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. Fig and .. Ecgs, 2_2 Electrodes positioning for: a) standard 12-lead b) Mason-Likar 12-lead and c) 3-lead, p.28

I. Fig, 2_3 Electrodes positioning for: a) EASI 3-lead ECG b) Frank XYZ-lead VCG [Macfarlane'89] c), p.32

.. I. Fig, 2_4 Body artefacts sources affecting the ECG signal's quality, p.36

.. I. Fig, 3_1 Examples of wearable sensor-systems: a) Wealthy suit, b) Philips HeartCycle t-shirt, c) VivoMetrics Vivo Responder belt, d) Exmovere BT2 watch (Images a) and b) are extracted from [Goodson'06], [Luprano'06] and c) and d) reprinted from [McAdams'11] with permission of the authors), p.47

.. I. Fig, 4_1 a) a circle type element b) electrode displacement map, p.61

.. I. Fig, 4_2 Electrodes' positioning while moving a set of 4 electrodes, p.62

.. I. Fig, 4_3 Design of the sensor system modalities, p.64

. I. Fig, 4_4 EPI-MEDICS project based sensor-system placement at Mason-Likar positioning for 8 subjects superposed at V2 and a brief description of each of the subject, p.66

I. Fig, 4_5 Two different models for the calculation of patient-specific transformations. Here S1 indicates a standard 12-lead ECG and ML a Mason-Likar 12-lead, p.68

.. I. Fig, 4_6 Optimal correlation (Cor) and root mean square (RMS) values computation method for typical beats of the synthesised and the reference ECGs comparison, p.72

. I. Fig, 4_7 Normalised comparison results between a 12-lead Mason-Likar positioning ECG (ML-ECG) and 3 simplified ECGs for 8 healthy volunteers: 4 women and 4 men, p.74

.. I. Fig, 4_8 Normalised comparison results between a first standard 12-lead ECG (S1-ECG) and 3 simplified ECGs for 8 healthy volunteers: 4 women and 4 men, p.77

.. I. Fig, 4_9 Normalised comparison results between the second standard 12-lead ECG (S2-ECG) and the three 12-lead ECGs derived from the 3 simplified ECGs for 8 healthy volunteers: 4 women and 4 men, p.80

.. I. Fig, 4_10 Normalised comparison results between a second standard 12-lead ECG (S2-ECG) and 3 sets of synthesised 12-lead ECGs reconstructed from 3 simplified ECGs recorded at a few weeks interval for the 1 st subject, p.84

.. I. Fig, 4_11 Normalised comparison results between a second standard 12-lead ECG (S2-ECG) and 3 sets of synthesised 12-lead ECGs reconstructed from 3 simplified ECGs recorded at a few weeks interval for the 3 rd subject, p.84

.. I. Fig, 4_12 Normalised comparison results between a second standard 12-lead ECG (S2-ECG) and 3 sets of synthesised 12-lead ECGs reconstructed from 3 simplified ECGs recorded at a few weeks interval for the 4 th subject, p.84

I. Fig, 6_1 Approach of data and model driven services orchestration, p.124

I. Fig, 6_2 Process knowledge modelling schema, p.127

I. Fig, 6_3 Schematic dynamic business process activity, p.128

I. Fig, 6_4 Symbolic representation of orchestrated atomic and composite services, p.129

I. Fig, 6_5 Core-ontology empowering decision making services orchestration, p.131

I. Fig, 7_1 Data and model driven Service Oriented Architecture, p.139

I. Fig, 7_2 Decision support system process knowledge ontology empowering the management of dynamic decision-making business process, p.142

. Fig and . Ii, 7_4 Data and model driven service oriented architecture for decision-making support, p.145

. Fig and . Ii, 7_5 Domain-specific data and model driven service oriented architecture (DM-SOA), p.147

I. Fig, 8_1 Use case diagram of Personal Cardio Assistant system (PCAs) for an anomaly suspicion scenario ( " p " stands for personal), p.154

I. Fig, 8_2 Class diagram of the PCAs input data, p.154

I. Fig, 8_3 Use case diagram of Personal Cardio Assistant system (PCAs) for a follow-up sce- nario, p.157

I. Fig, 8_4 Use case diagram of Personal Cardio Assistant system (PCAs) for an emergency sce- nario, p.158

. Fig and . Ii, 8_6 Choreography of the optimal personal ECG recording system selection Legend: PEM ? ECGs registered into the Personal ECG Monitor; T.characterisation ? transformation characterisation; Multi-grid composition ? assessment descriptors multi-grid composition; Intersignal descr. comp. ? intersignal descriptors computation, p.160

. Fig and . Ii, 8_7 Schema of a dynamic business process for optimal personal ECG recording system se, p.161