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Table 1 Patient description

From: Specific effects of EEG based neurofeedback training on memory functions in post-stroke victims

Code Number of NF training sessions Sex Age Handedness ICD-10 diagnosis Lesion location Time since onset (days) MMSE NF performance
SMR NF training  
1 8 M 65 Lt I63.5 Rt posterior 41 29 +
2 7 M 64 Rt I63.5 Lt internal carotid artery 98 24 +
3 7 M 51 Rt I61.9 Lt basal ganglia 2869 29 -
4 9 M 64 Rt I63.9 Lt thalamus, arteria cerebri posterior (occipital-medial) 30 29 -
5 10 M 74 Rt I63.1 Bt cerebellum (rt), hippocampus (bt), mesencephalon (rt), occipital lobe (lt), splenium (bt) 136 29 +
6 10 M 62 Rt I61.9 Lt arteria cerebri media, occipital-parietal 1783 26 +
7 10 F 52 Rt I63.9 Rt basilar artery, pons- mesencephalon 693 29 +
8 9 F 37 Rt I60.2 Rt arteria communicans posterior, temporal 87 28 +
9 10 M 65 Rt I63.5 Lt arteria cerebri posterior 78 28 +
10 10 M 62 Rt I63.5 Lt arteria cerebri media 247 29 -
11 10 M 50 Rt I64 Bt basal ganglia, corpus collosum (truncus, genu), inferior temporal 2714 29 +
Upper Alpha NF training  
12 10 M 72 Rt I61.9, I60.9 Bt arteria cerebri media, occipital-parietal, frontal 808 30 +
13 6 M 73 Rt I63.3 Lt arteria cerebri media 2111 29 +
14 8 F 82 Rt I63.9 Lt pons 104 28 -
15 10 F 53 Rt I63.5 Rt arteria cerebri media 930 30 -
16 10 M 76 Rt I63.3 Rt arteria cerebri media 133 24 +
17 5 M 71 Rt I63.9 Rt arteria cerebri media 362 29 +
Treatment as usual  
18   M 75 Rt I63.9 Rt arteria cerebri media 87 27  
19   M 57 Rt I63.5 Lt arteria cerebri media 93 27  
20   M 78 Rt I63.9 Lt posterior occipital, cerebellum 88 28  
21   M 64 Rt I63.3 Rt arteria cerebri media 61 24  
22   M 49 Rt I63.5 Lt capsula interna 32 28  
23   W 61 Rt I60.9 Lt arteria communicans interior 138 29  
24   M 71 Rt I63.8 Rt cerebellum 43 29  
  1. Bt bilateral, F female, Lt left, M male, MMSE mini-mental state examination, and Rt right. NF neurofeedback performance: “+” indicates that the patient was able to linearly increase the trained frequency band, “-“ indicates that the patient was not able to linearly increase the trained frequency band