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1.
Artículo en Inglés | MEDLINE | ID: mdl-39024406

RESUMEN

Impaired pharyngeal sensing of negative pressure can lead to a blunted response of the upper airway dilator muscles and contribute to the development of obstructive sleep apnea (OSA). This response is modulated by the nerve fibers in the internal branch of the superior laryngeal nerve (iSLN), mediating negative pressure sensation. Artificial excitation of these fibers could be a potential treatment target for OSA. To evaluate this, electrostimulation of the iSLN was performed in a porcine isolated upper airway model. Artificial obstructions were induced by varying levels of negative pressure and the ability of the animal to resolve these obstructions was evaluated. The pressure at which the animal was still able to resolve the obstruction was quantified as 'Resolvable Pressure'. Thereby, the effects on pharyngeal patency (n=35) and the duration of the therapeutic effect outlasting the stimulation (n=6) were quantified. Electrostimulation prior to the introduction of an artificial obstruction improved the median resolvable pressure from -28.3 cmH2O [IQR: -45.9; -26.1] to -92.6 cmH2O [IQR: -105.1; -78.6]. The median therapeutic effect was found to outlast the last stimulation burst applied by 163 s when five stimulation bursts were applied in short succession [IQR: 58; 231], 58 s when two were applied [IQR: 7; 65], and 6 s when one was applied [IQR: 0; 51]. Stimulation of the iSLN increased EMG in the genioglossus. The proposed treatment concept can improve pharyngeal patency in the model. Transfer of the results to clinical application could enable the development of a new neuromodulation therapy for OSA.

2.
Sci Rep ; 14(1): 10440, 2024 05 07.
Artículo en Inglés | MEDLINE | ID: mdl-38714750

RESUMEN

A wide variety of treatments have been developed to improve respiratory function and quality of life in patients with bilateral vocal fold paresis (BVFP). One experimental method is the electrical activation of the posterior cricoarytenoid (PCA) muscle with a laryngeal pacemaker (LP) to open the vocal folds. We used an ovine (sheep) model of unilateral VFP to study the long-term effects of functional electrical stimulation on the PCA muscles. The left recurrent laryngeal nerve was cryo-damaged in all animals and an LP was implanted except for the controls. After a reinnervation phase of six months, animals were pooled into groups that received either no treatment, implantation of an LP only, or implantation of an LP and six months of stimulation with different duty cycles. Automated image analysis of fluorescently stained PCA cross-sections was performed to assess relevant muscle characteristics. We observed a fast-to-slow fibre type shift in response to nerve damage and stimulation, but no complete conversion to a slow-twitch-muscle. Fibre size, proportion of hybrid fibres, and intramuscular collagen content were not substantially altered by the stimulation. These results demonstrate that 30 Hz burst stimulation with duty cycles of 40% and 70% did not induce PCA atrophy or fibrosis. Thus, long-term stimulation with an LP is a promising approach for treating BVFP in humans without compromising muscle conditions.


Asunto(s)
Modelos Animales de Enfermedad , Terapia por Estimulación Eléctrica , Músculos Laríngeos , Parálisis de los Pliegues Vocales , Animales , Ovinos , Parálisis de los Pliegues Vocales/terapia , Parálisis de los Pliegues Vocales/fisiopatología , Terapia por Estimulación Eléctrica/métodos , Músculos Laríngeos/fisiopatología , Humanos , Marcapaso Artificial/efectos adversos , Pliegues Vocales/fisiopatología , Pliegues Vocales/patología , Femenino
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