mormyrid fish
電鰩魚
mormyrid electric organ
電鰩電器官
mormyrid brain
電鰩腦部
large mormyrid
大型電鰩
small mormyrid
小型電鰩
mormyrid species
電鰩物種
mormyrid discharge
電鰩放電
the mormyridae
電鰩科
african mormyrid
非洲電鰩
mormyrid signal
電鰩信號
mormyrid fish possess specialized electric organs that generate weak discharges for communication and navigation.
電鰩魚擁有專門的電器官,用以產生微弱的放電,用於溝通和導航。
researchers have long studied mormyrid electroreception to understand how these fish perceive their environment.
研究人員早已研究電鰩魚的電感受能力,以了解這些魚是如何感知其環境的。
the mormyrid brain contains unique structures that process electric signals with remarkable precision.
電鰩魚的腦部含有獨特的結構,能以驚人的精準度處理電信號。
male mormyrid fish produce distinct electric pulse patterns during courtship behavior.
雄性電鰩魚在求偶行為中會產生獨特的電脈衝模式。
scientists discovered that mormyrid species can recognize individual conspecifics by their electric signatures.
科學家發現電鰩魚物種能夠透過電信號來辨識同種個體。
the mormyrid electric organ evolved from muscle tissue over millions of years of adaptation.
電鰩魚的電器官經過數百萬年的適應進化,從肌肉組織演化而來。
neuroscientists use mormyrid models to investigate how neural circuits generate complex behaviors.
神經科學家利用電鰩魚模型來研究神經電路如何產生複雜的行為。
mormyrid electroreceptors are located in the skin and detect minute changes in water conductivity.
電鰩魚的電感受器位於皮膚中,能偵測水中導電性的微小變化。
the mormyrid electrosensory system filters out self-generated electric signals to detect external objects.
電鰩魚的電感受系統會過濾掉自身產生的電信號,以偵測外部物體。
aquarium studies reveal that mormyrid fish alter their electric discharge frequency when exploring novel environments.
水族館的研究顯示,當電鰩魚探索新環境時,會改變其電放電的頻率。
comparative anatomy shows that mormyrid species have larger cerebellums relative to other fish.
比較解剖學顯示,電鰩魚物種的小腦相較於其他魚類來說更大。
mormyrid research has provided valuable insights into the evolution of bioelectric communication systems.
電鰩魚的研究為生物電溝通系統的演化提供了寶貴的見解。
mormyrid fish
電鰩魚
mormyrid electric organ
電鰩電器官
mormyrid brain
電鰩腦部
large mormyrid
大型電鰩
small mormyrid
小型電鰩
mormyrid species
電鰩物種
mormyrid discharge
電鰩放電
the mormyridae
電鰩科
african mormyrid
非洲電鰩
mormyrid signal
電鰩信號
mormyrid fish possess specialized electric organs that generate weak discharges for communication and navigation.
電鰩魚擁有專門的電器官,用以產生微弱的放電,用於溝通和導航。
researchers have long studied mormyrid electroreception to understand how these fish perceive their environment.
研究人員早已研究電鰩魚的電感受能力,以了解這些魚是如何感知其環境的。
the mormyrid brain contains unique structures that process electric signals with remarkable precision.
電鰩魚的腦部含有獨特的結構,能以驚人的精準度處理電信號。
male mormyrid fish produce distinct electric pulse patterns during courtship behavior.
雄性電鰩魚在求偶行為中會產生獨特的電脈衝模式。
scientists discovered that mormyrid species can recognize individual conspecifics by their electric signatures.
科學家發現電鰩魚物種能夠透過電信號來辨識同種個體。
the mormyrid electric organ evolved from muscle tissue over millions of years of adaptation.
電鰩魚的電器官經過數百萬年的適應進化,從肌肉組織演化而來。
neuroscientists use mormyrid models to investigate how neural circuits generate complex behaviors.
神經科學家利用電鰩魚模型來研究神經電路如何產生複雜的行為。
mormyrid electroreceptors are located in the skin and detect minute changes in water conductivity.
電鰩魚的電感受器位於皮膚中,能偵測水中導電性的微小變化。
the mormyrid electrosensory system filters out self-generated electric signals to detect external objects.
電鰩魚的電感受系統會過濾掉自身產生的電信號,以偵測外部物體。
aquarium studies reveal that mormyrid fish alter their electric discharge frequency when exploring novel environments.
水族館的研究顯示,當電鰩魚探索新環境時,會改變其電放電的頻率。
comparative anatomy shows that mormyrid species have larger cerebellums relative to other fish.
比較解剖學顯示,電鰩魚物種的小腦相較於其他魚類來說更大。
mormyrid research has provided valuable insights into the evolution of bioelectric communication systems.
電鰩魚的研究為生物電溝通系統的演化提供了寶貴的見解。
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