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1. The Double Insult of Neonatal Cystitis Plus Adult Somatic Inflammation Results in Corticotropin Releasing Factor Type II Receptor-Dependent Bladder Hypersensitivity in Female Rats.

2. Neonatal cystitis leads to alterations in spinal corticotropin releasing factor receptor-type 2 content and function in adult rats following bladder re-inflammation.

3. Neonatal cystitis alters mechanisms of stress-induced visceral hypersensitivity in rats.

4. Medications used to treat bladder disorders may alter effects of neuromodulation.

5. Neonatal bladder inflammation alters the role of the central amygdala in hypersensitivity produced by Acute Footshock stress in adult female rats.

6. Early-in-life bladder inflammation alters U50,488H but not morphine-induced inhibition of visceromotor responses to urinary bladder distension.

7. Early in life bladder inflammation alters opioid peptide content in the spinal cord and bladder of adult female rats.

8. Effects of acute adult and early-in-life bladder inflammation on bladder neuropeptides in adult female rats.

9. Neonatal bladder inflammation alters activity of adult rat spinal visceral nociceptive neurons.

10. Neonatal bladder inflammation produces functional changes and alters neuropeptide content in bladders of adult female rats.

11. Acute bladder inflammation differentially affects rat spinal visceral nociceptive neurons.

12. Ice water testing reveals hypersensitivity in adult rats that experienced neonatal bladder inflammation: implications for painful bladder syndrome/interstitial cystitis.

13. Neonatal urinary bladder inflammation produces adult bladder hypersensitivity.

14. Inflammation and enhanced nociceptive responses to bladder distension produced by intravesical zymosan in the rat.

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