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2.15 Optic nerve (22)

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84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Hao J
Clinical and Experimental Ophthalmology 2020; 48: 212-219
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Demer JL
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Guazzaroni M
Clinical imaging 2020; 61: 106-114
84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Pircher A
Clinical and Experimental Ophthalmology 2020; 48: 212-219
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Ferrari D
Clinical imaging 2020; 61: 106-114
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Clark RA
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Lamacchia F
Clinical imaging 2020; 61: 106-114
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Suh SY
Current Eye Research 2020; 45: 199-210
84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Miller NR; Hsieh J
Clinical and Experimental Ophthalmology 2020; 48: 212-219
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Giaconi JA
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Salimei F; Marsico S
Clinical imaging 2020; 61: 106-114
84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Remonda L
Clinical and Experimental Ophthalmology 2020; 48: 212-219
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Nouri-Mahdavi K
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Citraro D
Clinical imaging 2020; 61: 106-114
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Law SK
Current Eye Research 2020; 45: 199-210
84433 Cerebrospinal fluid and optic nerve sheath compartment syndrome: A common pathophysiological mechanism in five different cases?
Killer HE
Clinical and Experimental Ophthalmology 2020; 48: 212-219
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Bonelli L
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Campagnuolo T
Clinical imaging 2020; 61: 106-114
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Coleman AL
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Girardi V
Clinical imaging 2020; 61: 106-114
84276 Optic Nerve Traction During Adduction in Open Angle Glaucoma with Normal versus Elevated Intraocular Pressure
Caprioli J
Current Eye Research 2020; 45: 199-210
85103 Biomechanical properties of optic nerve and retrobulbar structures with 2D and 3D shear wave elastography in patients affected by glaucoma
Orlacchio A
Clinical imaging 2020; 61: 106-114

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