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Background And Objective: Gastrointestinal (GI) motility disorders can be significantly detrimental to the quality of life. Pacing, or long pulse gastric electrical stimulation, is a potential treatment option for treating GI motility disorders by modulating the slow wave activity. Open-loop pacing of the GI tract is the current standard for modulating dysrhythmic patterns, but it is known to be suboptimal and inefficient. Recent work on sensing intracellular potentials and pacing accordingly in a closed-loop has been shown to be effective at modulating dysrhythmic patterns. However, capturing intracellular potentials in an in-vivo setting is not viable. Therefore a closed-loop gastric electrical stimulation that can sense extracellular potentials and pace accordingly to modulate dysrhythmic patterns is required. This paper presents a closed-loop Gastric Electrical Stimulator (GES) design framework, which comprises of extracellular potential generation, sensing, and closed-loop actuation.
Methods: This work leverages a pre-existing high-fidelity two-dimensional Interstitial Cells of Cajal (ICC) network modeling framework to mimic several normal and dysrhythmic patterns observed in experimental recordings of patients suffering from GI tract diseases. The activation patterns of the of the ICC network are captured by an extracellular potential generation model and is integrated with the GES in a closed-loop to validate the efficacy of the developed pacing algorithms. The proposed GES pacing algorithms extend existing offline filtering and activation detection methods to process the sensed extracellular potentials in real time. The GES detects bradygastric rhythms based on the sensed extracellular potentials and actuates the ICC network via pacing to rectify dysrhythmic patterns.
Results: The proposed GES model is able to sense and process the generated noisy extracellular potentials, detect the bradygastric patterns, and modulate the slow wave activities to normal propagation effectively.
Conclusions: A closed-loop GES design, which can be applied in an experimental and clinical setting is developed and validated through the ICC network model. The proposed GES model has the ability to modulate a variety of bradygastric patterns, including conduction block effectively in a closed-loop.
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http://dx.doi.org/10.1016/j.cmpb.2022.106652 | DOI Listing |
Folia Phoniatr Logop
September 2025
Introduction There is no definitive, comprehensive guide for diagnosing stuttering in multilingual speakers, and research suggests that monolingual-based diagnostic criteria may lead to misidentification in this population. This systematic review aimed to identify and consolidate conventional diagnostic guidelines for multilingual speakers and evaluate their validity in light of empirical evidence on stuttering and multilingualism. Method A systematic review was conducted using PubMed, Science Direct, SAGE, CINAHL, and Google Scholar using specific MESH terms (e.
View Article and Find Full Text PDFBrain Commun
April 2025
State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, Guangdong 510060, China.
This research examines how congenital visual or hearing impairment reshapes brain function using EEG. The study involved 40 children with congenital visual impairment, 40 with hearing impairment and 42 age and gender-matched normal children as controls. The investigation included assessments of visual and auditory abilities, along with comprehensive EEG evaluations.
View Article and Find Full Text PDFJ Speech Lang Hear Res
April 2025
Department of Linguistics and Cognitive Science, University of Delaware, Newark.
Purpose: Aberrant speech rhythm has previously been identified as a hallmark of stuttering. However, evidence of dysrhythmic speech in adults who stutter (AWS) has largely been limited to qualitative research. Here, we conduct a quantitative analysis of speech rhythm in AWS and adults who do not stutter (AWNS).
View Article and Find Full Text PDFAm J Speech Lang Pathol
March 2025
Division of Neonatology, Department of Child Health, Phoenix Children's Hospital, Phoenix Campus, The University of Arizona.
Background: Preterm and low-birth-weight infants often experience discoordination of the suck-swallow-breathe pattern, leading to dysrhythmic feeding, inefficient feeding skills, and swallowing dysfunction, increasing the risk of aspiration and respiratory morbidity. While videofluoroscopic swallowing study is commonly utilized to assess swallow function in neonates, flexible endoscopic evaluation of swallowing (FEES) has been an emerging modality and has been utilized routinely at our institution since 2018.
Method: A single-center, retrospective study including 90 infants admitted to the neonatal unit between 2018-2023 who underwent FEES procedure.
Hypertension
January 2025
Department of Pharmaceutical Sciences, College of Pharmacy (S.P., A.K.B., A.J.S.), University of Arkansas for Medical Sciences, Little Rock, AR.
Background: Hypertension increases the risk of lymphedema in patients with comorbidities, but whether hypertension directly compromises lymph vessel (LV) function and lymph flow is unclear. We compared the contractions of mesenteric LVs ex vivo and lymph flow in vivo between normotensive and Ang II (angiotensin II)-induced hypertensive rats and explored the ionic basis of contractile patterns. Key studies were recapitulated in spontaneously hypertensive rats and control Wistar-Kyoto rats.
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