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1.
Am J Otolaryngol ; 43(1): 103250, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-34601219

RESUMO

PURPOSE: There have been previous case reports suggesting the resolution of both sensorineural hearing loss and retrocochlear involvement through the management of hydrocephalus with shunt placement. This is a case report of a patient with Auditory Neuropathy Spectrum Disorder (ANSD) that resolved after shunt placement in a patient with hydrocephalus. MATERIALS AND METHODS: Chart review of a single patient with a diagnosis of ANSD and hydrocephalus. Type of audiometric testing and results were document. RESULTS: Patient is an infant who was diagnosed with hydrocephalus at birth and ANSD in the right ear at 3 months of age. Patient underwent shunt placement at 9 months old and had behavioral testing 2 months later. Audiometry showed normal behavioral audiometric thresholds with presence of ipsilateral and contralateral reflexes which is suggestive of resolution of ANSD. CONCLUSIONS: This is a single case report of resolution of ANSD after shunt placement in a patient with hydrocephalus. Close monitoring and repeat audiological evaluation is recommended to follow these patients.


Assuntos
Perda Auditiva Central/cirurgia , Perda Auditiva Neurossensorial/cirurgia , Hidrocefalia/cirurgia , Derivação Ventriculoperitoneal , Perda Auditiva Central/congênito , Perda Auditiva Neurossensorial/congênito , Humanos , Hidrocefalia/congênito , Lactente , Recém-Nascido , Resultado do Tratamento
2.
J Neurophysiol ; 121(3): 842-852, 2019 03 01.
Artigo em Inglês | MEDLINE | ID: mdl-30625009

RESUMO

Sudden death is an important but underrecognized consequence of stroke. Acute stroke can disturb central control of autonomic function and result in cardiac dysfunction and sudden death. Previous study showed that bilateral common carotid artery ligation (BCCAL) in the spontaneously hypertensive stroke-prone rat strain (SHRSP) is a well-established model for forebrain ischemic sudden death. This study aims to investigate the temporal dynamic changes in electrical activities of the brain and heart and functional interactions between the two vital organs following forebrain ischemia. EEG and ECG signals were simultaneously collected from nine SHRSP and eight Wistar-Kyoto (WKY) rats. RR interval was analyzed to investigate the cardiac response to brain ischemia. EEG power and coherence (CCoh) analysis were conducted to study the cortical response. Corticocardiac coherence (CCCoh) and directional connectivity (CCCon) were analyzed to determine brain-heart connection. Heart rate variability (HRV) was analyzed to evaluate autonomic functionality. BCCAL resulted in 100% mortality in SHRSP within 14 h, whereas no mortality was observed in WKY rats. The functionality of both the brain and the heart were significantly altered in SHRSP compared with WKY rats after BCCAL. SHRSP, but not WKY rats, exhibited intermittent surge of CCCoh, which paralleled the elevated CCCon and reduced HRV, following the onset of ischemia until sudden death. Elevated brain-heart coupling invariably associated with the disruption of the autonomic nervous system and the risk of sudden death. This study may improve our understanding of the mechanism of forebrain ischemia-induced sudden death. NEW & NOTEWORTHY This study demonstrates a marked surge of corticocardiac coupling in rats dying from focal cerebral ischemia, consistent with our earlier data in rats exposed to fatal asphyxia. Since the bidirectional electrical signal coupling (corticocardiac coherence) and communication (corticocardiac connectivity) between the brain and the heart are only identified in dying animals, they could be used as potential biomarkers to predict the risk of sudden death.


Assuntos
Isquemia Encefálica/fisiopatologia , Ondas Encefálicas , Morte Súbita Cardíaca , Frequência Cardíaca , Prosencéfalo/fisiopatologia , Animais , Pressão Sanguínea , Coração/fisiopatologia , Prosencéfalo/irrigação sanguínea , Ratos , Ratos Wistar
3.
Front Physiol ; 9: 99, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29487541

RESUMO

Sudden cardiac arrest is a leading cause of death in the United States. The neurophysiological mechanism underlying sudden death is not well understood. Previously we have shown that the brain is highly stimulated in dying animals and that asphyxia-induced death could be delayed by blocking the intact brain-heart neuronal connection. These studies suggest that the autonomic nervous system plays an important role in mediating sudden cardiac arrest. In this study, we tested the effectiveness of phentolamine and atenolol, individually or combined, in prolonging functionality of the vital organs in CO2-mediated asphyxic cardiac arrest model. Rats received either saline, phentolamine, atenolol, or phentolamine plus atenolol, 30 min before the onset of asphyxia. Electrocardiogram (ECG) and electroencephalogram (EEG) signals were simultaneously collected from each rat during the entire process and investigated for cardiac and brain functions using a battery of analytic tools. We found that adrenergic blockade significantly suppressed the initial decline of cardiac output, prolonged electrical activities of both brain and heart, asymmetrically altered functional connectivity within the brain, and altered, bi-directionally and asymmetrically, functional, and effective connectivity between the brain and heart. The protective effects of adrenergic blockers paralleled the suppression of brain and heart connectivity, especially in the right hemisphere associated with central regulation of sympathetic function. Collectively, our results demonstrate that blockade of brain-heart connection via alpha- and beta-adrenergic blockers significantly prolonged the detectable activities of both the heart and the brain in asphyxic rat. The beneficial effects of combined alpha and beta blockers may help extend the survival of cardiac arrest patients.

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