Corticotrophin-Releasing Hormone neurons of Barrington’s nucleus: Probabilistic, spinally-gated control of bladder pressure and micturition
Ito, H.; Sales, A. C.; Fry, C. H.; Kanai, A. J.; Drake, M. J.; Pickering, A. E.
Show abstract
Micturition, the co-ordinated process of expulsion of urine from the bladder, requires precise control of bladder and urethral sphincter via parasympathetic, sympathetic and somatic motoneurons. In adult mammals this involves a spinobulbospinal control circuit incorporating Barringtons nucleus in the pons (Barr). The largest Barr cell population is comprised of pontospinal glutamatergic neurons that express corticotrophin-releasing hormone. There is evidence that BarrCRH neurons can generate bladder contractions but it is unknown whether they act as a simple switch or a high-fidelity pre-parasympathetic motor drive and whether their activation can actually trigger voids. Combined opto- and chemo-genetic manipulations along with recordings in mice shows that BarrCRH neurons provide a probabilistic drive that generates co-ordinated voids or non-voiding contractions depending on the phase of the micturition cycle. These findings inform a new inferential model of micturition and emphasise the importance of the state of the spinal gating circuit in the generation of voiding.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Astrocytic metabolic control of orexinergic activity in the lateral hypothalamus regulates sleep and wake architecture 92%
- Pre-ciliated tubal epithelial cells are prone to initiation of high-grade serous ovarian carcinoma 92%
- Astrocyte glucocorticoid receptors mediate sex-specific changes in activity following stress 92%
Similar papers in this journal
- Neuropeptide Y-expressing dorsal horn inhibitory interneurons gate spinal pain and itch signalling 93%
- POMC neurons control fertility through differential signaling of MC4R in Kisspeptin neurons 93%
- GIV/Girdin, a Non-receptor Modulator for Gαi/s, Regulates Spatiotemporal Signaling during Sperm Capacitation and is Required for Male Fertility 93%
Similar papers in this journal
- Widespread innervation of motoneurons by spinal V3 neurons globally amplifies locomotor output in mice. 93%
- Spinal microcircuits go through multiphasic homeostatic compensations in a mouse model of motoneuron degeneration 93%
- Spatial, transcriptomic and epigenomic analyses link dorsal horn neurons to chronic pain genetic predisposition 93%
Similar papers in this journal
- Episodic rhythmicity is generated by a distributed neural network in the developing mammalian spinal cord 93%
- A spatially-tracked single cell transcriptomics map of neuronal networks in the intrinsic cardiac nervous system 92%
- The encoding of interoceptive-based predictions by the paraventricular nucleus of the thalamus D2R+ neurons 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.