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延髓头端腹外侧区:防御警觉反应期间肌肉血管舒张的整合位点。

Rostral ventrolateral medulla: an integrative site for muscle vasodilation during defense-alerting reactions.

作者信息

Cravo Sergio L, Possas Olga S, Ferreira-Neto Marcos L

机构信息

Department of Physiology, Universidade Federal de São Paulo, 04023-060 São Paulo, SP, Brazil.

出版信息

Cell Mol Neurobiol. 2003 Oct;23(4-5):579-95. doi: 10.1023/a:1025076130854.

Abstract
  1. Evidence gathered over the last 30 years has firmly established that the rostral ventrolateral medulla (RVLM) is a major vasomotor center in the brainstem, harboring sympathetic premotor neurons responsible for generating and maintaining basal vasomotor tone and resting levels of arterial blood pressure. Although the RVLM has been almost exclusively classified as a vasopressor area, in this report we review some evidence suggesting a prominent role of the RVLM in muscle vasodilation during defense-alerting responses. 2. Defense-alerting reactions are a broad class of behavior including flexion of a limb, fight/flight responses, apologies, etc. They comprise species-distinctive motor and neurovegetative adjustments. Cardiovascular responses include hypertension, tachycardia, visceral vasoconstriction, and muscle vasodilation. Since defense-alerting reactions generally involve intense motor activation, muscle vasodilation is regarded as a key feature of these responses 3. In anesthetized or unanesthetized-decerebrate animals, natural or electrical stimulation of cutaneous and muscle afferents produced hypertension, tachycardia, and vasodilation restricted to the stimulated limb. 4. Unilateral inactivation of the RVLM contralateral to the stimulated limb abolished cardiovascular adjustments to stimulation of cutaneous and muscle afferents. Within the RVLM glutamatergic synapses mediate pressor responses, whereas GABAergic synapses mediates muscle vasodilation. 5. In urethane-anesthetized rats, electrical stimulation of the hypothalamus elicited hypertension, tachycardia, visceral vasoconstriction, and hindlimb vasodilation. The hindlimb vasodilation induced by hypothalamic stimulation is a complex response, involving reduction of sympathetic vasoconstrictor tone, release of catecholamines by the adrenal medulla, and a still unknown system that may use nitric oxide as a mediator. 6. Blockade of glutamatergic transmission within the RVLM selectively blocks muscle vasodilation induced by hypothalamic stimulation. 7. The results obtained suggest that, besides its role in the generation and maintenance of the sympathetic vasoconstrictor drive, the RVLM is also critical for vasodilatory responses during defense reactions. The RVLM may contain several, distinctive mechanisms for muscle vasodilation. Anatomical and functional characterization of these pathways may represent a breakthrough in our understanding of cardiovascular control in normal and/or pathological conditions.
摘要
  1. 在过去30年中收集的证据已确凿地证实,延髓头端腹外侧区(RVLM)是脑干中的一个主要血管运动中枢,含有负责产生和维持基础血管运动张力及动脉血压静息水平的交感神经运动前神经元。尽管RVLM几乎一直被归类为升压区,但在本报告中,我们回顾了一些证据,表明RVLM在防御警觉反应期间的肌肉血管舒张中发挥着重要作用。2. 防御警觉反应是一类广泛的行为,包括肢体屈曲、战斗/逃跑反应、警戒等。它们包括物种特有的运动和神经植物性调节。心血管反应包括高血压、心动过速、内脏血管收缩和肌肉血管舒张。由于防御警觉反应通常涉及强烈的运动激活,肌肉血管舒张被视为这些反应的一个关键特征。3. 在麻醉或未麻醉去大脑动物中,对皮肤和肌肉传入神经的自然或电刺激会产生高血压、心动过速以及局限于受刺激肢体的血管舒张。4. 受刺激肢体对侧的RVLM单侧失活消除了对皮肤和肌肉传入神经刺激的心血管调节。在RVLM内,谷氨酸能突触介导升压反应,而γ-氨基丁酸能突触介导肌肉血管舒张。5. 在氨基甲酸乙酯麻醉的大鼠中,下丘脑的电刺激引发了高血压、心动过速、内脏血管收缩和后肢血管舒张。下丘脑刺激引起的后肢血管舒张是一种复杂的反应,涉及交感缩血管张力的降低、肾上腺髓质释放儿茶酚胺以及一个可能以一氧化氮作为介质的仍未知的系统。6. RVLM内谷氨酸能传递的阻断选择性地阻断了下丘脑刺激诱导的肌肉血管舒张。7. 所获得的结果表明,除了其在交感缩血管驱动的产生和维持中的作用外,RVLM在防御反应期间的血管舒张反应中也至关重要。RVLM可能包含几种不同的肌肉血管舒张机制。这些途径的解剖学和功能特征可能代表了我们在正常和/或病理条件下对心血管控制理解的一个突破。

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