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Erschienen in: Child's Nervous System 12/2017

22.09.2017 | Original Paper

Cognitive performance change of pediatric patients after conducting frontal transcortical approach to treat lateral ventricular tumor

verfasst von: Wanchun Zhu, Jintao He, Xiang Li, Lei Wang, Zheng Lu, Chunde Li, Jian Gong

Erschienen in: Child's Nervous System | Ausgabe 12/2017

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Abstract

Objective

Applying frontal transcortical approach to treat lateral ventricular tumor is one of the most common neurosurgical manipulations. The frontal transcortical approach generally passes through the middle frontal gyrus in which there is no major function involved in the traditional sense. However, current researches have suggested that the prefrontal cortex (PFC) plays a central role in the whole network of the brain cognitive frame. In addition, cognitive function is crucial in growing and developmental stages and essential for the educational achievement, especially for children. Based on this, the authors in this study analyzed cognitive performance change of pediatric patients who had accepted frontal transcortical operation in 1-year follow-up and discussed the possibility of higher cognitive functions of the damaged region.

Patients and methods

In this single-center study, 15 pediatric patients (median age at surgery, 9.21 years old; range, 6.42–14.17 years old) who had been treated with frontal transcortical approach for lateral ventricular tumors were selected as research objects. The cognitive function assessment was conducting by adopting the revised Wechsler Intelligence Scale for Children-fourth edition (WISC-IV). In addition, the resting-state functional magnetic resonance imaging (resting-state fMRI) and diffusion tensor imaging (DTI) were carried out to measure the level of co-activation and to explore the functional connectivity between the brain regions at the preoperative period and 1-year follow-up after surgery.

Results

GTR was achieved in all patients, and all patients were in good condition after surgery. Compared to the preoperative indices of WISC-IV, patients generally had a lower level of indices of the WISC-IV after surgery, for example, the total IQ was declined to M = 83.60, SD = 9.500 from M = 95.33, SD = 13.844 within 1 year convalescence. The data of perceptual reasoning (t = − 2.392, p = 0.016), processing speed (t = − 2.121, p = 0.033), and total IQ (t = −2.638, p = 0.008) before and after surgery showed statistically significance. Furthermore, decreased functional connectivity and disconnected neural fasciculus were revealed by the size of activation regions in the resting-state fMRI and the reconstruction of three-dimensional images of white matter tracts in the DTI pre- and post-operative.

Conclusion

The PFC was not regarded as a major functional area in the past, but the researches at present have shown that the interactions between PFC and other posterior brain regions serve as the basis of the higher cognitive functions. According to imaging manifestations and WISC-IV tasks in this paper, we found that the PFC injury caused by the frontal transcortical approach led to damaged brain structure and impaired the performance of cognitive function. On this basis, we detected that the perceptual reasoning and processing speed maybe have more extensive connections with the middle frontal gyrus.
Literatur
1.
Zurück zum Zitat Ellenbogen RG (2011) Transcortical surgery for lateral ventricular tumors. Neurosurg Focus 10:E2 Ellenbogen RG (2011) Transcortical surgery for lateral ventricular tumors. Neurosurg Focus 10:E2
2.
Zurück zum Zitat Gokalp HZ, Yuceer N, Arasıl E, Deda H, Attar A, Erdoğan A et al (1998) Tumors of the lateral ventricle. A retrospective review of 112 cases operated upon 1970–1997. Neurosurg Rev 21:126–137CrossRefPubMed Gokalp HZ, Yuceer N, Arasıl E, Deda H, Attar A, Erdoğan A et al (1998) Tumors of the lateral ventricle. A retrospective review of 112 cases operated upon 1970–1997. Neurosurg Rev 21:126–137CrossRefPubMed
3.
Zurück zum Zitat Secer HI, Duz B, Izci Y, Tehli O, Solmaz I, Gonul E (2008) Tumors of the lateral ventricle: the factors that affected the preference of the surgical approach in 46 patiens. Turk Neurosurg 18:345–355PubMed Secer HI, Duz B, Izci Y, Tehli O, Solmaz I, Gonul E (2008) Tumors of the lateral ventricle: the factors that affected the preference of the surgical approach in 46 patiens. Turk Neurosurg 18:345–355PubMed
4.
Zurück zum Zitat Asgari S, Engelhorn T, Brondics A, Sandalcioglu IE, Stolke D (2003) Transcortical or transcallosal approach to ventricle-associated lesions: a clinical study on the prognostic role of surgical approach. Neurosurg Rev 26:192–197CrossRefPubMed Asgari S, Engelhorn T, Brondics A, Sandalcioglu IE, Stolke D (2003) Transcortical or transcallosal approach to ventricle-associated lesions: a clinical study on the prognostic role of surgical approach. Neurosurg Rev 26:192–197CrossRefPubMed
5.
Zurück zum Zitat Piepmeier JM (1996) Tumors and approaches to the lateral ventricles. Introduction and overview. J Neurooncol 30:267–274CrossRefPubMed Piepmeier JM (1996) Tumors and approaches to the lateral ventricles. Introduction and overview. J Neurooncol 30:267–274CrossRefPubMed
6.
Zurück zum Zitat Bykanov AE, Pitskhelauri DI, Dobrovol’skiy GF, Shkarubo MA (2015) Surgical anatomy of the insular cortex. Zh Vopr Neirokhir Im N N Burdenko 79:48–60CrossRefPubMed Bykanov AE, Pitskhelauri DI, Dobrovol’skiy GF, Shkarubo MA (2015) Surgical anatomy of the insular cortex. Zh Vopr Neirokhir Im N N Burdenko 79:48–60CrossRefPubMed
7.
Zurück zum Zitat Anderson RC, Ghatan S, Feldstein NA (2003) Surgical approaches to tumors of the lateral ventricle. Neurosurg Clin N Am 14:509–525CrossRefPubMed Anderson RC, Ghatan S, Feldstein NA (2003) Surgical approaches to tumors of the lateral ventricle. Neurosurg Clin N Am 14:509–525CrossRefPubMed
8.
Zurück zum Zitat D'Angelo VA, Galarza M, Catapano D, Monte V, Bisceglia M, Carosi I (2008) Lateral ventricle tumors: surgical strategies according to tumor origin and development—a series of 72 cases. Neurosurgery 62:1066–1075CrossRefPubMed D'Angelo VA, Galarza M, Catapano D, Monte V, Bisceglia M, Carosi I (2008) Lateral ventricle tumors: surgical strategies according to tumor origin and development—a series of 72 cases. Neurosurgery 62:1066–1075CrossRefPubMed
9.
Zurück zum Zitat Mazza M, Di Rienzo A, Costagliola C, Roncone R, Casacchia M, Ricci A et al (2004) The interhemispheric transcallosal-transversal approach to the lesions of the anterior and middle third ventricle: surgical validity and neuropsychological evaluation of the outcome. Brain Cogn 55:525–534CrossRefPubMed Mazza M, Di Rienzo A, Costagliola C, Roncone R, Casacchia M, Ricci A et al (2004) The interhemispheric transcallosal-transversal approach to the lesions of the anterior and middle third ventricle: surgical validity and neuropsychological evaluation of the outcome. Brain Cogn 55:525–534CrossRefPubMed
10.
Zurück zum Zitat Milligan BD, Meyer FB (2010) Morbidity of transcallosal and transcortical approaches to lesions in and around the lateral and third ventricles: a single-institution experience. Neurosurgery 67:1483–1496CrossRefPubMed Milligan BD, Meyer FB (2010) Morbidity of transcallosal and transcortical approaches to lesions in and around the lateral and third ventricles: a single-institution experience. Neurosurgery 67:1483–1496CrossRefPubMed
11.
12.
Zurück zum Zitat Keizer AM, Hijman R, Kalkman CJ, Kahn RS, van Dijk D, Octopus Study, Group (2005) The incidence of cognitive decline after (not) undergoing coronary artery bypass grafting: the impact of a controlled definition. Acta Anaesthesiol Scand 49:596–601CrossRef Keizer AM, Hijman R, Kalkman CJ, Kahn RS, van Dijk D, Octopus Study, Group (2005) The incidence of cognitive decline after (not) undergoing coronary artery bypass grafting: the impact of a controlled definition. Acta Anaesthesiol Scand 49:596–601CrossRef
13.
Zurück zum Zitat Luria AR (1966) Higher cortical functions in man. Basic Books Inc Publishers, New York Luria AR (1966) Higher cortical functions in man. Basic Books Inc Publishers, New York
14.
Zurück zum Zitat Barbey AK, Colom R, Solomon J, Krueger F, Forbes C, Grafman J (2012) An integrative architecture for general intelligence and executive function revealed by lesion mapping. Brain 135:1154–1164CrossRefPubMedPubMedCentral Barbey AK, Colom R, Solomon J, Krueger F, Forbes C, Grafman J (2012) An integrative architecture for general intelligence and executive function revealed by lesion mapping. Brain 135:1154–1164CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Badre D, Wagner AD (2004) Selection, integration, and conflict monitoring; assessing the nature and generality of prefrontal cognitive control mechanisms. Neuron 41:473–487CrossRefPubMed Badre D, Wagner AD (2004) Selection, integration, and conflict monitoring; assessing the nature and generality of prefrontal cognitive control mechanisms. Neuron 41:473–487CrossRefPubMed
16.
Zurück zum Zitat Duncan J (2001) An adaptive coding model of neural function in prefrontal cortex. Nat Rev Neurosci 2:820–829CrossRefPubMed Duncan J (2001) An adaptive coding model of neural function in prefrontal cortex. Nat Rev Neurosci 2:820–829CrossRefPubMed
17.
Zurück zum Zitat Stuss DT, Benson DF (1987) The frontal lobes and control of cognition and memory. Frontal Lobes Revisited. 141–158 Stuss DT, Benson DF (1987) The frontal lobes and control of cognition and memory. Frontal Lobes Revisited. 141–158
18.
Zurück zum Zitat Weinberger DR (1993) A connectionist approach to the prefrontal cortex. J Neuropsychiatry Clin Neurosci 5:241–253CrossRefPubMed Weinberger DR (1993) A connectionist approach to the prefrontal cortex. J Neuropsychiatry Clin Neurosci 5:241–253CrossRefPubMed
19.
Zurück zum Zitat Badre D (2008) Cognitive control, hierarchy, and the rostro-caudal organization of the frontal lobes. Trends Cogn Sci 12:193–200CrossRefPubMed Badre D (2008) Cognitive control, hierarchy, and the rostro-caudal organization of the frontal lobes. Trends Cogn Sci 12:193–200CrossRefPubMed
20.
Zurück zum Zitat Koechlin E, Ody C, Kouneiher F (2003) The architecture of cognitive control in the human prefrontal cortex. Science 302:1181–1185CrossRefPubMed Koechlin E, Ody C, Kouneiher F (2003) The architecture of cognitive control in the human prefrontal cortex. Science 302:1181–1185CrossRefPubMed
21.
Zurück zum Zitat Koechlin E, Jubault T (2006) Broca’s area and the hierarchical organization of human behavior. Neuron 50:963–974CrossRefPubMed Koechlin E, Jubault T (2006) Broca’s area and the hierarchical organization of human behavior. Neuron 50:963–974CrossRefPubMed
22.
Zurück zum Zitat Koechlin E, Summerfield C (2007) An information theoretical approach to prefrontal executive function. Trends Cogn Sci 11:229–235CrossRefPubMed Koechlin E, Summerfield C (2007) An information theoretical approach to prefrontal executive function. Trends Cogn Sci 11:229–235CrossRefPubMed
23.
Zurück zum Zitat Koechlin E, Basso G, Pietrini P, Panzer S, Grafman J (1999) The role of the anterior prefrontal cortex in human cognition. Nature 399:148–151CrossRefPubMed Koechlin E, Basso G, Pietrini P, Panzer S, Grafman J (1999) The role of the anterior prefrontal cortex in human cognition. Nature 399:148–151CrossRefPubMed
24.
Zurück zum Zitat Benes FM (2001) The development of prefrontal cortex: the maturation of neurotransmitter systems and their interactions. Handbook of developmental cognitive neuroscience. MIT Press. 79–92 Benes FM (2001) The development of prefrontal cortex: the maturation of neurotransmitter systems and their interactions. Handbook of developmental cognitive neuroscience. MIT Press. 79–92
25.
Zurück zum Zitat LaMantia AS, Rakic P (1990) Axon overproduction and elimination in the corpus callosum of the developing rhesus monkey. J Neurosci 10:2156–2175PubMed LaMantia AS, Rakic P (1990) Axon overproduction and elimination in the corpus callosum of the developing rhesus monkey. J Neurosci 10:2156–2175PubMed
26.
Zurück zum Zitat Huttenlocher PR, Dabholkar AS (1997) Regional differences in synaptogenesis in human cerebral cortex. J Comp Neurol 387:167–178CrossRefPubMed Huttenlocher PR, Dabholkar AS (1997) Regional differences in synaptogenesis in human cerebral cortex. J Comp Neurol 387:167–178CrossRefPubMed
27.
Zurück zum Zitat Petanjek Z, Judas M, Kostovic I, Uylings HB (2008) Lifespan alterations of basal dendritic trees of pyramidal neurons in the human prefrontal cortex: a layer-specific pattern. Cereb Cortex 18:915–929CrossRefPubMed Petanjek Z, Judas M, Kostovic I, Uylings HB (2008) Lifespan alterations of basal dendritic trees of pyramidal neurons in the human prefrontal cortex: a layer-specific pattern. Cereb Cortex 18:915–929CrossRefPubMed
28.
Zurück zum Zitat Yakovlev PI, Lecours AR (1967) The myelogenetic cycles of regional maturation of the brain. Regional development of the brain in early life. Blackwell Scientific Publications. 3–70 Yakovlev PI, Lecours AR (1967) The myelogenetic cycles of regional maturation of the brain. Regional development of the brain in early life. Blackwell Scientific Publications. 3–70
29.
Zurück zum Zitat Clarke HH (1958) Physical fitness benefits: a summary of research. Education 78:460–466 Clarke HH (1958) Physical fitness benefits: a summary of research. Education 78:460–466
30.
Zurück zum Zitat Tomporowski PD, Lambourne K, Okumura MS (2011) Physical activity interventions and children’s mental function: an introduction and overview. Prev Med 52:S3–S9CrossRefPubMedPubMedCentral Tomporowski PD, Lambourne K, Okumura MS (2011) Physical activity interventions and children’s mental function: an introduction and overview. Prev Med 52:S3–S9CrossRefPubMedPubMedCentral
31.
Zurück zum Zitat Flint J (1996) Annotation: behavioural phenotypes: a window onto the biology of behaviour. J Child Psychol Psychiatry 37:355–367CrossRefPubMed Flint J (1996) Annotation: behavioural phenotypes: a window onto the biology of behaviour. J Child Psychol Psychiatry 37:355–367CrossRefPubMed
33.
Zurück zum Zitat Blair C (2002) School readiness. Integrating cognition and emotion in a neurobiological conceptualization of children’s functioning at school entry. Am Psychol 57:111–127CrossRefPubMed Blair C (2002) School readiness. Integrating cognition and emotion in a neurobiological conceptualization of children’s functioning at school entry. Am Psychol 57:111–127CrossRefPubMed
35.
Zurück zum Zitat Joyce E, Blumenthal S, Wessely S (1996) Memory, attention, and executive function in chronic fatigue syndrome. J Neurol Neurosurg Psychiatry 60:495–503CrossRefPubMedPubMedCentral Joyce E, Blumenthal S, Wessely S (1996) Memory, attention, and executive function in chronic fatigue syndrome. J Neurol Neurosurg Psychiatry 60:495–503CrossRefPubMedPubMedCentral
36.
Zurück zum Zitat Owen AM, Downes JJ, Sahakian BJ, Polkey CE, Robbins TW (1990) Planning and spatial working memory following frontal lobe lesions in man. Neuropsychologia 28:1021–1034CrossRefPubMed Owen AM, Downes JJ, Sahakian BJ, Polkey CE, Robbins TW (1990) Planning and spatial working memory following frontal lobe lesions in man. Neuropsychologia 28:1021–1034CrossRefPubMed
37.
Zurück zum Zitat Shallice T (1982) Specific impairments of planning. Philos Trans R Soc Lond Ser B Biol Sci 298:199–209CrossRef Shallice T (1982) Specific impairments of planning. Philos Trans R Soc Lond Ser B Biol Sci 298:199–209CrossRef
38.
Zurück zum Zitat Prather P, de Vries PJ (2004) Behavioral and cognitive aspects of tuberous sclerosis complex. J Child Neurol 19:666–674CrossRefPubMed Prather P, de Vries PJ (2004) Behavioral and cognitive aspects of tuberous sclerosis complex. J Child Neurol 19:666–674CrossRefPubMed
39.
Zurück zum Zitat Capal JK, Bernardino-Cuesta B, Horn PS, Murray D, Byars AW, Bing NM et al (2017) Influence of seizures on early development in tuberous sclerosis complex. Epilepsy Behav 70:245–252CrossRefPubMed Capal JK, Bernardino-Cuesta B, Horn PS, Murray D, Byars AW, Bing NM et al (2017) Influence of seizures on early development in tuberous sclerosis complex. Epilepsy Behav 70:245–252CrossRefPubMed
40.
Zurück zum Zitat Wheless JW, Klimo P Jr (2014) Subependymal giant cell astrocytomas in patients with tuberous sclerosis complex: considerations for surgical or pharmacotherapeutic intervention. J Child Neurol 29:1562–1571CrossRefPubMed Wheless JW, Klimo P Jr (2014) Subependymal giant cell astrocytomas in patients with tuberous sclerosis complex: considerations for surgical or pharmacotherapeutic intervention. J Child Neurol 29:1562–1571CrossRefPubMed
41.
Zurück zum Zitat Petermann F, Petermann U Wechsler Intelligence Scale for Children—fourth edition (WISC-IV), Chinese edn. Pearson Assessment, Frankfurt/Main Petermann F, Petermann U Wechsler Intelligence Scale for Children—fourth edition (WISC-IV), Chinese edn. Pearson Assessment, Frankfurt/Main
42.
Zurück zum Zitat van den Heuvel MP, Hulshoff Pol HE (2010) Exploring the brain network: a review on resting-state fMRI functional connectivity. Eur Neuropsychopharmacol 20:519–534CrossRefPubMed van den Heuvel MP, Hulshoff Pol HE (2010) Exploring the brain network: a review on resting-state fMRI functional connectivity. Eur Neuropsychopharmacol 20:519–534CrossRefPubMed
43.
Zurück zum Zitat Buckner RL, Andrews-Hanna JR, Schacter DL (2008) The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci 1124:1–38CrossRefPubMed Buckner RL, Andrews-Hanna JR, Schacter DL (2008) The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci 1124:1–38CrossRefPubMed
44.
Zurück zum Zitat Greicius MD, Krasnow B, Reiss AL, Menon V (2003) Functional connectivity in the resting brain: a network analysis of the default mode hypothesis. Proc Natl Acad Sci U S A 100:253–258CrossRefPubMed Greicius MD, Krasnow B, Reiss AL, Menon V (2003) Functional connectivity in the resting brain: a network analysis of the default mode hypothesis. Proc Natl Acad Sci U S A 100:253–258CrossRefPubMed
45.
Zurück zum Zitat Lowe MJ, Dzemidzic M, Lurito JT, Mathews VP, Phillips MD (2000) Correlations in low-frequency BOLD fluctuations reflect cortico-cortical connections. NeuroImage 12:582–587CrossRefPubMed Lowe MJ, Dzemidzic M, Lurito JT, Mathews VP, Phillips MD (2000) Correlations in low-frequency BOLD fluctuations reflect cortico-cortical connections. NeuroImage 12:582–587CrossRefPubMed
46.
Zurück zum Zitat Yan CG, Wang XD, Zuo XN, Zang YF (2016) DPABI: data processing & analysis for (resting-state) brain imaging. Neuroinformatics 14:339–351CrossRefPubMed Yan CG, Wang XD, Zuo XN, Zang YF (2016) DPABI: data processing & analysis for (resting-state) brain imaging. Neuroinformatics 14:339–351CrossRefPubMed
48.
Zurück zum Zitat Frith C, Dolan R (1996) The role of the prefrontal cortex in higher cognitive functions. Brain Res Cogn Brain Res 5:175–181CrossRefPubMed Frith C, Dolan R (1996) The role of the prefrontal cortex in higher cognitive functions. Brain Res Cogn Brain Res 5:175–181CrossRefPubMed
49.
Zurück zum Zitat Shallice T (1988) From neuropsychology to mental structure. Cambridge University Press. 462 Shallice T (1988) From neuropsychology to mental structure. Cambridge University Press. 462
50.
Zurück zum Zitat Dalley JW, Cardinal RN, Robbins TW (2004) Prefrontal executive and cognitive functions in rodents: neural and neurochemical substrates. Neurosci Biobehav Rev 28:771–784CrossRefPubMed Dalley JW, Cardinal RN, Robbins TW (2004) Prefrontal executive and cognitive functions in rodents: neural and neurochemical substrates. Neurosci Biobehav Rev 28:771–784CrossRefPubMed
51.
Zurück zum Zitat Miyake A, Friedman NP, Emerson MJ, Witzki AH, Howerter A, Wager TD (2000) The unity and diversity of executive functions and their contributions to complex “frontal lobe” tasks: a latent variable analysis. Cogn Psychol 41:49–100CrossRefPubMed Miyake A, Friedman NP, Emerson MJ, Witzki AH, Howerter A, Wager TD (2000) The unity and diversity of executive functions and their contributions to complex “frontal lobe” tasks: a latent variable analysis. Cogn Psychol 41:49–100CrossRefPubMed
52.
Zurück zum Zitat Rapport MD, Orban SA, Kofler MJ, Friedman LM (2013) Do programs designed to train working memory, other executive functions, and attention benefit children with ADHD? A meta-analytic review of cognitive, academic, and behavioral outcomes. Clin Psychol Rev 33:1237–1252CrossRefPubMed Rapport MD, Orban SA, Kofler MJ, Friedman LM (2013) Do programs designed to train working memory, other executive functions, and attention benefit children with ADHD? A meta-analytic review of cognitive, academic, and behavioral outcomes. Clin Psychol Rev 33:1237–1252CrossRefPubMed
53.
Zurück zum Zitat Norman DA, Shallice T (1980) Attention to action: willed and automatic control of behavior. Center for human information processing (Technical report N° 99) Norman DA, Shallice T (1980) Attention to action: willed and automatic control of behavior. Center for human information processing (Technical report N° 99)
54.
Zurück zum Zitat Milner B (1963) Effects of different brain lesions on card sorting. Arch Neurol 9:90–100CrossRef Milner B (1963) Effects of different brain lesions on card sorting. Arch Neurol 9:90–100CrossRef
55.
Zurück zum Zitat Kaller T, Langguth N, Petermann F, Ganschow R, Nashan B, Schulz KH (2013) Cognitive performance in pediatric liver transplant recipients. Am J Transplant 13:2956–2965CrossRefPubMed Kaller T, Langguth N, Petermann F, Ganschow R, Nashan B, Schulz KH (2013) Cognitive performance in pediatric liver transplant recipients. Am J Transplant 13:2956–2965CrossRefPubMed
56.
Zurück zum Zitat Collmann H, Kazner E, Sprung C (1985) Supratentorial intraventricular tumors in childhood. Acta Neurochir Suppl (Wien) 35:75–79CrossRef Collmann H, Kazner E, Sprung C (1985) Supratentorial intraventricular tumors in childhood. Acta Neurochir Suppl (Wien) 35:75–79CrossRef
57.
Zurück zum Zitat Wu JS, Zhou LF, Tang WJ, Mao Y, Hu J, Song YY et al (2007) Clinical evaluation and follow-up outcome of diffusion tensor imaging-based functional neuronavigation: a prospective, controlled study in patients with gliomas involving pyramidal tracts. Neurosurgery 61:935–949CrossRefPubMed Wu JS, Zhou LF, Tang WJ, Mao Y, Hu J, Song YY et al (2007) Clinical evaluation and follow-up outcome of diffusion tensor imaging-based functional neuronavigation: a prospective, controlled study in patients with gliomas involving pyramidal tracts. Neurosurgery 61:935–949CrossRefPubMed
58.
Zurück zum Zitat Durston S, Davidson MC, Tottenham N, Galvan A, Spicer J, Fossella JA, Casey BJ et al (2006) A shift from diffuse to focal cortical activity with development. Dev Sci 9:1–8CrossRefPubMed Durston S, Davidson MC, Tottenham N, Galvan A, Spicer J, Fossella JA, Casey BJ et al (2006) A shift from diffuse to focal cortical activity with development. Dev Sci 9:1–8CrossRefPubMed
59.
Zurück zum Zitat Fair DA, Cohen AL, Power JD, Dosenbach NU, Church JA, Miezin FM et al (2009) Functional brain networks develop from a “local to distributed” organization. PLoS Comput Biol 5:e1000381CrossRefPubMedPubMedCentral Fair DA, Cohen AL, Power JD, Dosenbach NU, Church JA, Miezin FM et al (2009) Functional brain networks develop from a “local to distributed” organization. PLoS Comput Biol 5:e1000381CrossRefPubMedPubMedCentral
60.
Zurück zum Zitat Fair DA, Dosenbach NU, Church JA, Cohen AL, Brahmbhatt S, Miezin FM et al (2007) Development of distinct control networks through segregation and integration. Proc Natl Acad Sci U S A 104:13507–13512CrossRefPubMedPubMedCentral Fair DA, Dosenbach NU, Church JA, Cohen AL, Brahmbhatt S, Miezin FM et al (2007) Development of distinct control networks through segregation and integration. Proc Natl Acad Sci U S A 104:13507–13512CrossRefPubMedPubMedCentral
61.
Zurück zum Zitat Johnson MH, Munakata Y (2005) Processes of change in brain and cognitive development. Trends Cogn Sci 9:152–158CrossRefPubMed Johnson MH, Munakata Y (2005) Processes of change in brain and cognitive development. Trends Cogn Sci 9:152–158CrossRefPubMed
62.
Zurück zum Zitat Jolles DD, van Buchem MA, Crone EA, Rombouts SA (2011) A comprehensive study of whole-brain functional connectivity in children and young adults. Cereb Cortex 21:385–391CrossRefPubMed Jolles DD, van Buchem MA, Crone EA, Rombouts SA (2011) A comprehensive study of whole-brain functional connectivity in children and young adults. Cereb Cortex 21:385–391CrossRefPubMed
64.
Zurück zum Zitat Burgess PW, Shallice T (1996) Bizarre responses, rule detection and frontal lobe lesions. Cortex 32:241–259CrossRefPubMed Burgess PW, Shallice T (1996) Bizarre responses, rule detection and frontal lobe lesions. Cortex 32:241–259CrossRefPubMed
65.
66.
Zurück zum Zitat Johnson MH (2005) Building a brain. Developmental cognitive neuroscience: an introduction. Blackwell Publishing. 19–52 Johnson MH (2005) Building a brain. Developmental cognitive neuroscience: an introduction. Blackwell Publishing. 19–52
67.
Zurück zum Zitat Uylings HB (2006) Development of the human cortex and the concept of “critical” or “sensitive” periods. Lang Learn 56:59–90CrossRef Uylings HB (2006) Development of the human cortex and the concept of “critical” or “sensitive” periods. Lang Learn 56:59–90CrossRef
Metadaten
Titel
Cognitive performance change of pediatric patients after conducting frontal transcortical approach to treat lateral ventricular tumor
verfasst von
Wanchun Zhu
Jintao He
Xiang Li
Lei Wang
Zheng Lu
Chunde Li
Jian Gong
Publikationsdatum
22.09.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Child's Nervous System / Ausgabe 12/2017
Print ISSN: 0256-7040
Elektronische ISSN: 1433-0350
DOI
https://doi.org/10.1007/s00381-017-3604-x

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