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Biomedical subjects

R Fenici

Publications and source records attributed to R Fenici.

At least 19 recordsLinked to original sources

The effect of geometric and topologic differences in boundary element models on magnetocardiographic localization accuracy.

This study was performed to evaluate the changes in magnetocardiographic (MCG) source localization results when the geometry and the topology of the volume conductor model were altered. Boundary element volume conductor models of three patients were first constructed. These so-called reference torso models were then manipulated to mimic various sources of error in the measurement and analysis procedures. Next, equivalent current dipole localizations were calculated from simulated and measured multichannel MCG data. The localizations obtained with the reference models were regarded as the "gold standard." The effect of each modification was investigated by calculating three-dimensional distances from the gold standard localizations to the locations obtained with the modified model. The results show that the effect of the lungs and the intra-ventricular blood masses is significant for deep source locations and, therefore, the torso model should preferably contain internal inhomogeneities. However, superficial sources could be localized within a few millimeters even with nonindividual, so called standard torso models. In addition, the torso model should extend long enough in the pelvic region, and the positions of the lungs and the ventricles inside the model should be known in order to obtain accurate localizations.

Biomedical Engineering↗

Bioelectromagnetic localization of a pacing catheter in the heart.

The accuracy of localizing source currents within the human heart by non-invasive magneto- and electrocardiographic methods was investigated in 10 patients. A non-magnetic stimulation catheter inside the heart served as a reference current source. Biplane fluoroscopic imaging with lead ball markers was used to record the catheter position. Simultaneous multichannel magnetocardiographic (MCG) and body surface potential mapping (BSPM) recordings were performed during catheter pacing. Equivalent current dipole localizations were computed from MCG and BSPM data, employing standard and patient-specific boundary element torso models. Using individual models with the lungs included, the average MCG localization error was 7+/-3 mm, whereas the average BSPM localization error was 25+/-4 mm. In the simplified case of a single homogeneous standard torso model, an average error of 9+/-3 mm was obtained from MCG recordings. The MCG localization accuracies obtained in this study imply that the capability of multichannel MCG to locate dipolar sources is sufficient for clinical purposes, even without constructing individual torso models from x-ray or from magnetic resonance images.

Body Surface Potential Mapping↗

Nonfluoroscopic localization of an amagnetic stimulation catheter by multichannel magnetocardiography.

This study was performed to: (1) evaluate the accuracy of noninvasive magnetocardiographic (MCG) localization of an amagnetic stimulation catheter; (2) validate the feasibility of this multipurpose catheter; and (3) study the characteristics of cardiac evoked fields. A stimulation catheter specially designed to produce no magnetic disturbances was inserted into the heart of five patients after routine electrophysiological studies. The catheter position was documented on biplane cine x-ray images. MCG signals were then recorded in a magnetically shielded room during cardiac pacing. Noninvasive localization of the catheter's tip and stimulated depolarization was computed from measured MCG data using a moving equivalent current-dipole source in patient-specific boundary element torso models. In all five patients, the MCG localizations were anatomically in good agreement with the catheter positions defined from the x-ray images. The mean distance between the position of the tip of the catheter defined from x-ray fluoroscopy and the MCG localization was 11 +/- 4 mm. The mean three-dimensional difference between the MCG localization at the peak stimulus and the MCG localization, during the ventricular evoked response about 3 ms later, was 4 +/- 1 mm calculated from signal-averaged data. The 95% confidence interval of beat-to-beat localization of the tip of the stimulation catheter from ten consecutive beats in the patients was 4 +/- 2 mm. The propagation velocity of the equivalent current dipole between 5 and 10 ms after the peak stimulus was 0.9 +/- 0.2 m/s. The results show that the use of the amagnetic catheter is technically feasible and reliable in clinical studies. The accurate three-dimensional localization of this multipurpose catheter by multichannel MCG suggests that the method could be developed toward a useful clinical tool during electrophysiological studies.

Adult↗

Cardiovascular adaptation during action pistol shooting.

BACKGROUND: Action Pistol Shooting, implies high degree of physical and psychological stress, however cardiovascular adaptation during competition has not been studied so far. METHODS: We studied six healthy males athletes, during the Italian National Dynamic Pistol Shooting Championship. ECG was monitored and blood pressure (BP) manually measured along the match. RESULTS: Mean heart rate (HR) was close to 100 bpm per minute in all but one shooters. Marked tachycardia, above 180 beats per minute was recorded in four shooters, during "field course" stages. In two cases the heart rate under stress reached about 200 bpm, for the occurrence of paroxysmal atrial arrhythmias. BP behavior was different among the six shooters with mean systolic values ranging between 140 and 170 mmHg and maximal systolic values between 160 e 240 mmHg. CONCLUSIONS: Action Pistol Shooting induces acute elevation of HR and BP, which may reach abnormal values and can be associated with impaired performance and score. Further study is warranted in shooters undergoing combat-like tournaments to evaluate unperceived cardiovascular stress and their coping capability.

Adaptation, Physiological↗

Nonfluoroscopic localization of an amagnetic catheter in a realistic torso phantom by magnetocardiographic and body surface potential mapping.

This study was performed to evaluate the accuracy of multichannel magnetocardiographic (MCG) and body surface potential mapping (BSPM) in localizing three-dimensionally the tip of an amagnetic catheter for electrophysiology without fluoroscopy. An amagnetic catheter (AC), specially designed to produce dipolar sources of different geometry without magnetic disturbances, was placed inside a physical thorax phantom at two different depths, 38 mm and 88 mm below the frontal surface of the phantom. Sixty-seven MCG and 123 BSPM signals generated by the 10 mA current stimuli fed into the catheter were then recorded in a magnetically shielded room. Non-invasive localization of the tip of the catheter was computed from measured MCG and BSPM data using an equivalent current dipole source in a phantom-specific boundary element torso model. The mean 3-dimensional error of the MCG localization at the closer level was 2 +/- 1 mm. The corresponding error calculated from the BSPM measurements was 4 +/- 1 mm. At the deeper level, the mean localization errors of MCG and BSPM were 7 +/- 4 mm and 10 +/- 2 mm, respectively. The results showed that MCG and BSPM localization of the tip of the AC is accurate and reproducible provided that the signal-to-noise ratio is sufficiently high. In our study, the MCG method was found to be more accurate than BSPM. This suggests that both methods could be developed towards a useful clinical tool for nonfluoroscopic 3-dimensional electroanatomical imaging during electrophysiological studies, thus minimizing radiation exposure to patients and operators.

Body Surface Potential Mapping↗

Magnetocardiographic pacemapping for nonfluoroscopic localization of intracardiac electrophysiology catheters.

The purpose of the study was to validate, in patients, the accuracy of magnetocardiography (MCG) for three-dimensional localization of an amagnetic catheter (AC) for multiple monophasic action potential (MAP) with a spatial resolution of 4 mm2. The AC was inserted in five patients after routine electrophysiological study. Four MAPs were simultaneously recorded to monitor the stability of endocardial contact of the AC during the MCG localization. MAP signals were band-pass filtered DC-500 Hz and digitized at 2 KHz. The position of the AC was also imaged by biplane fluoroscopy (XR), along with lead markers. MCG studies were performed with a multichannel SQUID system in the Helsinki BioMag shielded room. Current dipoles (5 mm; 10 mA), activated at the tip of the AC, were localized using the equivalent current dipole (ECD) model in patient-specific boundary element torso. The accuracy of the MCG localizations was evaluated by: (1) anatomic location of ECD in the MRI, (2) mismatch with XR. The AC was correctly localized in the right ventricle of all patients using MRI. The mean three-dimensional mismatch between XR and MCG localizations was 6 +/- 2 mm (beat-to-beat analysis). The co efficient of variation of three-dimensional localization of the AC was 1.37% and the coefficient of reproducibility was 2.6 mm. In patients, in the absence of arrhythmias, average local variation coefficients of right ventricular MAP duration at 50% and 90% of repolarization, were 7.4% and 3.1%, respectively. This study demonstrates that with adequate signal-to-noise ratio, MCG three-dimensional localizations are accurate and reproducible enough to provide nonfluoroscopy dependant multimodal imaging for high resolution endocardial mapping of monophasic action potentials.

Action Potentials↗

Reproducibility of transesophageal pacing in patients with Wolff-Parkinson-White syndrome.

The purpose of this study was to assess, in patients with ventricular preexcitation, the time dependent physiological variation of antegrade conduction properties in the AV node and in accessory pathways (Aps) as a function of autonomic tone variation induced by posture and physical effort, using noninvasive transesophageal atrial pacing. In 74 WPW patients (mean age 21.31 +/- 9.46 yrs), AV node and Kent antegrade effective refractory periods (at pacing cycle lengths 600, 400, and 320 ms), Wenckebach point, shortest preexcited RR intervals during sustained atrial fibrillation (AF) or atrial pacing, as well as the inducibility of AV reentry tachycardia (AVRT) and AF/flutter (AFL) were assessed. All measurements were carried out at rest, in supine and upright positions, and during effort. A second study was carried out approximately 3 months after the first study. The coefficient of variation (CVs) and reproducibility (CRs) were calculated. For each parameter, the differences between the mean of the two studies were not statistically significant. The CVs and CRs ranged between 0.4% and 4% and between 2 and 28 ms, respectively. AF was induced in 40 (54%) of 74 patients at the first study and in 30 (40.5%) of 74 patients at the second study. AVRT was induced in 33 (45%) of 74 patients at the first study and in 38 (51.3%) of 74 patients at the second study. The reproducibility was 45% for AF/AFL and 65% for reentry tachycardia. Transesophageal atrial pacing is a reliable method for noninvasive reproducible evaluation of antegrade electrophysiological properties of both the AV node and APs in WPW patients. However, the effect of autonomic balance variation has to be taken into account and precisely defined because it may significantly affect the inducibility of supraventricular arrhythmias and the estimation of the absolute values of the vulnerable parameters.

Adult↗

Recurrent perimyocarditis following a non penetrating chest trauma. A case report.

A young man, after a non penetrating chest trauma, developed recurrent episodes of fever, chest pain, pleural and pericardial effusion, without laboratory evidence of viral infections, or positivity for conventional autoimmunity markers. A clearcut positivity for more specific cardiac autoantibodies, against Beta 1 adrenoceptors (AB1AA), was found (at all dilutions from 1:20 to 1:160). A full dosage of Prednisone rapidly relieved all symptoms, whereas antibiotic therapy had been previously uneffective. At a follow-up control after three months, the patient was healed and AB1AA were positive only at dilutions 1:20 and 1:40. As silent viral myocarditis was apparently ruled out by serological negativity for viral infections, it is possible that autoimmunity could have played a primary pathogenetic role for the development of pericarditis in this patient. Further work is needed to ascertain whether or not AB1AA detection could be a specific marker of cardiac autoimmunity phenomena.

Adult↗

Multiple system atrophy presenting as parkinsonism: clinical features and diagnostic criteria.

To evaluate the possibility that parkinsonian signs may be the only presenting feature of multiple system atrophy (MSA), parkinsonian patients were studied who had no atypical clinical signs and had no symptoms of autonomic dysfunction, but who reported that they had not experienced the anticipated good response to dopaminergic treatment. These stringent criteria identified 20 patients from a series of 298 consecutive parkinsonian outpatients. The following clinical pointers were analysed: (a) rate of disease progression; (b) symmetry of parkinsonian symptoms and signs; (c) occurrence of resting tremor during the first three years from onset. In addition, all patients underwent (d) acute and chronic challenge with dopaminergic drugs; (e) cardiovascular reflex autonomic function tests; (f) high field MRI. Rapid progression of disease was seen in 45% of patients, onset was symmetric in 25%, tremor was absent at onset in 70%, response to dopaminergic drug challenges was inadequate in 40%, abnormal cardiovascular reflexes occurred in 50%, and some abnormal MRI finding occurred in 35% of cases. Each of these features was equally weighted by giving to each patient a 0 to 6 point score corresponding to the number of abnormal findings. Fifteen patients scoring higher than 1 were considered at risk for having MSA: five of them were classified as clinically possible (score 2), six as clinically probable (score 3-4), and four patients were classified as clinically definite multiple system atrophy (score 5). The six pointers considered were variably combined in each patient, none of them being universally abnormal in patients with high scores. The patients were followed up for a mean 2.1 (SEM 0.65) years. All but one of the 10 patients prospectively classified as probable or definite MSA developed unequivocal clinical signs of fully symptomatic MSA. A receiver operator characteristic cure was plotted for the prospective score based on follow up diagnosis. The best compromise for trade off between sensitivity and specificity was a cut off value at a score of 3. The sensitivity and specificity of the individual pointers considered to predict fully symptomatic MSA varied considerably, and no single item could predict whether patients presenting with just parkinsonian signs went on during the two year follow up period to develop fully symptomatic MSA. Instead, the number of abnormalities offered a predictive value for the clinical prognosis of these parkinsonian patients.

Adult↗

Magnetocardiography: ventricular arrhythmias.

Since 1985, magnetocardiographic (MCG) mapping has been carried out in patients with severe ventricular arrhythmias, related to primary cardiomyopathy and ischaemic heart disease, for the purpose of non-invasive localization of the arrhythmogenic substrate or to screen patients at risk of sudden death. Data reported by several authors have demonstrated that magnetocardiography is useful to investigate non-invasively some of the possible electrogenetic abnormalities underlying clinical arrhythmias and to identify patients at risk of sudden death through the detection of late magnetic fields and quantitative estimation of repolarization/depolarization abnormalities. In this paper all the above-mentioned applications have been briefly reviewed. Experience based on 35 patients, with Lown class 3 or higher ventricular arrhythmias, who have been studied magnetically, to localize the site of origin of their ventricular arrhythmia and to calculate their Relative Smoothness Index is described. Reproducible MCG three-dimensional localization of both ventricular extrasystoles and sustained tachycardia proved possible, using even single channel instrumentation, with an accuracy in the order of 10 mm as demonstrated by inverse localization of a biomagnetic catheter. The RS index was significantly lower in patients with cardiomyopathy or sudden death, but this parameter needs further investigation, as methodological drawbacks could impair its clinical reliability. In conclusion, MCG localization of the arrhythmogenic substrate can be useful to guide aimed invasive electrophysiology, biopsy and ablation close to the arrhythmogenic substrate.

Arrhythmias, Cardiac↗

Cardiac biopsy in patients with "primary" atrial fibrillation. Histologic evidence of occult myocardial diseases.

Fourteen patients (ten men and four women; mean age, 37 years) with lone atrial fibrillation (AF) (1 to 18 months' duration) were evaluated by thyroid function tests, two-dimensional echocardiography, hemodynamics, coronary angiography, and left ventricular endomyocardial biopsy, because of unresponsiveness to the usual antiarrhythmic therapy. The results of the T3, T4, TSH, and TRH tests were normal in all patients; cardiac valves and ventricular and atrial sizes (left atrium less than 40 mm) were within the normal limits; also normal were LVEDP (less than or equal to 10 mm Hg) and EF (greater than 0.50). Histologic findings were abnormal in all cases, with three patients showing cardiomyopathic changes, three other patients showing active myocarditis (lymphocytic in two and eosinophilic in one), and eight patients with nonspecific necrosis or fibrosis or both. Steroids (prednisone; 50 mg/m2 of body surface area daily) used in addition to antiarrhythmic therapy in patients with eosinophilic and lymphocytic active myocarditis were able to cause reversion to sinus rhythm, while the other patients continued to have AF. This study documents that occult myocardial diseases (myocarditis, cardiomyopathy, and nonspecific necrosis or fibrosis) can underlie "primary" AF. The addition of steroids to antiarrhythmic therapy in patients with refractory AF and histologic evidence of active myocarditis seems to be useful in controlling the arrhythmia.

Adult↗

[Surface recording technique of His bundle potential in man].

A method is presented for the non-invasive recording of His bundle electrical activity from the body surface in man. Several bipolar ECG leads were employed: precordial, Frank "x" and Frank "z". Signals were filtered (30-300 Hz), highly amplified (5 x 104) and averaged. Digital averaging was performed on line by a microcomputer (OTE Biomedica Neuroaverager mod. 1172). Surface investigation was performed in 10 patients affected by different conduction pathology simultaneously with HBE recordings for diagnostic purpose and in 5 normal volunteers only incruently. Highly repeatable electrical deflections (B waves) were recorded in the PR segment. In all patients a good correspondence between surface (B wave) and intracardiac (H wave) was found. Atrial pacing and pharmacological test were used in order to ascertain the real source of B wave.

Bundle of His↗

[Automatic analysis of systolic time intervals using polygraphic examinations].

For clinical purpose, poligraphyc signals are analyzed: systolic time intervals (STI) and all other significative magnitudes are measured. A system of modular programs (ATS), in Assembler and Fortran IV languages, digitalizes, filters and analyzes three simultaneous analogical signals: ECG, PCK and CP. ATS, adapted polynomial and gonyometrics leats-squares smoothings to the signals for leaving-out spikes and drifts, employs algorhythms that, by a statistic knowledge of the thresholds of the fist derivative of each signal and of the globality of smoothed signals, converge to the measures of the required significative magnitudes. A statistic investigation (on 100 samples) showed that ATS is better than every manual analysis in terms of efficiency, speed and amount of information. In conclusion ATS program is suitable for clinical purposes.

Adult↗