Papas S, Ferguson A V
Department of Physiology, Queen's University, Kingston, Ontario, Canada.
Brain Res Bull. 1990 Apr;24(4):577-82. doi: 10.1016/0361-9230(90)90162-s.
Neuroanatomical studies have demonstrated reciprocal connections between the parabrachial nucleus (PBN) and both the area postrema (AP) and the nucleus tractus solitarius (NTS). To functionally characterize these projections, antidromic identification of AP and NTS neurons projecting to the PBN was attempted. Orthodromic influences on these cells, resulting from PBN stimulation, were also examined. Four percent of AP neurons tested (n = 74) were antidromically identified as projecting to the PBN [latency (L) = 26 +/- 4 msec, threshold current (T) = 79 +/- 11 microA]. Parabrachial stimulation orthodromically influenced 24% of AP cells. Equal numbers of these neurons (12%) were excited [L = 25 +/- 9 msec, duration (D) = 29 +/- 14 msec] and inhibited (L = 28 +/- 8 msec, D = 107 +/- 40 msec). Of 46 NTS neurons tested, 11% were antidromically identified as projecting to the PBN (L = 12 +/- 4 msec, T = 61 +/- 18 microA), while orthodromic influences were seen in 41% of these neurons. Initial responses of 30% of the cells were excitatory (L = 34 +/- 14 msec, D = 63 +/- 24 msec), PBN stimulation inhibited the remaining 11% of NTS neurons (L = 30 +/- 10 msec, D = 108 +/- 32 msec). These findings suggest that a functional heterogeneity exists in the PBN efferents to the AP and NTS. However, the small proportion of antidromically identified AP and NTS efferents to the PBN disagrees with neuroanatomical studies suggesting a denser projection.
神经解剖学研究已经证实,臂旁核(PBN)与最后区(AP)和孤束核(NTS)之间存在相互连接。为了从功能上表征这些投射,我们尝试对投射到PBN的AP和NTS神经元进行逆向鉴定。我们还研究了PBN刺激对这些细胞的顺向影响。在接受测试的AP神经元中(n = 74),4%被逆向鉴定为投射到PBN [潜伏期(L)= 26 ± 4毫秒,阈电流(T)= 79 ± 11微安]。臂旁核刺激对24%的AP细胞有顺向影响。这些神经元中,兴奋和抑制的数量相等(均为12%)[兴奋:L = 25 ± 9毫秒,持续时间(D)= 29 ± 14毫秒;抑制:L = 28 ± 8毫秒,D = 107 ± 40毫秒]。在接受测试的46个NTS神经元中,11%被逆向鉴定为投射到PBN(L = 12 ± 4毫秒,T = 61 ± 18微安),而在41%的这些神经元中观察到了顺向影响。30%的细胞初始反应为兴奋性(L = 34 ± 14毫秒,D = 63 ± 24毫秒),PBN刺激抑制了其余11%的NTS神经元(L = 30 ± 10毫秒,D = 108 ± 32毫秒)。这些发现表明,PBN向AP和NTS的传出纤维存在功能异质性。然而,逆向鉴定出的投射到PBN的AP和NTS传出纤维比例较小,这与提示投射更密集的神经解剖学研究结果不一致。