Arid
DOI10.1002/jemt.1070220406
FINE-STRUCTURE OF OLFACTORY SENSILLA IN MYRIAPODS AND ARACHNIDS
TICHY, H; BARTH, FG
通讯作者TICHY, H
来源期刊MICROSCOPY RESEARCH AND TECHNIQUE
ISSN1059-910X
EISSN1097-0029
出版年1992
卷号22期号:4页码:372-391
英文摘要

Structural features of various types of olfactory sensilla are reviewed. 1) Sensilla basiconica which differ in form and size are found on the antennae of centipedes and millipedes. Their walls show longitudinal slits or grooves that either open into the sensillum lumen or do not penetrate the cuticle. In other such sensilla the outer surface is pierced by pores and the inner surface grooved and pocketed. These sensilla are innervated by one to six sensory cells. Their unbranched outer dendritic segments extend to the tip of the sensillum. The sensory cells are surrounded by two or three sheath cells which terminate at the sensillum base or form a continuous tube around the entire length of the outer dendritic segments. 2) Temporal organs of centipides are located between the insertion of the antenna and the ocelli. These sensilla consist of a shallow cuticular ring with a central sensory plate made up by a layer of unperforated cuticle or a capsule with a mushroom-shaped structure inside formed by fibrous-looking cuticle. A dozen sensory cells with unbranched outer dendritic segments innervate each sensillum. They extend toward the sensory cuticle and pass just below it. Numerous sheath cell processes run parallel to the outer dendritic segments up to the sensory cuticle. 3) Thread-like flagella of Pauropoda are found on the antennae. They possess a flexible unperforated cuticular wall. These sensilla contain nine sensory cells surrounded by several sheath cells which form a continuous cytoplasmic tube around the outer dendritic segments. 4) Single-walled sensilla with numerous plugged pores penetrating the cuticular wall occur on the tarsus of the first leg in ticks. Each sensillum is innervated by 4-15 sensory cells. Three sheath cells terminate in the base of the sensillum. 5) Double-walled sensilla with spoke canals are found on the first tarsus of ticks. Their shaft is longitudinally grooved. Pore canals lead inward from the bottom of the grooves and open into vase-shaped chambers. From its base these canals extend into the lumen of the sensillum which contains unbranched outer dendritic segments of 1-2 sensory cells. 6) Single-walled sensilla with pore openings occur on the distal tarsal segments of the first leg of whip spiders. These sensilla are innervated by 40-45 sensory cells. Their unbranched outer dendritic segments fill the shaft lumen and extend partly into the wall pores. Microvillus-shaped sheath cell processes line the inner surface of the cuticular wall. 7) Tarsal organs are located dorsally on the tarsus of all legs and pedipalps of spiders. These sensory organs consist of a cuticular capsule with a dome-shaped projection inside. It is situated on the proximal sidewall of the capsule and possesses 7 pore canals that enclose the dendritic tips of 2-3 sensory cells, giving a total of 20 sensory cells. Each group of dendrites terminating in an individual pore canal is encased by 2 sheath cells.


英文关键词OLFACTORY CHEMORECEPTORS ELECTRON MICROSCOPY WALL STRUCTURES SHEATH CELLS DENDRITES
类型Article
语种英语
收录类别SCI-E
WOS记录号WOS:A1992JL95400005
WOS关键词JAPANESE HOUSE CENTIPEDE ; DESERT BURROWING COCKROACH ; THEREUONEMA-HILGENDORFI ; TEMPORAL ORGAN ; THERMORECEPTIVE SENSILLUM ; PERIPLANETA-AMERICANA ; CHELICERAL SENSILLAE ; HYALOMMA-ASIATICUM ; SENSORY ORGANS ; PORE SENSILLA
WOS类目Anatomy & Morphology ; Biology ; Microscopy
WOS研究方向Anatomy & Morphology ; Life Sciences & Biomedicine - Other Topics ; Microscopy
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/128063
推荐引用方式
GB/T 7714
TICHY, H,BARTH, FG. FINE-STRUCTURE OF OLFACTORY SENSILLA IN MYRIAPODS AND ARACHNIDS[J],1992,22(4):372-391.
APA TICHY, H,&BARTH, FG.(1992).FINE-STRUCTURE OF OLFACTORY SENSILLA IN MYRIAPODS AND ARACHNIDS.MICROSCOPY RESEARCH AND TECHNIQUE,22(4),372-391.
MLA TICHY, H,et al."FINE-STRUCTURE OF OLFACTORY SENSILLA IN MYRIAPODS AND ARACHNIDS".MICROSCOPY RESEARCH AND TECHNIQUE 22.4(1992):372-391.
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