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磁共振T1加权像上垂体柄增亮:神经分泌颗粒的潴留现象。

Bright pituitary stalk on MR T1-weighted image: damming up phenomenon of the neurosecretory granules.

作者信息

Fujisawa Ichiro, Uokawa Kyosuke, Horii Naotoshi, Murakami Norihiko, Azuma Nobuyuki, Furuto-Kato Sumiko, Yamashita Kohsuke, Nakao Satoshi, Kageyama Naoki

机构信息

Department of Radiology, Kishiwada City Hospital, Japan.

出版信息

Endocr J. 2002 Apr;49(2):165-73. doi: 10.1507/endocrj.49.165.

Abstract

Characteristic findings of the pituitary stalk on magnetic resonance (MR) imaging, which suggest a damming-up phenomenon of neurosecretory granules, were reported. Neurosecretory granules containing vasopressin influence the signal intensity on MR T1-weighted image (T1WI). The normal posterior lobe of the pituitary gland appears as a bright signal on T1WI. The bright signal of the posterior lobe represents the normal content of neurosecretory granules and disappears in patients with central diabetes insipidus. The normal pituitary stalk appears as a low-intermediate intensity signal on sagittal and coronal T1WIs with 3 mm-slice thickness. The pituitary stalk appeared as a bright signal in 20 patients; 13 with pituitary adenoma, 4 with an intrasellar cystic lesion, one with cavernous sinus mass, and 2 with no abnormal MR findings. The pituitary stalk was not severed in any of the cases. The normal bright signal of the posterior lobe disappeared in 17 patients. No patients suffered from symptoms of central diabetes insipidus when the bright pituitary stalk appeared. It is suggested that the origin of the bright signal in the pituitary stalk is the damming up and accumulation of neurosecretory granules in the nerve fibers of the hypothalamohypophyseal tract obstructed by adenoma, postoperative scarring, cystic mass and so on. Probably, the damming-up phenomenon on MR imaging represents the functional integrity of the hypothalamo-neurohypophyseal system, and should be distinguished from an ectopic posterior lobe formation which is caused by stalk transection.

摘要

有报告称,磁共振成像(MR)显示垂体柄有特征性表现,提示神经分泌颗粒存在淤滞现象。含血管加压素的神经分泌颗粒会影响MR T1加权像(T1WI)上的信号强度。垂体后叶在T1WI上表现为高信号。后叶的高信号代表神经分泌颗粒的正常含量,在中枢性尿崩症患者中消失。正常垂体柄在层厚3mm的矢状位和冠状位T1WI上表现为低-中等强度信号。20例患者的垂体柄表现为高信号;其中13例患有垂体腺瘤,4例患有鞍内囊性病变,1例患有海绵窦肿块,2例MR检查无异常发现。所有病例的垂体柄均未中断。17例患者垂体后叶的正常高信号消失。垂体柄出现高信号时,无患者出现中枢性尿崩症症状。提示垂体柄高信号的来源是下丘脑-垂体束神经纤维中神经分泌颗粒因腺瘤、术后瘢痕、囊性肿块等受阻而淤滞和积聚。MR成像上的淤滞现象可能代表下丘脑-神经垂体系统的功能完整性,应与因垂体柄横断导致的异位后叶形成相鉴别。

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