日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Sociality does not predict signal complexity in response to playback in apteronotid weakly electric fishes

社会性并不能预测弱电鱼对回放信号的复杂程度。

Freiler, Megan K; Smith, G Troy

Population Variation in Steroid Hormone-Related Gene Expression and Sexually Dimorphic Communication in the Electric Fish Apteronotus albifrons

白额电鱼(Apteronotus albifrons)类固醇激素相关基因表达和性二态性通讯的种群变异

Proffitt, Melissa R; Smith, G Troy

Species variation in steroid hormone-related gene expression contributes to species diversity in sexually dimorphic communication in electric fishes

类固醇激素相关基因表达的物种差异导致了电鱼性二态性交流的物种多样性。

Proffitt, Melissa R; Smith, G Troy

Neuroendocrine mechanisms contributing to the coevolution of sociality and communication

神经内分泌机制促进了社会性和交流的共同进化

Freiler, Megan K; Smith, G Troy

Evolution of androgen receptors contributes to species variation in androgenic regulation of communication signals in electric fishes

雄激素受体的进化导致了电鱼体内雄激素对通讯信号的调控存在物种差异。

Proffitt, Melissa Renee; Liu, Xu; Ortlund, Eric A; Smith, G Troy

Electrocommunication signals and aggressive behavior vary among male morphs in an apteronotid fish, Compsaraia samueli

在一种无鳍鱼科鱼类——萨氏康氏鱼(Compsaraia samueli)中,雄性不同形态的个体之间的电通讯信号和攻击行为存在差异。

Freiler, Megan K; Proffitt, Melissa R; Smith, G Troy

Rapid evolution of a voltage-gated sodium channel gene in a lineage of electric fish leads to a persistent sodium current

电鱼谱系中电压门控钠通道基因的快速进化导致了持续性钠电流的产生。

Thompson, Ammon; Infield, Daniel T; Smith, Adam R; Smith, G Troy; Ahern, Christopher A; Zakon, Harold H

Chirping and asymmetric jamming avoidance responses in the electric fish Distocyclus conirostris

电鱼 Distocyclus conirostris 的鸣叫和非对称干扰规避反应

Petzold, Jacquelyn M; Alves-Gomes, José A; Smith, G Troy

Divergence in androgen sensitivity contributes to population differences in sexual dimorphism of electrocommunication behavior

雄激素敏感性的差异导致不同群体在电通讯行为的性二态性方面存在差异。

Ho, Winnie W; Rack, Jessie M; Smith, G Troy

Spinal transection induces widespread proliferation of cells along the length of the spinal cord in a weakly electric fish.

在弱电鱼中,脊髓横断会导致脊髓沿长度方向的细胞广泛增殖

Allen Antiño R, Smith G Troy