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黑水虻(Hermetia illucens (L.),水虻科)头部位置的本体感受编码。

Proprioceptive encoding of head position in the black soldier fly, Hermetia illucens (L.) (Stratiomyidae).

作者信息

Paulk Angelique, Gilbert Cole

机构信息

Department of Entomology, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Exp Biol. 2006 Oct;209(Pt 19):3913-24. doi: 10.1242/jeb.02438.

Abstract

Because the eyes of insects cannot be moved independently of the head, information about head posture is essential for stabilizing the visual world or providing information about the direction of gaze. We examined the external anatomy and physiological capabilities of a head posture proprioceptor, the prosternal organ (PO), located at the base of the neck in the black soldier fly, Hermetia illucens (L.) (Family: Stratiomyidae). The PO is sexually isomorphic and is composed of two fused plates of about 130 mechanosensory hairs set in asymmetrical sockets whose orientation varies across the organ. A multi-joint mechanical coupling between the head, neck membrane, and contact sclerites deflects the hairs more or less to increase or decrease their level of excitation. The PO sensory afferents project to the central nervous system (CNS) via a pair of bilateral prosternal nerves (PN) to the fused thoracic ganglia. Simultaneous recording of spiking activity in the PN and videotaping of wind-induced and voluntary head movements around all three axes of head rotation reveal that a few PN afferents are active at rest, but activity increases tonically in response to head deflections. Activity is significantly modulated by change in head angles around the pitch (+/-40 degrees ), yaw (+/-30 degrees ) and roll (more than +/-90 degrees ) axes, although the dynamic range of spiking activity differs for each axis of rotation. Prosternal nerve afferents are bilaterally excited (inhibited) by pitch down (up); excited (inhibited) by head yaw toward the ipsilateral (contralateral) side; excited by roll down toward the ipsilateral side, but little inhibited by roll toward the opposite side. Although bilateral comparison of activity in PN afferents reliably encodes head posture around a given rotational axis, from the point of view of the CNS, the problem of encoding head posture is ill-posed with three axes of rotation and only two streams of afferent information. Furthermore, when the head is rotated around more than one axis simultaneously, mechanical interactions in the neck modify the responses to postural changes around the three rotational axes, which adds further ambiguity to reliable encoding of head posture. The properties of the PO in this relatively basal fly species are compared to those of higher flies and possible mechanisms of disambiguation are discussed.

摘要

由于昆虫的眼睛不能独立于头部移动,因此有关头部姿势的信息对于稳定视觉世界或提供注视方向的信息至关重要。我们研究了一种头部姿势本体感受器——位于黑水虻(Hermetia illucens (L.),科:水虻科)颈部基部的前胸器官(PO)——的外部解剖结构和生理功能。PO在性别上是同形的,由两块融合的板组成,上面有大约130根机械感觉毛,这些毛位于不对称的窝中,其方向在整个器官中各不相同。头部、颈部膜和接触骨片之间的多关节机械耦合或多或少地使毛发生偏斜,以增加或减少它们的兴奋水平。PO感觉传入神经通过一对双侧前胸神经(PN)投射到中枢神经系统(CNS),到达融合的胸神经节。同时记录PN中的尖峰活动,并对围绕头部旋转的所有三个轴的风致和自主头部运动进行录像,结果显示,一些PN传入神经在静止时活跃,但活动会随着头部偏转而呈紧张性增加。活动受到围绕俯仰(±40度)、偏航(±30度)和翻滚(超过±90度)轴的头部角度变化的显著调节,尽管每个旋转轴的尖峰活动动态范围不同。前胸神经传入神经在俯仰向下(向上)时双侧兴奋(抑制);在头部向同侧(对侧)偏航时兴奋(抑制);在向同侧翻滚向下时兴奋,但在向对侧翻滚时几乎不被抑制。尽管PN传入神经活动的双侧比较可靠地编码了围绕给定旋转轴的头部姿势,但从中枢神经系统的角度来看,由于有三个旋转轴且只有两束传入信息,编码头部姿势的问题是不适定的。此外,当头部同时围绕多个轴旋转时,颈部的机械相互作用会改变对围绕三个旋转轴的姿势变化的反应,这进一步增加了可靠编码头部姿势的模糊性。将这种相对原始的蝇类物种中PO的特性与高等蝇类的特性进行了比较,并讨论了可能的消除模糊性的机制。

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