[1]
Łuczywek E., Fersten E.: Poziom fluencji słownej przy różnych
uszkodzeniach mózgu. Studia Psychologiczne 2008; 30: 89–98.
[1]
Łuczywek E., Fersten E.: Poziom fluencji słownej przy różnych
uszkodzeniach mózgu. Studia Psychologiczne 2008; 30: 89–98.
[2]
Baldo J.V., Shimamura A.P., Delis D.C., et al.: Verbal and design fluency
in patients with frontal lobe lesion. J Int Neuropsychol Soc 2001; 7:
586–596.
[2]
Baldo J.V., Shimamura A.P., Delis D.C., et al.: Verbal and design fluency
in patients with frontal lobe lesion. J Int Neuropsychol Soc 2001; 7:
586–596.
[3]
Jodzio K.: Neuropsychologia intencjonalnego działania. Koncepcje
funkcji wykonawczych. Wydawnictwo Naukowe Scholar, Warszawa
2008.
[3]
Jodzio K.: Neuropsychologia intencjonalnego działania. Koncepcje
funkcji wykonawczych. Wydawnictwo Naukowe Scholar, Warszawa
2008.
[4]
Riva D., Nichelli F., Devoti M.: Developmental aspects of verbal fluency
and confrontation naming in children. Brain Lang 2000; 71: 267–284.
[4]
Riva D., Nichelli F., Devoti M.: Developmental aspects of verbal fluency
and confrontation naming in children. Brain Lang 2000; 71: 267–284.
[5]
Troyer A.K., Moscovitch M., Winocur G.: Clustering and switching as
two components of verbal fluency: Evidence from younger and older
healthy adults. Neuropsychology 1997; 11: 138–146.
[5]
Troyer A.K., Moscovitch M., Winocur G.: Clustering and switching as
two components of verbal fluency: Evidence from younger and older
healthy adults. Neuropsychology 1997; 11: 138–146.
[6]
Axelrod B.N., Henry R.R.: Age-related performance on the Wisconsin
Card Sorting, Similarities and Controlled Oral Word Associationn Test.
Clin Neuropsychol 1992; 6: 16–26.
[6]
Axelrod B.N., Henry R.R.: Age-related performance on the Wisconsin
Card Sorting, Similarities and Controlled Oral Word Associationn Test.
Clin Neuropsychol 1992; 6: 16–26.
[7]
Kozora E., Cullum C.M.: Generative naming in normal aging. Total output
and qualitative changes using phonemic and semantic constraints. Clin
Neuropsychol 1995; 9: 313–325.
[7]
Kozora E., Cullum C.M.: Generative naming in normal aging. Total output
and qualitative changes using phonemic and semantic constraints. Clin
Neuropsychol 1995; 9: 313–325.
[8]
Gaillard W.D., Hertz-Pannier L., Mott S.H., et al.: Functional anatomy of
cognitive development: fMRI of verbal fluency in children and adults.
Neurology 2000; 54: 180–185.
[8]
Gaillard W.D., Hertz-Pannier L., Mott S.H., et al.: Functional anatomy of
cognitive development: fMRI of verbal fluency in children and adults.
Neurology 2000; 54: 180–185.
[9]
Borkowski J.G., Benton A.L., Spreen O.: Word fluency and brain damage.
Neuropsychologia 1967; 5: 135–140.
[9]
Borkowski J.G., Benton A.L., Spreen O.: Word fluency and brain damage.
Neuropsychologia 1967; 5: 135–140.
[10]
Lezak, M.D., Howieson, D.B., Loring, et al.: Neuropsychological
assessment. Oxford University Press, New York 2004.
[10]
Lezak, M.D., Howieson, D.B., Loring, et al.: Neuropsychological
assessment. Oxford University Press, New York 2004.
[11]
Robert P., Lafont V., Medecin I., et al.: Clustering and switching strategies
in verbal fluency task: Comparison between schizophrenics and healthy
adults. J Int Neuropsychol Soc 1998; 4: 539–546.
[11]
Robert P., Lafont V., Medecin I., et al.: Clustering and switching strategies
in verbal fluency task: Comparison between schizophrenics and healthy
adults. J Int Neuropsychol Soc 1998; 4: 539–546.
[12]
Kosmidis M.H., Vlahou C.H., Panagiotaki P., et al.: The verbal fluency task
in the Greek population: Normative data, and clustering and switching
strategies. J Int Neuropsychol Soc 2004; 10: 164–172.
[12]
Kosmidis M.H., Vlahou C.H., Panagiotaki P., et al.: The verbal fluency task
in the Greek population: Normative data, and clustering and switching
strategies. J Int Neuropsychol Soc 2004; 10: 164–172.
[13]
Jodzio K.: Neuropoznawcze korelaty spadku fluencji słownej po udarze
prawej półkuli mózgu. Studia Psychologiczne 2006; 44: 5–18.
[13]
Jodzio K.: Neuropoznawcze korelaty spadku fluencji słownej po udarze
prawej półkuli mózgu. Studia Psychologiczne 2006; 44: 5–18.
[14]
Rende B., Ramsberger G., Miyake A.: Commonalities and differences in
the working memory components underlying letter and category fluency
task: A dual task investigation. Neuropsychology 2002; 16: 309–321.
[14]
Rende B., Ramsberger G., Miyake A.: Commonalities and differences in
the working memory components underlying letter and category fluency
task: A dual task investigation. Neuropsychology 2002; 16: 309–321.
[15]
Bray J.H., Maxwell S.E.: Multivariate analysis of variance. Sage, Beverly
Hills 1985.
[15]
Bray J.H., Maxwell S.E.: Multivariate analysis of variance. Sage, Beverly
Hills 1985.
[16]
Thomas D.R.: Interpreting discriminants functions: A data analytic
approach. Multivariate Behavioral Research 1992; 27: 335–362.
[16]
Thomas D.R.: Interpreting discriminants functions: A data analytic
approach. Multivariate Behavioral Research 1992; 27: 335–362.
[17]
Mayr U.: On the dissociation between clustering and switching in verbal
fluency: comment on Troyer, Moscovitch, Winocur, Alexander and
Stuss. Neuropsychologia 2002; 40: 562–566.
[17]
Mayr U.: On the dissociation between clustering and switching in verbal
fluency: comment on Troyer, Moscovitch, Winocur, Alexander and
Stuss. Neuropsychologia 2002; 40: 562–566.
[18]
Sauzéon H., Lestage P., Raboutet C. et al.: Verbal fluency output in
children aged 7-16 as a function of the production criterion: Qualitative
analysis of clustering, switching processes, and semantic network
exploitation. Brain Lang 2004; 89: 192–202.
[18]
Sauzéon H., Lestage P., Raboutet C. et al.: Verbal fluency output in
children aged 7-16 as a function of the production criterion: Qualitative
analysis of clustering, switching processes, and semantic network
exploitation. Brain Lang 2004; 89: 192–202.
[19]
Troyer A.K., Moscovitch M., Winocur G. et al.: Clustering and switching
on verbal fluency: the effects of focal frontal and temporal-lobe lesions.
Neuropsychologia 1998; 36: 499–504.
[19]
Troyer A.K., Moscovitch M., Winocur G. et al.: Clustering and switching
on verbal fluency: the effects of focal frontal and temporal-lobe lesions.
Neuropsychologia 1998; 36: 499–504.
[20]
De Gaspari D., Siri C., Di Gioia M. et al.: Clinical correlates and cognitive
underpinnings of verbal fluency impairment after chronic subthalamic
stimulation in Parkinson’s disease. Parkinsonism and Related Disorders
2006; 12: 289–295.
[20]
De Gaspari D., Siri C., Di Gioia M. et al.: Clinical correlates and cognitive
underpinnings of verbal fluency impairment after chronic subthalamic
stimulation in Parkinson’s disease. Parkinsonism and Related Disorders
2006; 12: 289–295.
[21]
Koren R., Kofman O., Berger A.: Analysis of word clustering in verbal
fluency of school-aged children. Arch Clin Neuropsychol. 2005; 20:
1087–1104.
Adres do korespondencji:
Instytut Psychiatrii i Neurologii, Zakład Zdrowia Publicznego, Sobieskiego 9, 02-957 Warszawa, dbiechowska@ipin.edu.pl
[21]
Koren R., Kofman O., Berger A.: Analysis of word clustering in verbal
fluency of school-aged children. Arch Clin Neuropsychol. 2005; 20:
1087–1104.
Adres do korespondencji:
Instytut Psychiatrii i Neurologii, Zakład Zdrowia Publicznego, Sobieskiego 9, 02-957 Warszawa, dbiechowska@ipin.edu.pl
[22]
Stolarska U., Kroczka S., Geront A. et al.: Test fluencji słownej – aspekty
rozwojowe w normie i patologii. Przegląd Lekarski 2008; 65: 764–768.
[22]
Stolarska U., Kroczka S., Geront A. et al.: Test fluencji słownej – aspekty
rozwojowe w normie i patologii. Przegląd Lekarski 2008; 65: 764–768.
[23]
Tröster A.I., Warmflash V.I., Paolo A.M. et al.: The roles of semantic
networks and search efficiency in verbal fluency performance in
intractable temporal lobe epilepsy. Epilepsy Res 1995; 21: 19–26.
[23]
Tröster A.I., Warmflash V.I., Paolo A.M. et al.: The roles of semantic
networks and search efficiency in verbal fluency performance in
intractable temporal lobe epilepsy. Epilepsy Res 1995; 21: 19–26.