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| optic_chiasma [2021/11/06 15:01] – [Anatomy of The Optic Chiasm] andrewtaustin | optic_chiasma [2026/09/03 16:10] (current) – Tag line moved to the foot of the page so it no longer starts the meta description andrewtaustin | ||
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| - | ==== The Optic Chiasma | + | ====== The Optic Chiasm ====== |
| - | The optic chiasm is an X-shaped structure created through the crossing of the brain' | + | The optic chiasm[(Optic_chiasm> |
| - | ==== Anatomy of The Optic Chiasm ==== | + | ===== Anatomy of the Optic Chiasm ===== |
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| + | Nerve fibres from half of each retina at the optic chiasm cross over to the brain' | ||
| - | {{: | + | The optic chiasm |
| - | The optic chiasm stretches at the level of the caudal border of the suprachiasmatic nucleus from the ventral surface of the caudal portion of the pre-optic area to the hypothalamus. The optic chiasm straddles the suprachiasmatic | + | The optic tract passes |
| - | The optical | + | In addition, the optic tract lies medial |
| - | Besides, the optic tract lies medially between the lateral hypothalamus and the cerebral peduncle, | + | ===== Vision |
| - | ==== Vision and The Optic Chiasm ==== | + | Ganglion cell axons converge on the retinal region called the papilla or optic disc. They leave the globe as the optic nerve, where they maintain an orderly arrangement in the sense that fibres from the retina' |
| - | Ganglion cell axons converge on the retina region called the papilla or optic disk. They leave the globe as the optic nerve in which they maintain | + | Vision has been proposed as a mechanism for controlling movement at a distance. The human visual system has an unusually high proportion |
| - | Vision was proposed as a mechanism for controlling distal motions. | + | ===== The Function |
| - | ==== The Function | + | The optic chiasm plays a crucial role in the retinotopic representation |
| - | The optic chiasm plays a crucial role in visual input information retinotopic depiction and is situated above the pituitary gland, anterior to the pituitary stalk, and inferior to the hypothalamus. At optic chiasm stage, it is estimated that 53% of optic nerve axons, predominantly nasal hemiretine, decuse to join the strands of the contralateral temporal hemiretine forming the optic tract. This decussation is intended to combine visual input data from two halves of each retina receiving light from the same part of the visual field. | + | ===== Chiasmal Syndromes ===== |
| - | ==== Pituitary Adenoma and The Optic Chiasm ==== | + | Chiasmal syndromes are caused by lesions or abnormalities of the optic chiasm that can severely impair vision or even cause blindness. |
| - | A pituitary adenoma is the most prevalent disease affecting the optic chiasm. Pituitary adenomas are benign tumours. They do not affect at all in most cases, but in some instances, they may influence vision, sometimes causing vision loss. As pituitary adenomas grow in size, they can put pressure on essential structures in the body, such as the optic nerve. Pressing the optic nerve can cause blindness, so eye doctors must detect pituitary tumours before vision damage is caused. | + | Chiasmal syndrome |
| - | The pituitary gland is about a bean's size and is tied behind the nasal region to the base of the brain. It lies under the optic chiasm. The pituitary, though small, regulates the secretion | + | Extrinsic causes include compression |
| - | ==== Optic Chiasm and Common Diseases ==== | + | Chiasma thickening is one of the intrinsic causes. Gliomas and multiple sclerosis are the most common intrinsic aetiologies of chiasmal syndrome. |
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| + | ===== Pituitary Adenoma and the Optic Chiasm ===== | ||
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| + | A pituitary adenoma is the most prevalent disease affecting the optic chiasm. Pituitary adenomas are benign tumours. They cause no symptoms in many cases, but in some instances, they may influence vision, sometimes causing vision loss. As pituitary adenomas grow in size, they can put pressure on essential structures in the body, such as the optic nerve. Pressing the optic nerve can cause blindness, so eye-care professionals must detect pituitary tumours before vision damage is caused. | ||
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| + | The pituitary gland is about the size of a bean and is located behind the nasal region at the base of the brain. It lies under the optic chiasm. The pituitary, though small, regulates the secretion of many different hormone types. It helps to keep growth and development and controls a range of glands, organs, and hormones. Hormone changes can trigger significant changes in our bodies. | ||
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| + | ===== Optic Chiasm and Common Diseases ===== | ||
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| + | When an illness or lesion affects the optic nerve before it reaches the optic chiasm in the brain, the vision defect appears in one eye only and can affect the entire visual field of that eye. Sometimes people with a unilateral defect do not realise it until one eye is covered. This is because each eye's overlapping visual fields will mask the deficiency when both eyes are open. If a disease affects the optic tract after the chiasm, the person will have a visual defect in both eyes affecting the same half of the visual field. | ||
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| - | When an illness or lesion affects the optic nerve before it hits the optic chiasm in the brain, the vision defect appears in one eye only and can change the whole field of the eye. Sometimes people who have a single defect do not realise it until one eye is covered. This is because each eye's overlapping visual fields will mask the deficiency when both eyes are open. If the disease affects the optic tract after the chiasm, in both eyes, the person will have a vision defect, but the defect will alter the same visual field half. | ||