Neuroimaging and emerging psychotic disorders:: The Melbourne ultra-high risk studies

被引:96
作者
Pantelis, C.
Velakoulis, D.
Wood, S. J.
Yuecel, M.
Yung, A. R.
Phillips, L. J.
Sun, D.-Q.
Mcgorry, P. D.
机构
[1] Sunshine Hosp, Melbourne Neuropsychiat Ctr, Royal Melbourne Hosp, Univ Melbourne, St Albans, Vic 3021, Australia
[2] Natl Neurosci Facil, Melbourne, Vic, Australia
[3] Univ Melbourne, Dept Psychiat, OXYGEN Res Ctr, Parkville, Vic 3052, Australia
[4] Univ Melbourne, Dept Psychol, Melbourne, Vic, Australia
[5] Univ Calif Los Angeles, Clin Neurosci Lab, Los Angeles, CA USA
基金
英国医学研究理事会;
关键词
D O I
10.1080/09540260701512079
中图分类号
R749 [精神病学];
学科分类号
100205 ;
摘要
Although the underlying neurobiology of emerging psychotic disorders is not well understood, evidence from structural imaging and other studies support the notion that schizophrenia arises as a consequence of both an 'early neurodevelopmental' disturbance, as well as 'late neurodevelopmental' changes occurring during the initial stages of a psychotic illness, including around the time of transition to illness. In line with this, our longitudinal MRI findings in individuals at ultra-high risk for developing a psychotic illness show that there are excessive neuroanatomical changes in those who convert to psychosis. These aberrant changes are observed most prominently in medial temporal and prefrontal lobe regions. In a further series of longitudinal studies in first-episode psychosis, we have identified changes in prefrontal regions that indicate an accelerated loss of grey matter in patients compared to healthy control subjects. We suggest that the available evidence is consistent with the presence of subtle regionally and temporally specific neurobiological changes through the course of psychosis (Pantelis et al., 2005), including: (1) evidence for early (pre- and peri-natal) neurodevelopmental anomalies, (2) evidence for progressive grey matter loss involving medial temporal and orbital prefrontal regions around the time of transition to illness, and (3) evidence of late (post-pubertal) neurodevelopmental changes soon after the onset of psychosis, involving an acceleration of normal brain maturational processes, associated with significant loss of grey matter in dorsal prefrontal regions. The pathological processes underlying such changes remain unclear and may reflect anomalies in genetic and/or other endogenous mechanisms responsible for brain maturation, the adverse effects of intense or prolonged stress, or other environmental factors. These findings suggest that early markers of impending illness may prove difficult to define, and that brain changes in psychosis may better be conceptualized as anomalous trajectories of brain development. Further, active changes during transition to illness may present the potential to intervene and ameliorate these changes with potential benefit clinically.
引用
收藏
页码:373 / 381
页数:9
相关论文
共 91 条
[1]   North American Prodrome Longitudinal Study: A collaborative multisite approach to prodromal schizophrenia research [J].
Addington, Jean ;
Cadenhead, Kristin S. ;
Cannon, Tyrone D. ;
Cornblatt, Barbara ;
McGlashan, Thomas H. ;
Perkins, Diana O. ;
Seidman, Larry J. ;
Tsuang, Ming ;
Walker, Elaine F. ;
Woods, Scott W. ;
Heinssen, Robert .
SCHIZOPHRENIA BULLETIN, 2007, 33 (03) :665-672
[2]   An MRI study of temporal lobe structures in men with bipolar disorder or schizophrenia [J].
Altshuler, LL ;
Bartzokis, G ;
Grieder, T ;
Curran, J ;
Jimenez, T ;
Leight, K ;
Wilkins, J ;
Gerner, R ;
Mintz, J .
BIOLOGICAL PSYCHIATRY, 2000, 48 (02) :147-162
[3]   Amygdala enlargement in bipolar disorder and hippocampal reduction in schizophrenia: An MRI study demonstrating neuroanatomic specificity [J].
Altshuler, LL ;
Bartzokis, G ;
Grieder, T ;
Curran, J ;
Mintz, J .
ARCHIVES OF GENERAL PSYCHIATRY, 1998, 55 (07) :663-664
[4]   Regionally specific neuronal pathology in untreated patients with schizophrenia: A proton magnetic resonance spectroscopic imaging study [J].
Bertolino, A ;
Callicott, JH ;
Elman, I ;
Mattay, VS ;
Tedeschi, G ;
Frank, JA ;
Breier, A ;
Weinberger, DR .
BIOLOGICAL PSYCHIATRY, 1998, 43 (09) :641-648
[5]   ANTERIOR HIPPOCAMPAL VOLUME REDUCTIONS PREDICT FRONTAL-LOBE DYSFUNCTION IN FIRST EPISODE SCHIZOPHRENIA [J].
BILDER, RM ;
BOGERTS, B ;
ASHTARI, M ;
WU, HW ;
ALVIR, JM ;
JODY, D ;
REITER, G ;
BELL, L ;
LIEBERMAN, JA .
SCHIZOPHRENIA RESEARCH, 1995, 17 (01) :47-58
[6]  
BOGERTS B, 1990, PSYCHIAT RES-NEUROIM, V35, P1
[7]   Radiological findings in individuals at high risk of psychosis [J].
Borgwardt, SJ ;
Radue, EW ;
Götz, K ;
Aston, J ;
Drewe, M ;
Gschwandtner, U ;
Haller, S ;
Pflüger, M ;
Stieglitz, RD ;
McGuire, PK ;
Riecher-Rössler, A .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2006, 77 (02) :229-233
[8]   Regional gray matter volume abnormalities in the at risk mental state [J].
Borgwardt, Stefan J. ;
Riecher-Roessler, Anita ;
Dazzan, Paola ;
Chitnis, Xavier ;
Aston, Jacqueline ;
Drewe, Margret ;
Gschwandtner, Ute ;
Haller, Sven ;
Pflueger, Marlon ;
Rechsteiner, Evelyne ;
D'Souza, Marcus ;
Stieglitz, Rolf-Dieter ;
Radu, Ernst-Wilhelm ;
McGuire, Philip K. .
BIOLOGICAL PSYCHIATRY, 2007, 61 (10) :1148-1156
[9]   Does stress damage the brain? [J].
Bremner, JD .
BIOLOGICAL PSYCHIATRY, 1999, 45 (07) :797-805
[10]   Increased prefrontal cerebral blood flow in first-episode schizophrenia following treatment:: longitudinal positron emission tomography study [J].
Brewer, Warrick J. ;
Yucel, Murat ;
Harrison, Ben J. ;
McGorry, Patrick D. ;
Olver, James ;
Egan, Gary F. ;
Velakoulis, Dennis ;
Pantelis, Christos .
AUSTRALIAN AND NEW ZEALAND JOURNAL OF PSYCHIATRY, 2007, 41 (02) :129-135