with insular gliomas.

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Background And Objectives: Cavernous malformations (CMs) account for 8% to 15% of all cerebrovascular anomalies and pose clinical significance due to their potential to cause symptomatic hemorrhage, seizures, and focal neurological deficits. While the majority of CMs are located supratentorial, the less common posterior fossa, particularly cerebellar CMs (cCMs), pose a unique treatment challenge. This study aims to contribute to the understanding and management of cerebellar CMs, thereby assisting in the decision-making process for clinical interventions in this patient population.

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Article Synopsis
  • This study investigates how adding extra neurophysiological parameters from navigated Transcranial Magnetic Stimulation (nTMS) affects risk assessments for motor disorders after brain tumor surgery in areas controlling movement.
  • Data from 170 patients with gliomas were analyzed, measuring factors like resting motor threshold and cortical silent period before surgery, along with tracking motor function recovery post-op.
  • Results indicated some preliminary associations between certain nTMS parameters and worsened motor outcomes after surgery, particularly at one week and three months, but these findings lacked consistent statistical reliability in deeper analyses.
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Spreading depolarizations (SDs) occur frequently in patients with malignant hemispheric stroke. In animal-based experiments, SDs have been shown to cause secondary neuronal damage and infarct expansion during the initial period of infarct progression. In contrast, the influence of SDs during the delayed period is not well characterized yet.

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