All terms in GO
| Label | Id | Description |
|---|---|---|
| superior olivary nucleus development | GO_0021718 | [The process whose specific outcome is the progression of the superior olivary nucleus over time, from its formation to the mature structure. In mice, the superior olivary nucleus is a small cylindrical mass on the dorsal surface of the lateral part of the trapezoid body of the pons, and it is situated immediately above the inferior olivary nucleus. It receives projections from the cochlear nucleus and thus is involved in the perception of sound.] |
| pons development | GO_0021548 | [The process whose specific outcome is the progression of the pons over time, from its formation to the mature structure. The pons lies above the medulla and next to the cerebellum. The pons conveys information about movement from the cerebral hemisphere to the cerebellum.] |
| superior olivary nucleus morphogenesis | GO_0021719 | [The process in which the anatomical structure of the superior olivary nucleus is generated and organized. In mice, the superior olivary nucleus is a small cylindrical mass on the dorsal surface of the lateral part of the trapezoid body of the pons, and it is situated immediately above the inferior olivary nucleus. It receives projections from the cochlear nucleus and thus is involved in the perception of sound.] |
| pons morphogenesis | GO_0021583 | [The process in which the anatomical structure of the pons is generated and organized. The pons lies above the medulla and next to the cerebellum. The pons conveys information about movement from the cerebral hemisphere to the cerebellum.] |
| candelabrum cell differentiation | GO_0021712 | [The process in which neuroblasts acquire specialized structural and/or functional features that characterize the mature candelabrum cell. Differentiation includes the processes involved in commitment of a neuroblast to a candelabrum cell fate. A candelabrum cell is an inhibitory GABAergic interneuron found in the cerebellar cortex.] |
| cell differentiation in hindbrain | GO_0021533 | [The process in which relatively unspecialized cells acquire specialized structural and/or functional features that characterize the mature cells of the hindbrain. Differentiation includes the processes involved in commitment of a cell to a specific fate.] |
| cerebellar Purkinje cell layer formation | GO_0021694 | [The process that gives rise to the cerebellar Purkinje cell layer. This process pertains to the initial formation of a structure from unspecified parts. The Purkinje cell layer lies just underneath the molecular layer of the cerebellar cortex. It contains the neuronal cell bodies of the Purkinje cells that are arranged side by side in a single layer. Candelabrum interneurons are vertically oriented between the Purkinje cells. Purkinje neurons are inhibitory and provide the output of the cerebellar cortex through axons that project into the white matter. Extensive dendritic trees from the Purkinje cells extend upward in a single plane into the molecular layer where they synapse with parallel fibers of granule cells.] |
| inferior olivary nucleus development | GO_0021713 | [The process whose specific outcome is the progression of the inferior olivary nucleus over time, from its formation to the mature structure. The inferior olivary nucleus is a capsule-shaped structure in the ventral medulla located just lateral and dorsal to the medullary pyramids. Neurons in the inferior olivary nucleus are the source of climbing fiber input to the cerebellar cortex; these neurons have been implicated in various functions, such as learning and timing of movements.] |
| medulla oblongata development | GO_0021550 | [The process whose specific outcome is the progression of the medulla oblongata over time, from its formation to the mature structure. The medulla oblongata lies directly above the spinal cord and controls vital autonomic functions such as digestion, breathing and the control of heart rate.] |
| cerebellar stellate cell differentiation | GO_0021710 | [The process in which neuroblasts acquire specialized structural and/or functional features that characterize the mature cerebellar stellate cell. Differentiation includes the processes involved in commitment of a neuroblast to a cerebellar stellate cell fate. A cerebellar stellate cell is an inhibitory GABAergic interneuron found in the cerebellar cortex.] |
| cerebellar molecular layer formation | GO_0021688 | [The process that gives rise to the cerebellar molecular layer. This process pertains to the initial formation of a structure from unspecified parts. The molecular layer is the outermost layer of the cerebellar cortex. It contains the parallel fibers of the granule cells, interneurons such as stellate and basket cells, and the dendrites of the underlying Purkinje cells.] |
| cerebellar unipolar brush cell differentiation | GO_0021711 | [The process in which neuroblasts acquire specialized structural and/or functional features that characterize the mature unipolar brush cell in the cerebellum. Differentiation includes the processes involved in commitment of a neuroblast to a unipolar brush cell fate. A unipolar brush cell is a glutamatergic interneuron found in the cerebellar cortex.] |
| cerebellar granular layer formation | GO_0021684 | [The process that gives rise to the cerebellar granule layer. This process pertains to the initial formation of a structure from unspecified parts. The granular layer is the innermost layer of the cerebellar cortex. This layer contains densely packed small neurons, mostly granule cells. Some Golgi cells are found at the outer border. Granule neurons send parallel fibers to the upper molecular layer, where they synapse with Purkinje cell dendrites. Mossy fibers from the pontine nuclei in the white matter synapse with granule cell axons, Golgi cell axons and unipolar brush interneuron axons at cerebellar glomeruli in the granule cell layer.] |
| inferior olivary nucleus structural organization | GO_0021716 | [The process that contributes to the act of creating the structural organization of the inferior olivary nucleus structure. The inferior olivary nucleus is a capsule-shaped structure in the ventral medulla located just lateral and dorsal to the medullary pyramids. Neurons in the inferior olivary nucleus are the source of climbing fiber input to the cerebellar cortex; these neurons have been implicated in various functions, such as learning and timing of movements.] |
| medulla oblongata structural organization | GO_0021581 | [The process that contributes to the act of creating the structural organization of the medulla oblongata. This process pertains to the physical shaping of a rudimentary structure. The medulla oblongata lies directly above the spinal cord and controls vital autonomic functions such as digestion, breathing and the control of heart rate.] |
| inferior olivary nucleus morphogenesis | GO_0021714 | [The process in which the anatomical structure of the inferior olivary nucleus is generated and organized. The inferior olivary nucleus is a capsule-shaped structure in the ventral medulla located just lateral and dorsal to the medullary pyramids. Neurons in the inferior olivary nucleus are the source of climbing fiber input to the cerebellar cortex; these neurons have been implicated in various functions, such as learning and timing of movements.] |
| inferior olivary nucleus maturation | GO_0021717 | [A developmental process, independent of morphogenetic (shape) change, that is required for the inferior olivary nucleus to attain its fully functional state. The inferior olivary nucleus is a capsule-shaped structure in the ventral medulla located just lateral and dorsal to the medullary pyramids. Neurons in the inferior olivary nucleus are the source of climbing fiber input to the cerebellar cortex; these neurons have been implicated in various functions, such as learning and timing of movements.] |
| medulla oblongata maturation | GO_0021582 | [A developmental process, independent of morphogenetic (shape) change, that is required for the medulla oblongata to attain its fully functional state. The medulla oblongata lies directly above the spinal cord and controls vital autonomic functions such as digestion, breathing and the control of heart rate.] |
| medulla oblongata morphogenesis | GO_0021579 | [The process in which the anatomical structure of the medulla oblongata is generated and organized. The medulla oblongata lies directly above the spinal cord and controls vital autonomic functions such as digestion, breathing and the control of heart rate.] |
| inferior olivary nucleus formation | GO_0021715 | [The process that gives rise to the inferior olivary nucleus. This process pertains to the initial formation of a structure from unspecified parts. The inferior olivary nucleus is a capsule-shaped structure in the ventral medulla located just lateral and dorsal to the medullary pyramids. Neurons in the inferior olivary nucleus are the source of climbing fiber input to the cerebellar cortex; these neurons have been implicated in various functions, such as learning and timing of movements.] |