变化无常
发表于 2025-3-30 10:21:09
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macular-edema
发表于 2025-3-30 14:43:43
978-3-540-08455-6Springer-Verlag Berlin · Heidelberg 1977
CHAFE
发表于 2025-3-30 16:38:50
Light-Microscopic and Electron-Microscopic Studies on the Morphology of Cat Carotid Body and electron-microscopic studies. Combined with physiological and biochemical values, these data could increase understanding of the structure and function of the carotid body, especially as regards its oxygen consumption.
流眼泪
发表于 2025-3-30 21:39:31
Origin of Nerve Terminals on Glomus Cells in Cat Carotid Body: A Study of Axoplasmic Movement of Lab has been the object of renewed interest and speculation. De Castro concluded that sensory fibers in the cat carotid nerve terminate on glomus (type I) cells in the carotid body, because he observed that such nerve endings were unaltered following intracranial Sect, of the glossopharyngeal (IXth) ne
险代理人
发表于 2025-3-31 04:54:02
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Forsake
发表于 2025-3-31 05:52:52
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捏造
发表于 2025-3-31 09:40:46
Chemoreceptor Activity in the Rabbit Carotid Sinus Nerve During Regenerationrminals within the carotid body occurred after 7-8 weeks. After 4 weeks the first axon sprouts reappeared in the vicinity of the type I cells, and 1 week later the first contacts were formed between nerve endings and the so-called specific cells. This slow rate of regeneration has enabled us to stud
malign
发表于 2025-3-31 15:58:11
Recovery of Chemosensory Function of Regenerating Carotid Nerve Fibersors (such as carotid body chemoreceptors), stimuli must depolarize the sensory endings. Although hypoxia can depolarize nerve membranes (8), hypercapnia has the opposite effect (9). Furthermore, high acidity is required to alter nerve membrane potentials (15) or the generation of baroreceptor impuls
歹徒
发表于 2025-3-31 20:38:51
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myalgia
发表于 2025-4-1 01:40:30
Fine Structure of Pressoreceptor Terminals in the Carotid Body (Mouse, Cat, Rat)hods. The arborized endings were found to originate from myelinated axons, forming widerspread reticulated and flattened terminations in the adventitial layers of small arteries. This paper presents electron-microscopic findings on the fine structure of these sensory endings.