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Kazuhito Nakamura

Publications and source records attributed to Kazuhito Nakamura.

3 recordsLinked to original sources

[Traumatic panhypopituitarism: case report].

We describe a case of traumatic panhypopituitarism following head injury. Generally considered, posttraumatic hypopituitarism occurs in patients who have suffered from severe head injury. However there were a few case reports of panhypopituitarism due to mild and moderate head injury. A 51-year-old male presented with a history of blunt head injury caused by a concrete block hitting his head directly during work. On admission, initial Glasgow Coma Scale was 14. Open depressed skull fracture was suspected. Emergency craniectomy and debridement were performed. Ten days after surgery, hypothermia, lethargy and appetite loss were manifested. Endocrinological examination showed panhypopituitarism with diabetes insipidus. MRI revealed ruptured pituitary stalk and pituitary gland hemorrhage. Coronal and sagittal MRI was helpful for the diagnosis of traumatic panhypopituitarism. General condition was recovered by hormone replacement therapy. It is important for medical staff carefully to observe vital signs and clinical symptoms, even if mild brain injury. Pituitary function test should also be undergone, if panhypopituitarism was suspected from clinical condition.

Craniocerebral Trauma↗

[Clinical usefulness of multi-planar reconstruction images of three-dimensional computed tomographic angiography for internal carotid artery aneurysms].

The usefulness of multi-planar reconstruction (MPR) images of three-dimensional computed tomographic angiography (3D-CTA) for the diagnosis of internal carotid artery (ICA) aneurysms is described. Eleven unruptured ICA aneurysms including six cases of IC-cavernous aneurysm, two cases of IC-ophthalmic artery aneurysm, two cases of IC-posterior communicating artery aneurysm and one cases of IC-anterior choroidal artery aneurysm, were examined by magnetic resonance angiography (MRA), digital subtraction angiography (DSA), 3D-CTA and its MPR images. 3D-CTA and DSA were useful to identify the aneurysmal neck in small aneurysms, but it was difficult to identify the aneurysmal neck in small aneurysms by 3D-CTA-MPR images. DSA and MRA were not useful for identifying the aneurysmal neck in aneurysms more than 10 mm in diameter, as a precise viewing of the neck could not be found due to their large size. For large aneurysms, neither was 3D-CTA useful for identifying the aneurysmal neck when their large size and surrounding bony structures overlapped the aneurysmal neck. On the other hand, 3D-CTA-MPR was very useful for identifying the aneurysmal neck without overlapping by surrounding bony structures. 3D-CTA-MPR images clearly visualized the calcification of the wall. 3D-CTA-MPR images are obtained from 3D-CTA source images without any additional stress to the patients, and they are more useful for the diagnosis as well as demonstration of the aneurysmal neck particularly in more than large aneurysms.

Adolescent↗