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颈髓半切术对雄性大鼠的叹气和呼吸重置有影响。

Cervical spinal cord hemisection impacts sigh and the respiratory reset in male rats.

作者信息

Fogarty Matthew J, Zhan Wen-Zhi, Mantilla Carlos B, Sieck Gary C

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic, Rochester, Minnesota, USA.

Department of Anesthesiology and Perioperative Medicine, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Physiol Rep. 2024 Mar;12(5):e15973. doi: 10.14814/phy2.15973.

Abstract

Cervical spinal cord injury impacts ventilatory and non-ventilatory functions of the diaphragm muscle (DIAm) and contributes to clinical morbidity and mortality in the afflicted population. Periodically, integrated brainstem neural circuit activity drives the DIAm to generate a markedly augmented effort or sigh-which plays an important role in preventing atelectasis and thus maintaining lung function. Across species, the general pattern of DIAm efforts during a normal sigh is variable in amplitude and the extent of post-sigh "apnea" (i.e., the post-sigh inter-breath interval). This post-sigh inter-breath interval acts as a respiratory reset, following the interruption of regular respiratory rhythm by sigh. We examined the impact of upper cervical (C ) spinal cord hemisection (C SH) on the transdiaphragmatic pressure (P ) generated during sighs and the post-sigh respiratory reset in rats. Sighs were identified in P traces by their characteristic biphasic pattern. We found that C SH results in a reduction of P during both eupnea and sighs, and a decrease in the immediate post-sigh breath interval. These results are consistent with partial removal of descending excitatory synaptic inputs to phrenic motor neurons that results from C SH. Following cervical spinal cord injury, a reduction in the amplitude of P during sighs may compromise the maintenance of normal lung function.

摘要

颈脊髓损伤会影响膈肌的通气和非通气功能,并导致患病人群的临床发病率和死亡率。周期性地,整合的脑干神经回路活动驱动膈肌产生明显增强的努力或叹息,这在预防肺不张从而维持肺功能方面发挥着重要作用。在不同物种中,正常叹息期间膈肌努力的一般模式在幅度和叹息后“呼吸暂停”(即叹息后的呼吸间隔)程度方面存在差异。这种叹息后的呼吸间隔在叹息打断正常呼吸节律后起到呼吸重置的作用。我们研究了大鼠上颈段(C)脊髓半横断(C SH)对叹息期间产生的跨膈压(P)以及叹息后呼吸重置的影响。通过其特征性的双相模式在P记录中识别出叹息。我们发现C SH导致在平静呼吸和叹息期间P降低,以及叹息后即刻呼吸间隔缩短。这些结果与C SH导致的膈运动神经元下行兴奋性突触输入部分去除一致。颈脊髓损伤后,叹息期间P幅度的降低可能会损害正常肺功能的维持。

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