Suppr超能文献

大鼠脊髓板层I投射神经元:臂旁核和丘脑的侧支支配

Spinal lamina I projection neurons in the rat: collateral innervation of parabrachial area and thalamus.

作者信息

Hylden J L, Anton F, Nahin R L

机构信息

Neurobiology and Anesthesiology Branch, National Institute of Dental Research, Bethesda, MD 20892.

出版信息

Neuroscience. 1989;28(1):27-37. doi: 10.1016/0306-4522(89)90229-7.

Abstract

A major ascending nociceptive pathway from spinal lamina I to the mesencephalon has previously been reported in the cat, rat and monkey. In the present paper, we have used single and double retrograde labeling techniques to describe this projection system and its collateralization to the thalamus in the rat. Injections of wheat germ agglutinin-horseradish peroxidase into the pontomesencephalic parabrachial area labeled cell bodies bilaterally in lamina I and deeper laminae of the spinal cord. Bilateral lesions of the dorsolateral funiculi at thoracic levels reduced labeling of lamina I neurons caudal to the lesions. Combined injections of fluorescent retrograde tracers into the lateral thalamus and parabrachial area resulted in double labeling of projection neurons in lamina I, lamina IV VIII and the lateral spinal nucleus of the cervical and lumbar enlargements. Double-labeled neurons were especially abundant in lamina I. Thus, we have demonstrated a major lamina I projection through the dorsolateral funiculi to the parabrachial area with significant collateralization to the thalamus. Moreover, since more than 80% of retrogradely labeled lamina I spinothalamic tract cells had collaterals to the parabrachial area we have indirectly demonstrated the presence of a dorsolateral funicular pathway for lamina I spinothalamic neurons in the rat. More lamina I neurons were retrogradely labeled from midbrain injections as compared to thalamic injections. The significance of these findings rest on previous work in this and other laboratories and concerns the understanding of spinal nociceptive mechanisms. Lamina I projection neurons are primarily nociceptive-specific in their response properties and have been shown to project to both the midbrain and thalamus via the dorsolateral funiculus in a number of species. The role of this projection system in nociceptive transmission may lie in its ability to distribute precise information to multiple brain stem sites which in turn activate autonomic or affective responses or descending pain modulatory mechanisms.

摘要

先前在猫、大鼠和猴子中已报道过一条从脊髓I层到中脑的主要上行伤害性感受通路。在本文中,我们使用单逆行和双逆行标记技术来描述大鼠中的这个投射系统及其向丘脑的侧支。将小麦胚凝集素 - 辣根过氧化物酶注入脑桥中脑臂旁区,双侧标记脊髓I层和更深层的细胞体。胸段背外侧索的双侧损伤减少了损伤尾侧I层神经元的标记。将荧光逆行示踪剂联合注入外侧丘脑和臂旁区,导致颈膨大及腰膨大的I层、IV - VIII层和外侧脊髓核中的投射神经元出现双标记。双标记神经元在I层中尤其丰富。因此,我们证明了一条主要的从I层经背外侧索到臂旁区的投射,并向丘脑有大量侧支。此外,由于超过80%的逆行标记的I层脊髓丘脑束细胞有侧支到臂旁区,我们间接证明了大鼠中存在一条I层脊髓丘脑神经元的背外侧索通路。与丘脑注射相比,从中脑注射逆行标记的I层神经元更多。这些发现的意义基于本实验室和其他实验室以前的工作,并且涉及对脊髓伤害性感受机制的理解。I层投射神经元在其反应特性上主要是伤害性感受特异性的,并且已表明在许多物种中通过背外侧索向中脑和丘脑投射。这个投射系统在伤害性感受传递中的作用可能在于其能够将精确信息分布到多个脑干部位,这些部位进而激活自主或情感反应或下行疼痛调节机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验