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迈向空间选择性传出神经调节:猪颈迷走神经中心脏纤维的解剖和功能组织

Towards spatially selective efferent neuromodulation: anatomical and functional organization of cardiac fibres in the porcine cervical vagus nerve.

作者信息

Thompson Nicole, Ravagli Enrico, Mastitskaya Svetlana, Challita Ronald, Hadaya Joseph, Iacoviello Francesco, Idil Ahmad Shah, Shearing Paul R, Ajijola Olujimi A, Ardell Jeffrey L, Shivkumar Kalyanam, Holder David, Aristovich Kirill

机构信息

EIT and Neurophysiology Research Group, Department of Medical Physics and Biomedical Engineering, University College London, London, UK.

UCLA Cardiac Arrhythmia Center and Neurocardiology Research Program of Excellence, David Geffen School of Medicine at UCLA, Los Angeles, California, USA.

出版信息

J Physiol. 2025 Mar;603(7):1983-2004. doi: 10.1113/JP286494. Epub 2024 Aug 26.

Abstract

Spatially selective vagus nerve stimulation (sVNS) offers a promising approach for addressing heart disease with enhanced precision. Despite its therapeutic potential, VNS is limited by off-target effects and the need for time-consuming titration. Our research aimed to determine the spatial organization of cardiac afferent and efferent fibres within the vagus nerve of pigs to achieve targeted neuromodulation. Using trial-and-error sVNS in vivo and ex vivo micro-computed tomography fascicle tracing, we found significant spatial separation between cardiac afferent and cardiac efferent fibres at the mid-cervical level and they were localized on average on opposite sides of the nerve cross-section. This was consistent between both in vivo and ex vivo methods. Specifically, cardiac afferent fibres were located near pulmonary fibres, consistent with findings of cardiopulmonary convergent circuits and, notably, cardiac efferent fascicles were exclusive. These cardiac efferent regions were located in close proximity to the recurrent laryngeal regions. This is consistent with the roughly equitable spread across the nerve of the afferent and efferent fibres. Our study demonstrated that targeted neuromodulation via sVNS could achieve scalable heart rate decreases without eliciting cardiac afferent-related reflexes; this is desirable for reducing sympathetic overactivation associated with heart disease. These findings indicate that understanding the spatial organization of cardiac-related fibres within the vagus nerve can lead to more precise and effective VNS therapy, minimizing off-target effects and potentially mitigating the need for titration. KEY POINTS: Spatially selective vagus nerve stimulation (sVNS) presents a promising approach for addressing chronic heart disease with enhanced precision. Our study reveals significant spatial separation between cardiac afferent and efferent fibres in the vagus nerve, particularly at the mid-cervical level. Utilizing trial-and-error sVNS in vivo and micro-computed tomography fascicle tracing, we demonstrate the potential for targeted neuromodulation, achieving therapeutic effects such as scalable heart rate decrease without stimulating cardiac afferent-related reflexes. This spatial understanding opens avenues for more effective VNS therapy, minimizing off-target effects and potentially eliminating the need for titration, thereby expediting therapeutic outcomes in myocardial infarction and related conditions.

摘要

空间选择性迷走神经刺激(sVNS)为更精确地治疗心脏病提供了一种很有前景的方法。尽管具有治疗潜力,但迷走神经刺激受到非靶向效应以及耗时的滴定需求的限制。我们的研究旨在确定猪迷走神经内心脏传入和传出纤维的空间组织,以实现靶向神经调节。通过在体内进行反复试验的sVNS以及体外微型计算机断层扫描束状追踪,我们发现在颈中部水平,心脏传入和传出纤维之间存在明显的空间分离,并且它们平均位于神经横截面的相对两侧。体内和体外方法的结果一致。具体而言,心脏传入纤维位于肺纤维附近,这与心肺汇聚回路的研究结果一致,值得注意的是,心脏传出束是独立的。这些心脏传出区域位于喉返神经区域附近。这与传入和传出纤维在神经上大致均匀分布是一致的。我们的研究表明,通过sVNS进行靶向神经调节可以在不引发与心脏传入相关反射的情况下实现可调节的心率降低;这对于减少与心脏病相关的交感神经过度激活是可取的。这些发现表明,了解迷走神经内与心脏相关纤维的空间组织可以带来更精确有效的迷走神经刺激疗法,将非靶向效应降至最低,并可能减少滴定的需求。要点:空间选择性迷走神经刺激(sVNS)为更精确地治疗慢性心脏病提供了一种很有前景的方法。我们的研究揭示了迷走神经中心脏传入和传出纤维之间存在明显的空间分离,特别是在颈中部水平。通过在体内进行反复试验的sVNS和微型计算机断层扫描束状追踪,我们证明了靶向神经调节的潜力,可实现如可调节的心率降低等治疗效果,而不会刺激与心脏传入相关的反射。这种对空间的理解为更有效的迷走神经刺激疗法开辟了道路,将非靶向效应降至最低,并可能消除滴定的需求,从而加快心肌梗死及相关病症的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17e6/11955868/36ed626e71d4/TJP-603-1983-g005.jpg

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