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首页> 外文期刊>The Journal of Physiology >Baroreflex functionality in the eye of diffusion tensor imaging
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Baroreflex functionality in the eye of diffusion tensor imaging

机译:扩散张量成像眼中的Baroreflex功能

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摘要

By applying diffusion tensor imaging (DTI) as a physiological tool to evaluate changes in functional connectivity between key brainstem nuclei in the baroreflex neural circuits of mice and rats, recent work has revealed several hitherto unidentified phenomena regarding baroreflex functionality. (1) The presence of robust functional connectivity between nucleus tractus solitarii (NTS) and nucleus ambiguus (NA) or rostral ventrolateral medulla (RVLM) offers a holistic view on the moment-to-moment modus operandi of the cardiac vagal baroreflex or baroreflex-mediated sympathetic vasomotor tone. (2) Under pathophysiological conditions (e.g. neurogenic hypertension), the disruption of functional connectivity between key nuclei in the baroreflex circuits is reversible. However, fatality ensues on progression from pathophysiological to pathological conditions (e.g. hepatic encephalopathy) when the functional connectivity between NTS and NA or RVLM is irreversibly severed. (3) The absence of functional connectivity between the NTS and caudal ventrolateral medulla (CVLM) necessitates partial rewiring of the classical neural circuit that includes CVLM as an inhibitory intermediate between the NTS and RVLM. (4) Sustained functional connectivity between the NTS and NA is responsible for the vital period between brain death and the inevitable cardiac death. (5) Reduced functional connectivity between the NTS and RVLM or NA points to inherent anomalous baroreflex functionality in floxed and Cre-Lox mice. (6) Disrupted NTS-NA functional connectivity in Flk-1 (VEGFR2) deficient mice offers an explanation for the hypertensive side-effect of anti-vascular endothelial growth factor therapy (anti-VEGF) therapy. These newly identified baroreflex functionalities revealed by DTI bear clinical and therapeutic implications.
机译:通过将扩散张量成像(DTI)作为生理工具,以评估小鼠和大鼠的胚胎射精神经电路的关键脑干核之间的功能连通性变化,最近的工作揭示了关于Baroreflex功能的迄今为止不明的现象。 (1)Nucleus cractus solitarii(nts)和核心ambiguus(na)或rostral pentrolateral medulla(Rvlm)存在鲁棒功能连通性的存在提供了对心脏迷航沼泽射精或沼泽射精的时刻模型操作公司的整体视图 - 介导的交感神经调制仪。 (2)在病理生理学条件下(例如神经源性高血压),在沼泽性电路中的关键核之间的功能连通性的破坏是可逆的。然而,当NTS和NA或RVLM之间的功能连通性不可逆地切断时,致命是从病理生理到病理病理到病理条件(例如肝脑病变)的进展。 (3)NTS和尾部口腔外侧髓系(CVLM)之间的功能连通性可能需要部分重新灌注经典神经电路,其包括CVLM作为NTS和RVLM之间的抑制中间体。 (4)NTS和NA之间的持续功能连接是脑死亡与不可避免的心脏死亡之间的重要时期。 (5)在氟碳和CRE-LOX小鼠中降低NTS和RVLM或Na指向固有的异常骨髓拷贝官能团之间的功能连通性。 (6)破坏FLK-1(VEGFR2)中断的NTS-NA功能连接(VEGFR2)缺陷小鼠提供了对抗血管内皮生长因子治疗(抗VEGF)治疗的高血压副作用的解释。这些新发现的Baroreflex功能揭示了DTI临床和治疗意义。

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