Inferred network

R(Retina) → AD(Anterodorsal nucleus of the thalamus)
AD(Anterodorsal nucleus of the thalamus) → POST(Postsubiculum)
POST(Postsubiculum) → CA1(Field CA1)
CA1(Field CA1) → LHA(Lateral hypothalamic area)

Support information about direct projections from Retina to Anterodorsal nucleus of the thalamus:
Sending structure Receiving structureStrength of projection Type of connectionTechniqueGeneral descriptionCollatorAssociated reference
RetinaAnterodorsal nucleus of the thalamus existsnot knownCholera toxin conjugated to HRP
Case pg353-4. Soma notes 36 female Sprague-Dawley rats weighing 200-350g. 10 microliters of CT-HRP(.20%-.40%) were injected into one eye ?behind the lens into the vitreous chamber of the eye. pressure injection over 1 min. Terminal notes fibres can be seen in stria terminalis coursing rostrally from these more caudal levels. This pathway gives rise to the thalamic label reported earlier (anterior dorsal, anterior ventral thalamic nuc. and bed nuc. of the stria terminalis.).
Levine JD, Weiss ML, Rosenwasser AM, Miselis RR., 1991

Support information about direct projections from Anterodorsal nucleus of the thalamus to Postsubiculum:
Sending structure Receiving structureStrength of projection Type of connectionTechniqueGeneral descriptionCollatorAssociated reference
Anterodorsal nucleus of the thalamusPostsubiculum lightnot knownfluorescent tracers
Case pg171,3, fig5,7. Soma notes Subcortically, neurons were labeled ?in AD ?in anterior thalamic nuclei; labeled cells were present predominantly in rostral part of AD?--Figs5&7: dense-. Terminal notes Injections of retrogradely transported tracers in the postsubiculum (CF385)
van Groen T, Wyss JM., 1990
Anterodorsal nucleus of the thalamusPostsubiculum existsnot knownautoradiography
Case pg174, fig8. Soma notes Injs in AD nucleus (CIR14)
van Groen T, Wyss JM., 1990

Support information about direct projections from Postsubiculum to Field CA1:
Sending structure Receiving structureStrength of projection Type of connectionTechniqueGeneral descriptionCollatorAssociated reference
PostsubiculumField CA1 lightnot knownfluorescent tracers
Case pg171,3, fig5. Soma notes ipsilateral cortical label present in CA1?POST inj also labeled pyramidal layer neurons and a few non-pyramidal neurons in septal 1/3 of area CA1 & there were few contralaterally (compared to ipsi) labeled cells. --Fig5: sp/mod-. Terminal notes Injections of retrogradely transported tracers in the postsubiculum (CF385)
van Groen T, Wyss JM., 1990

Support information about direct projections from Field CA1 to Lateral hypothalamic area:
Sending structure Receiving structureStrength of projection Type of connectionTechniqueGeneral descriptionCollatorAssociated reference
Field CA1Lateral hypothalamic area moderatenot knownPHAL
The LHA receives the strongest field CA1 projection of any hypothalamic component. LHA medial regions receive a moderate projection of varicose fibers and terminal boutons from the rostral end of the LHA to about mid-rostrocaudal levels of the ventromedial nucleus, where the projection becomes considerably denser (Fig. 3D-G).
Cenquizca L.A & Swanson L.W., 2005
Field CA1Lateral hypothalamic area moderatenot knownPHAL
Rostroventrally, a tight group of PHAL-labeled fibers is observed in the ventromedial corner of the LHA anterior region’s ventral zone, and a few labeled fibers are also seen in the intermediate zone (Fig. 3D-F).
Cenquizca L.A & Swanson L.W., 2005
Field CA1Lateral hypothalamic area light/moderatenot knownPHAL
Rostrodorsally, a moderate plexus of varicose fibers with boutons occupies the LHA juxtaparaventricular region and an adjacent medial expanse of the anterior region’s dorsal zone, dorsal to the anterior hypothalamic nucleus (Fig. 3E,F).
Cenquizca L.A & Swanson L.W., 2005
Field CA1Lateral hypothalamic area moderatenot knownPHAL
At the level of the ventromedial nucleus, the terminal field becomes significantly denser (Fig. 3G). Here, the LHA’s juxtadorsomedial region, and dorsal and ventral zones of the juxtaventromedial region, all contain a moderately dense terminal field.
Cenquizca L.A & Swanson L.W., 2005