Author Index
Abad, N., see Darkazalli, A. (3) 433–441
Abdel-Haleem, A., see Khedr, E.M. (6) 897–905
Abdellaoui, M., see Palm, U. (2) 189–199
Abe, K., see Kawakami, M. (5) 789–797
Aceto, M.G., see Spina, E. (5) 869–876
Acosta, S., see Song, S. (3) 415–431
Aglioti, S.M., see Fusco, G. (5) 815–826
Al-Ani, T., see Palm, U. (2) 189–199
Ali, A.M., see Khedr, E.M. (6) 897–905
Allen, R.S., I. Sayeed, Y. Oumarbaeva, K.C. Morrison, P.H. Choi, M.T. Pardue and D.G. Stein, Progesterone treatment shows greater protection in brain vs. retina in a rat model of middle cerebral artery occlusion: Progesterone receptor levels may play an important role (6) 947–963
Alonso-Alonso, M., see Bashir, S. (4) 677–689
Alsop, D.C., see Zheng, X. (4) 519–530
Altenmüller, E., see van Vugt, F.T. (2) 297–311
Altenmüller, E.O., see Cheng, F.P.-H. (1) 55–65
Alves, J., see Paiva, S. (1) 139–152
Amedi, A., see Buchs, G. (1) 97–105
Anghel, A., see Elena Sandu, R. (3) 401–414
Anghinah, R., see Simis, M. (1) 45–54
Arace, F., see Spina, E. (5) 869–876
Arcolin, I., F. Pisano, C. Delconte, M. Godi, M. Schieppati, A. Mezzani, D. Picco, M. Grasso and A. Nardone, Intensive cycle ergometer training improves gait speed and endurance in patients with Parkinson’s disease: A comparison with treadmill training (1) 125–138
Arcolin, I., F. Pisano, C. Delconte, M. Godi, M. Schieppati, A. Mezzani, D. Picco, M. Grasso and A. Nardone, Reply to Commentary by Miguel Fernández-del-Olmo on “Intensive cycle ergometer training improves gait speed and endurance in patients with Parkinson’s disease: A comparison with treadmill training” by Arcolin et al., 2016 (5) 693–695
Aschenbach, J., see Platz, T. (2) 271–285
Ayache, S.S., see Palm, U. (2) 189–199
Backhaus, W., S. Kempe and F.C. Hummel, The effect of sleep on motor learning in the aging and stroke population – a systematic review (1) 153–164
Badet, L., see Huchon, L. (4) 615–633
Badran, B., see Kalaani, J. (6) 877–895
Badry, R., see Khedr, E.M. (6) 897–905
Balan, O., see Kristjánsson, Á. (5) 769–787
Barone, N., see Fusco, G. (5) 815–826
Bashir, S., M. Vernet, U. Najib, J. Perez, M. Alonso-Alonso, M. Knobel, W.-K. Yoo, D. Edwards and A. Pascual-Leone, Enhanced motor function and its neurophysiological correlates after navigated low-frequency repetitive transcranial magnetic stimulation over the contralesional motor cortex in stroke (4) 677–689
Bates, K.A., E.S. Drummond, G.S. Cozens and A.R. Harvey, Vascular insufficiency, not inflammation, contributes to chronic gliosis in a rat CNS transplantation model (2) 313–323
Battaglini, L., see Maniglia, M. (5) 697–720
Battistella, L.R., see Simis, M. (1) 45–54
Bauer, H., see Mammele, S. (4) 665–675
Beaulé, V., see Tremblay, S. (4) 587–602
Becker, K.G., see Lee, C.-T. (6) 965–976
Benowitz, L., see Moore, T.L., (5) 827–848
Bernardon, L., see Huchon, L. (4) 615–633
Boehme, A.K., see Schambra, H.M. (5) 799–813
Boeshore, K.L., see Lee, C.-T. (6) 965–976
Bolognini, N., C. Russo and D.J. Edwards, The sensory side of post-stroke motor rehabilitation (4) 571–586
Bonilha, L., see Gleichgerrch, E. (1) 19–28
Borich, M.R., see Jones, P.W. (5) 733–746
Borlongan, C., see Song, S. (3) 415–431
Bostrom, C., see Yau, S.-Y. (5) 849–857
Bouyer, L.J., see Roosink, M. (2) 227–235
Bowley, B., see Moore, T.L., (5) 827–848
Boyd, L.A., see Jones, P.W. (5) 733–746
Brown, D.J., see Proulx, M.J. (1) 29–44
Buchs, G., S. Maidenbaum, S. Levy-Tzedek and A. Amedi, Integration and binding in rehabilitative sensory substitution: Increasing resolution using a new Zooming-in approach (1) 97–105
Büsching, I., see Liepert, J. (6) 907–914
Byhahn, M., see Werner, C. (4) 561–569
Cai, Z., see Guo, Y. (2) 177–187
Carlo, B., see Fusco, A. (2) 247–256
Carotenuto, A., see Spina, E. (5) 869–876
Casco, C., see Maniglia, M. (5) 697–720
Caudle, K.L., X.-C.M. Lu, A. Mountney, D.A. Shear and F.C. Tortella, Neuroprotection and anti-seizure effects of levetiracetam in a rat model of penetrating ballistic-like brain injury (2) 257–270
Cerillo, I., see Spina, E. (5) 869–876
Chalah, M.A., see Palm, U. (2) 189–199
Chan, V.S.-F., see Leung, J.W.-H. (3) 443–453
Chang, W.H., K.E. Uhm, Y.-I. Shin, A. Pascual-Leone and Y.-H. Kim, Factors influencing the response to high-frequency repetitive transcranial magnetic stimulation in patients with subacute stroke (5) 747–755
Chang, W.H., see Kim, J.Y. (3) 379–387
Chang, W.H., see Kwon, T.G. (6) 915–923
Chang, W.H., see Lee, M. (4) 635–645
Chen, T., Y. Yu, C. Hu and M. Schachner, L1.2, the zebrafish paralog of L1.1 and ortholog of the mammalian cell adhesion molecule L1 contributes to spinal cord regeneration in adult zebrafish (2) 325–335
Chen, Z., see Yang, L. (4) 647–663
Cheng, F.P.-H., M.-L. Eddy, M.H. Ruiz, M. Großbach and E.O. Altenmüller, Sensory feedback – Dependent neural de-orchestration: The effect of altered sensory feedback on Musician’s Dystonia (1) 55–65
Chiara, G.M., see Fusco, A. (2) 247–256
Cho, W.-J., see Han, J.-Y. (3) 367–377
Choi, B.T., see Lee, H.I. (2) 201–214
Choi, D.-H., see Kim, B.-R. (6) 925–934
Choi, P.H., see Allen, R.S. (6) 947–963
Choi, Y.-H., J. Ku, H. Lim, Y.H. Kim and N.-J. Paik, Mobile game-based virtual reality rehabilitation program for upper limb dysfunction after ischemic stroke (3) 455–463
Christie, B.R., see Yau, S.-Y. (5) 849–857
Chun, Y.I., see Kim, B.-R. (6) 925–934
Ciobanu, O., see Elena Sandu, R. (3) 401–414
Clara, C., D. Elisa, P. Luisa, S. Giovanni and B. Luca, Hyper-vision of mirror symmetry in patients with macular degeneration reflects parafoveal cortical reorganization (1) 67–77
Contemori, G., see Maniglia, M. (5) 697–720
Coogan, A.N., see Elena Sandu, R. (3) 401–414
Costanzo, F., C. Varuzza, S. Rossi, S. Sdoia, P. Varvara, M. Oliveri, K. Giacomo, S. Vicari and D. Menghini, Evidence for reading improvement following tDCS treatment in children and adolescents with Dyslexia (2) 215–226
Courtial, O., see Duret, C. (2) 237–245
Cozens, G.S., see Bates, K.A. (2) 313–323
Créange, A., see Palm, U. (2) 189–199
D’Mello, A.M., see Turkeltaub, P.E. (4) 491–505
Dai, W., see Zheng, X. (4) 519–530
Darkazalli, A., A.A.O. Ismail, N. Abad, S.C. Grant and C.W. Levenson, Use of human mesenchymal stem cell treatment to prevent anhedonia in a rat model of traumatic brain injury (3) 433–441
Davis, C., see Sebastian, R. (4) 473–489
de Sousa, A.A., see Proulx, M.J. (1) 29–44
Debnath, R., see Franz, E.A. (5) 721–732
Delconte, C., see Arcolin, I. (1) 125–138
Delconte, C., see Arcolin, I. (5) 693–695
Dell’Erba, S., see Proulx, M.J. (1) 29–44
Diederich, K., see Mammele, S. (4) 665–675
Dimitri, D., see Palm, U. (2) 189–199
Domenica, T., see Fusco, A. (2) 247–256
Doruk, D., see Simis, M. (1) 45–54
Doyon, J., see Tremblay, S. (4) 587–602
Drummond, E.S., see Bates, K.A. (2) 313–323
Dubljanin-Raspopović, E., see Ilić, N.V., (6) 935–945
Duret, C., O. Courtial and A.G. Grosmaire, Kinematic measures for upper limb motor assessment during robot-mediated training in patients with severe sub-acute stroke (2) 237–245
Duttenhoefer, W., see Schmalfuß, L. (1) 79–95
Eck, U., see Schmalfuß, L. (1) 79–95
Eddy, M.-L., see Cheng, F.P.-H. (1) 55–65
Edwards, D., see Bashir, S. (4) 677–689
Edwards, D.J., see Bolognini, N. (4) 571–586
Elena Sandu, R., A. Uzoni, O. Ciobanu, M. Moldovan, A. Anghel, E. Radu, A.N. Coogan and A. Popa-Wagner, Post-stroke gaseous hypothermia increases vascular density but not neurogenesis in the ischemic penumbra of aged rats (3) 401–414
El-Fetoh, N.A., see Khedr, E.M. (6) 897–905
El-Hammady, D.H., see Khedr, E.M. (6) 897–905
Elisa, D., see Clara, C. (1) 67–77
Errico, S.L., see Lee, C.-T. (6) 965–976
Fallgatter, A.J., see Schecklmann, M., (2) 165–175
Faria, A.V., see Sebastian, R. (4) 473–489
Farnè, A., see Huchon, L. (4) 615–633
Fernández-del-Olmo, M., Treadmill vs Cycling in Parkinson’s disease rehabilitation: Commentary on “Intensive cycle ergometer training improves gait speed and endurance in patients with Parkinson’s disease: A comparison with treadmill training” by Arcolin et al., 2016 (5) 691–692
Finklestein, S.P., see Moore, T.L., (5) 827–848
Finos, L., see Huchon, L. (4) 615–633
Franz, E.A., Y. Fu, M. Moore, T. Winter, T. Mayne, R. Debnath and C. Stringer, Fooling the brain by mirroring the hand: Brain correlates of the perceptual capture of limb ownership (5) 721–732
Frauenknecht, K., see Mammele, S. (4) 665–675
Freed, W.J., see Lee, C.-T. (6) 965–976
Fregni, F., see Simis, M. (1) 45–54
Fridriksson, J., see Gleichgerrch, E. (1) 19–28
Fu, Y., see Franz, E.A. (5) 721–732
Fujiwara, T., see Kawakami, M. (5) 789–797
Fukushima, M., see Kanekiyo, K. (3) 347–366
Fusco, A., G.M. Chiara, I. Marco, M. Giovanni, I. Luigi, T. Domenica, S.V. Maria, P. Stefano, B. Carlo and G. Laura, The dynamic motor imagery of locomotion is task-dependent in patients with stroke (2) 247–256
Fusco, G., E. Tidoni, N. Barone, C. Pilati and S.M. Aglioti, Illusion of arm movement evoked by tendon vibration in patients with spinal cord injury (5) 815–826
Gaillard, A., see Kalaani, J. (6) 877–895
Gazarian, A., see Huchon, L. (4) 615–633
Gervits, F., see Shah-Basak, P.P. (4) 537–558
Ghandour, A.M., see Khedr, E.M. (6) 897–905
Giacomo, K., see Costanzo, F. (2) 215–226
Giani, A., see Schecklmann, M., (2) 165–175
Giovanni, M., see Fusco, A. (2) 247–256
Giovanni, S., see Clara, C. (1) 67–77
Gleichgerrch, E., M. Kocher, T. Nesland, C. Rorden, J. Fridriksson and L. Bonilha, Preservation of structural brain network hubs is associated with less severe post-stroke aphasia (1) 19–28
Godi, M., see Arcolin, I. (1) 125–138
Godi, M., see Arcolin, I. (5) 693–695
Gore, A.C., see Palmateer, J. (2) 287–295
Gram, M.G., E. Wogensen, G. Wörtwein, J. Mogensen and H. Malá, Delayed restraint procedure enhances cognitive recovery of spatial function after fimbria-fornix transection (1) 1–17
Grant, S.C., see Darkazalli, A. (3) 433–441
Grasso, M., see Arcolin, I. (1) 125–138
Grasso, M., see Arcolin, I. (5) 693–695
Grimm, C., see Mammele, S. (4) 665–675
Grosmaire, A.G., see Duret, C. (2) 237–245
Großbach, M., see Cheng, F.P.-H. (1) 55–65
Großmann, W., see Schecklmann, M. (2) 165–175
Guo, Y., Y. He, B. Tang, K. Ma, Z. Cai, S. Zeng, Y. Zhang and X. Jiang, Effect of using fluoxetine at different time windows on neurological functional prognosis after ischemic stroke (2) 177–187
Gwinnutt, J., see Proulx, M.J. (1) 29–44
Haggard, P., see Pazzaglia, M. (4) 603–613
Hamade, E., see Kalaani, J. (6) 877–895
Hamilton, R., see Shah-Basak, P.P. (4) 537–558
Hamilton, R.H., Neuroplasticity in the language system: Reorganization in post-stroke aphasia and in neuromodulation interventions (4) 467–471
Han, J.-Y., J.-K. Kim, J.-H. Kim, B.-S. Oh, W.-J. Cho, Y.D. Jung and S.-G. Lee, Neurorestorative effects of epigallocatechin-3-Gallate on cognitive function in a chronic cerebral hypoperfusion rat model (3) 367–377
Han, S.W., see Koo, H. (5) 859–868
Harvey, A.R., see Bates, K.A. (2) 313–323
He, Y., see Guo, Y. (2) 177–187
Heiss, W.-D., Imaging effects related to language improvements by rTMS (4) 531–536
Herrmann, M.J., see Schecklmann, M., (2) 165–175
Hesse, S., see Werner, C. (4) 561–569
Hewitt, M., see Schmalfuß, L. (1) 79–95
Hillis, A.E., see Sebastian, R. (4) 473–489
Honaga, K., see Kawakami, M. (5) 789–797
Hu, C., see Chen, T. (2) 325–335
Huchon, L., L. Badet, A.C. Roy, L. Finos, A. Gazarian, P. Revol, L. Bernardon, Y. Rossetti, E. Morelon, G. Rode and A. Farnè, Grasping objects by former amputees: The visuo-motor control of allografted hands (4) 615–633
Hummel, F.C., see Backhaus, W. (1) 153–164
Hurn, P.D., see Palmateer, J. (2) 287–295
Ide, C., see Kanekiyo, K. (3) 347–366
Ilić, N.V., E. Dubljanin-Raspopović, U. Nedeljković, S. Tomanović-Vujadinović, S.D. Milanović, I. Petronić-Marković and T.V. Ilić, Effects of anodal tDCS and occupational therapy on fine motor skill deficits in patients with chronic stroke (6) 935–945
Ilić, T.V., see Ilić, N.V., (6) 935–945
Im, C.-H., see Lee, M. (4) 635–645
Imamura, M., see Simis, M. (1) 45–54
Iodice, R., see Spina, E. (5) 869–876
Ismail, A.A.O., see Darkazalli, A. (3) 433–441
Jaber, M., see Kalaani, J. (6) 877–895
Jackson, P.L., see Roosink, M. (2) 227–235
Jafari, Z. and S. Malayeri, Subcortical encoding of speech cues in children with congenital blindness (5) 757–768
Jarso, S., see Sebastian, R. (4) 473–489
Jiang, X., see Guo, Y. (2) 177–187
Jóhannesson, Ó.I., see Kristjánsson, Á. (5) 769–787
Jones, P.W., M.R. Borich, I. Vavsour, A. Mackay and L.A. Boyd, Cortical thickness and metabolite concentration in chronic stroke and the relationship with motor function (5) 733–746
Jones, T.A., see Palmateer, J. (2) 287–295
Jung, Y.D., see Han, J.-Y. (3) 367–377
Kafczyk, T., see van Vugt, F.T. (2) 297–311
Kalaani, J., J. Roche, E. Hamade, B. Badran, M. Jaber, A. Gaillard and L. Prestoz, Axon guidance molecule expression after cell therapy in a mouse model of Parkinson’s disease (6) 877–895
Kanekiyo, K., N. Nakano, T. Noda, Y. Yamada, Y. Suzuki, M. Ohta, A. Yokota, M. Fukushima and C. Ide, Transplantation of choroid plexus epithelial cells into contusion-injured spinal cord of rats (3) 347–366
Kang, C., see Kwon, T.G. (6) 915–923
Kawakami, M., T. Fujiwara, J. Ushiba, A. Nishimoto, K. Abe, K. Honaga, A. Nishimura, K. Mizuno, M. Kodama, Y. Masakado and M. Liu, A new therapeutic application of brain-machine interface (BMI) training followed by hybrid assistive neuromuscular dynamic stimulation (HANDS) therapy for patients with severe hemiparetic stroke: A proof of concept study (5) 789–797
Kempe, S., see Backhaus, W. (1) 153–164
Khedr, E.M., R. Badry, A.M. Ali, N.A. El-Fetoh, D.H. El-Hammady, A.M. Ghandour and A. Abdel-Haleem, Steroid/Antiviral for the treatment of Bell’s palsy: Double blind randomized clinical trial (6) 897–905
Killiany, R.J., see Moore, T.L., (5) 827–848
Kim, B.-R., H.Y. Kim, Y.I. Chun, Y.-M. Yun, H. Kim, D.-H. Choi and J. Lee, Association between genetic variation in the dopamine system and motor recovery after stroke (6) 925–934
Kim, H., see Kim, B.-R. (6) 925–934
Kim, H., see Kim, J.Y. (3) 379–387
Kim, H.-I., see Koo, H. (5) 859–868
Kim, H.Y., see Kim, B.-R. (6) 925–934
Kim, J.-H., see Han, J.-Y. (3) 367–377
Kim, J.-H., see Lee, M. (4) 635–645
Kim, J.-K., see Han, J.-Y. (3) 367–377
Kim, J.Y., W. Sun, E. Park, J. Lee, H. Kim, Y.-I. Shin, Y.-H. Kim and W.H. Chang, Day/night difference in extradural cortical stimulation for motor relearning in a subacute stroke rat model (3) 379–387
Kim, L., see Lee, M. (4) 635–645
Kim, M.S., see Koo, H. (5) 859–868
Kim, N.G., see Lee, H.I. (2) 201–214
Kim, Y.-H., see Chang, W.H. (5) 747–755
Kim, Y.H., see Choi, Y.-H. (3) 455–463
Kim, Y.-H., see Kim, J.Y. (3) 379–387
Kim, Y.-H., see Koo, H. (5) 859–868
Kim, Y.-H., see Kwon, T.G. (6) 915–923
Kim, Y.-H., see Lee, M. (4) 635–645
Klinker, F., see Schmalfuß, L. (1) 79–95
Knobel, M., see Bashir, S. (4) 677–689
Ko, S.-H., see Koo, H. (5) 859–868
Kocher, M., see Gleichgerrch, E. (1) 19–28
Kodama, M., see Kawakami, M. (5) 789–797
Kogut, A., see Schmalfuß, L. (1) 79–95
Kong, X., see Song, S. (3) 415–431
Koo, H., M.S. Kim, S.W. Han, W. Paulus, M.A. Nitche, Y.-H. Kim, H.-I. Kim, S.-H. Ko and Y.-I. Shin, After-effects of anodal transcranial direct current stimulation on the excitability of the motor cortex in rats (5) 859–868
Krishnan, C., see Washabaugh, E.P. (2) 337–346
Kristjánsson, Á., A. Moldoveanu, Ó.I. Jóhannesson, O. Balan, S. Spagnol, V.V. Valgeirsdóttir and R. Unnthorsson, Designing sensory-substitution devices: Principles, pitfalls and potential (5) 769–787
Ku, J., see Choi, Y.-H. (3) 455–463
Kuhn, W., see van Vugt, F.T. (2) 297–311
Kumar, S., see Palmateer, J. (2) 287–295
Kwon, G.-H., see Lee, M. (4) 635–645
Kwon, T.G., E. Park, C. Kang, W.H. Chang and Y.-H. Kim, The effects of combined repetitive transcranial magnetic stimulation and transcranial direct current stimulation on motor function in patients with stroke (6) 915–923
Lafleur, L.-P., see Tremblay, S. (4) 587–602
Langguth, B., see Schecklmann, M., (2) 165–175
Latulipe-Loiselle, A., see Tremblay, S. (4) 587–602
Lau, B.W.-M., see Leung, J.W.-H. (3) 443–453
Lau, C.-S., see Leung, J.W.-H. (3) 443–453
Laura, G., see Fusco, A. (2) 247–256
Lazar, R.M., see Schambra, H.M. (5) 799–813
Lee, C.-T., K.L. Boeshore, C. Wu, K.G. Becker, S.L. Errico, D.C. Mash and W.J. Freed, Cocaine promotes primary human astrocyte proliferation via JNK-dependent up-regulation of cyclin A2 (6) 965–976
Lee, H.I., J.H. Park, M.Y. Park, N.G. Kim, K.-J. Park, B.T. Choi, Yang-II Shin and H.K. Shin, Pre-conditioning with transcranial low-level light therapy reduces neuroinflammation and protects blood-brain barrier after focal cerebral ischemia in mice (2) 201–214
Lee, J., see Kim, B.-R. (6) 925–934
Lee, J., see Kim, J.Y. (3) 379–387
Lee, M., C.-h. Park, C.-H. Im, J.-H. Kim, G.-H. Kwon, L. Kim, W.H. Chang and Y.-H. Kim, Motor imagery learning across a sequence of trials in stroke patients (4) 635–645
Lee, S.-G., see Han, J.-Y. (3) 367–377
Lee, T.M.C., see Yau, S.-Y. (5) 849–857
Lefaucheur, J.-P., see Palm, U. (2) 189–199
Lenggenhager, B., see Pazzaglia, M. (4) 603–613
Leone, A.P., see Morris, T. (6) 977–988
Leung, J.W.-H., B.W.-M. Lau, V.S.-F. Chan, C.-S. Lau and K.-F. So, Abnormal increase of neuronal precursor cells and exacerbated neuroinflammation in the corpus callosum in murine model of systemic lupus erythematosus (3) 443–453
Levenson, C.W., see Darkazalli, A. (3) 433–441
Levy-Tzedek, S., see Buchs, G. (1) 97–105
Levy-Tzedek, S., see Proulx, M.J. (1) 29–44
Li, Y., see Walker, C.L. (3) 389–400
Li. A., see Yau, S.-Y. (5) 849–857
Liebetanz, D., see Schmalfuß, L. (1) 79–95
Liepert, J., I. Büsching, A. Sehle and M.A. Schoenfeld, Mental chronometry and mental rotation abilities in stroke patients with different degrees of sensory deficit (6) 907–914
Lim, H., see Choi, Y.-H. (3) 455–463
Lindquist, M., see Sebastian, R. (4) 473–489
Liu, M., see Kawakami, M. (5) 789–797
Liu, N.-K., see Walker, C.L. (3) 389–400
Liu, Y., see Walker, C.L. (3) 389–400
Long, C., see Sebastian, R. (4) 473–489
Lotze, M., see Platz, T. (2) 271–285
Lu, X.-C.M., see Caudle, K.L. (2) 257–270
Luca, B., see Clara, C. (1) 67–77
Luigi, I., see Fusco, A. (2) 247–256
Luisa, P., see Clara, C. (1) 67–77
Ma, K., see Guo, Y. (2) 177–187
Mackay, A., see Jones, P.W. (5) 733–746
Magalhães, R., see Paiva, S. (1) 139–152
Maidenbaum, S., see Buchs, G. (1) 97–105
Malá, H., see Gram, M.G. (1) 1–17
Malayeri, S., see Jafari, Z. (5) 757–768
Mammele, S., K. Frauenknecht, S. Sevimli, K. Diederich, H. Bauer, C. Grimm, J. Minnerup, W.-R. Schäbitz and C.J. Sommer, Prevention of an increase in cortical ligand binding to AMPA receptors may represent a novel mechanism of endogenous brain protection by G-CSF after ischemic stroke (4) 665–675
Maniglia, M., A. Pavan, G. Sato, G. Contemori, S. Montemurro, L. Battaglini and C. Casco, Perceptual learning leads to long lasting visual improvement in patients with central vision loss (5) 697–720
Marco, I., see Fusco, A. (2) 247–256
Maria, S.V., see Fusco, A. (2) 247–256
Marjańska, M., see Tremblay, S. (4) 587–602
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