Choroidal Circulatory Disturbance in Ocular Sarcoidosis Without the Appearance of Retinal Lesions or Loss of Visual Function
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概要
- 論文の詳細を見る
- 2004-07-01
著者
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Machida Shigeki
岩手医科大学 医学部眼科学
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Machida Shigeki
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Machida Shigeki
Department Of Ophthalmology School Of Medicine Iwate Medical University
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TAZAWA Yutaka
Department of Ophthalmology, Iwate Medical University School of Medicine
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MURAI Ken-ichi
Department of Ophthalmology, Iwate Medical University School of Medicine
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TANAKA Michiko
Department of Ophthalmology, Iwate Medical University School of Medicine
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Tanaka M
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Tazawa Y
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Tazawa Yutaka
Department Of Ophthalmology Iwate Medical University School Of Medicine
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MURAI Kenichi
Department of Ophthalmology, Iwate Medical University School of Medicine
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TAKAHASHI Tomomi
Department of Ophthalmology, Iwate Medical University School of Medicine
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Murai Ken-ichi
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Takahashi T
Iwate Medical Univ. School Of Medicine Iwate Jpn
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Takahashi Tomomi
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Tanaka Michiko
Department Of Ophthalmology Iwate Medical University School Of Medicine
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Tanaka Michiko
Department Of Cell Regulation Medical Research Institute Tokyo Medical And Dental University
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Murai Kenichi
Department Of Ophthalmology Iwate Medical University School Of Medicine
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- 多局所網膜電図s波による黄斑円孔術後の網膜内層機能の評価
- Choroidal Circulatory Disturbance in Ocular Sarcoidosis Without the Appearance of Retinal Lesions or Loss of Visual Function
- Predominant Loss of Rod-Mediated Electroretinogram Response in a Case of Acute Annular Outer Retinopathy
- Clinical investigation: Photopic negative response of full-field and focal macular electroretinograms in patients with optic nerve atrophy
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- Ab Initio Calculation of Capacitance of Semi-Infinite Jellium Electrodes with a Nanoscale Gap
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