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1. Direct projections from the sacral spinal cord to the medial preoptic area in cat and guinea pig

2. Neurons in the guinea pig (Cavia porcellus) lateral lumbosacral spinal cord project to the central part of the lateral periaqueductal gray matter

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3. Infralimbic cortex projects to all parts of the pontine and medullary lateral tegmental field in cat

4. Segmental and laminar organization of the spinothalamic neurons in cat

5. Two parts of the nucleus prepositus hypoglossi project to two different subdivisions of the dorsolateral periaqueductal gray in cat

6. C1–C3 spinal cord projections to periaqueductal gray and thalamus: A quantitative retrograde tracing study in cat

7. Less than 15% of the spinothalamic fibers originate from neurons in lamina I in cat

8. How mainly spinothalamic tract cells are there? A retrograde tracing study in cat

9. Nucleus retroambiguus projections to the periaqueductal gray in the cat

11. The parabrachial nucleus is a critical link in the transmission of short latency nociceptive information to midbrain dopaminergic neurons

12. The ventrolateral upper cervical cell group in cat projects to all rostrocaudal levels of the periaqueductal gray matter

13. Periparabigeminal and adjoining mesencephalic tegmental field projections to the dorsolateral periaqueductal grey in cat - a possible role for oculomotor input in the defensive system

14. In cat four times as many lamina I neurons project to the parabrachial nuclei and twice as many to the periaqueductal gray as to the thalamus

15. Direct projections from the nucleus retroambiguus to cricothyroid motoneurons in the cat

16. Lamina I-periaqueductal gray (PAG) projections represent only a limited part of the total spinal and caudal medullary input to the PAG in the cat

17. Lateral cervical nucleus projections to periaqueductal gray matter in cat.