
Definition of the medial terminal nucleus. Nature 324:457–459Ĭooper HM, Baleydier C, Magnin M (1990) Accessory optic system. J Neurophysiol 89:3168–3178Ĭooper HM, Magnin M (1986) A common mammalian plan of accessory optic system organization revealed in all primates. Vis Neurosci 2:269–273Ĭlarke RJ, Zhang H, Gamlin PDR (2003) Primate pupillary light reflex: receptive field characteristics of pretectal luminance neurons. Exp Brain Res 59:83–90Ĭlarke RJ, Giolli RA, Blanks RHI, Torigoe Y, Fallon JH (1989) Neurons of the medial terminal accessory optic nucleus of the rat are poorly collateralized. Exp Brain Res 57:224–232Ĭlarke RJ, Ikeda H (1985b) Luminance detectors in the olivary pretectal nucleus and their relationship to the pupillary light reflex in the rat, II. Dr W Junk Publishers, The Hague, pp 53–61Ĭlarke RJ, Ikeda H (1985a) Luminance and darkness detectors in the olivary and posterior pretectal nuclei and their relationship to the pupillary light reflex in the rat.

In: Maffei L (ed) Pathophysiology of the visual system. Plenum Press, pp 149–159Ĭlarke RJ, Ikeda H (1981) Pupillary response and luminance and darkness detector neurons in the pretectum of the rat. In: Robbins, Djamgoz, Taylor (eds) Basic and clinical perspectives in vision research. Eur J Neurosci 7:2053–2063Ĭlarke RJ, Gamlin PDR (1995) The role of the pretectum in the pupillary light reflex. J Hirnforsch 33:151–167Ĭhan KMC, Young MJ, Lund RD (1995) Interactive events subserving the pupillary light reflex in pigmented and albino rats. J Comp Neurol 149:271–300Ĭarpenter MB, Periera AB, Guha N (1992) Immunocytochemistry of oculomotor afferents in the squirrel monkey ( Saimiri sciureus). J Comp Neurol 366:348–359Ĭarpenter MB, Pierson RJ (1973) Pretectal region and the pupillary light reflex. Neurosci Lett 26:233–238īuttner-Ennever JA, Cohen B, Horn AKE, Reisine H (1996) Pretectal projections to the oculomotor complex of the monkey and their role in eye movements. Brain Res 261:303–306īuttner-Ennever JA, Grob P, Akert K, Bizzini B (1981) Transsynaptic retrograde labeling in the oculomotor system of the monkey with tetanus toxin BIIb fragment. J Comp Neurol 354:511–532īreen LA, Burde RM, Loewy AD (1983) Brainstem connections to the Edinger–Westphal nucleus of the cat: a retrograde tracer study. J Comp Neurol 174:227–254īlanks RHI, Clarke RJ, Lui F, Giolli RA, Van Pham S, Torigoe Y (1995) Projections of the lateral terminal accessory optic nucleus of the common marmoset ( Callithrix jacchus). Brain Res 127:197–218īerman N (1977) Connections of the pretectum in the cat. J Comp Neurol 302:405–416īenevento LA, Rezak M, Santos-Anderson R (1977) An autoradiographic study of the projections of the pretectum in the rhesus monkey ( Macaca mulatta): evidence for sensorimotor links to the thalamus and oculomotor nuclei. This, combined with our earlier observation that LTN neurons project to the EW nucleus in the marmoset (see main text for reference), lends support to the presence of separate direct and indirect pupillary light reflex pathways from the PON to the nucleus of EW.īaleydier C, Magnin M, Cooper HM (1990) Macaque accessory optic system: II. Additionally, the study shows the presence of a separate population of PON neurons projecting to the contralateral LTN. These findings show that a large number of PON neurons project directly to the oculomotor complex. The ipsilateral PON was devoid of FB-labeled somata, whereas the adjacent nucleus of the optic tract (NOT) contained FB-labeled cells. LTN injections led to labeling of a population of singly-labeled cells seen dispersed through the larger population of FG-labeled somata within the contralateral PON. EW nucleus injections resulted in retrograde labeling of significant numbers of FG-positive neurons of the PON as well as a small number of cells in the LTN. The fluorescent retrograde tracers Fluoro-Gold (FG) and Fast Blue (FB) were injected into the Edinger-Westphal (EW) nucleus and the lateral terminal nucleus (LTN), respectively. Adie syndrome.Midbrain projections of the pretectal olivary nucleus (PON) were studied in the marmoset, a New World primate. National Organization for Rare Disorders.

Parasympathetic innervation to the head and neck. Overview of the anatomy, physiology, and pharmacology of the autonomic nervous system. Anatomical variations of the ciliary ganglion with an emphasis on the location in the orbit.

Walsh and Hoyt's clinical neuro-ophthalmology, 6th ed. Lippincott Williams & Wilkins 2005:673-674. Kardon R. Chapter 14: Anatomy and physiology of the autonomic nervous system. In: Miller NR, Newman NJ, Biousse V, Kerrison JB, eds. Anatomical study of the roots of cranial parasympathetic ganglia: a contribution to medical education. Lovasova K, Sulla IJ, Bolekova A, Sulla I, Kluchova D.
