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Geometrical accuracy and fusion of multimodal vascular images: a phantom study.

The aim of this work was to compare the geometrical accuracy of x-ray angiography, magnetic resonance imaging (MRI), x-ray computed tomography (XCT), and ultrasound imaging (B-mode and IVUS, or intravascular ultrasound) for measuring the lumen diameters of blood vessels. An image fusion method was also developed to improve these measurements. The images were acquired from a phantom that mimic vessels of known diameters. After acquisition, the multimodal images were coregistered by manual alignment of fiducial markers, and then by maximization of mutual information. The fusion method was performed by means of a fuzzy logic modeling approach followed by a combination process based on a possibilistic theory. The results showed (i) the better geometrical accuracy of XCT and IVUS compared to the other modalities, and (ii) the better accuracy and smaller variability of fused images compared to single modalities, with respect to most diameters investigated. For XCT, the error varied from 0.4% to 5.4%, depending on the vessel diameter that ranged from 0.93 to 6.24 mm. For IVUS, the error ranged from -0.3% to 1.7% but the smallest vessel (0.93 mm) could not be investigated because of the probe size. Compared to others fusion schemes, the XCT-MRI fused images provided the best results for both accuracy (from -1.6% to 0.2% for the three largest vessels) and robustness (mean relative error of 1.9%). To conclude, this work underlined both the usefulness of the multimodality vascular phantom as a validation tool and the utility of image fusion in the vascular context.

Angiography↗

Sound propagation in rigid bends: a multimodal approach.

The sound propagation in a waveguide with bend of finite constant curvature is analyzed using multimodal decomposition. Two infinite first-order differential equations are constructed for the pressure and velocity in the bend, projected on the local transverse modes. A Riccati equation for the impedance matrix is then derived, which can be numerically integrated after truncation at a sufficient number of modes. An example of validation is considered and results show the accuracy of the method and its suitability for the formulation of radiation conditions. Reflection and transmission coefficients are also computed, showing the importance of higher order mode generation at the junction between the bend and the straight ducts. The case of varying cross-section curved ducts is also considered using multimodal decomposition.

Journal Article↗

Multimode shunt damping of piezoelectric smart panel for noise reduction.

Multimode shunt damping of piezoelectric smart panel is studied for noise reduction. Piezoelectric smart panel is a plate structure on which a piezoelectric patch is attached with an electrical shunt circuit. When an incidence sound is impinged on the panel structure, the structure vibrates and the attached piezoelectric patch produces an electrical energy, which can be effectively dissipated as heat via the electrical shunt circuit. Since the energy dissipation strongly depends on the vibration mode of the panel structure, many patches are required for multiple vibration modes. Instead of using multiple piezoelectric patches, a single piezoelectric patch is used in conjunction with a blocked shunt circuit for multimode shunt damping. Modeling, shunt parameter tuning, and implementation of the blocked shunt circuit along with an acoustic test of the panel are explained. A remarkable reduction of the transmitted noise was achieved for multiple modes of the panel. Since this technology has many merits in terms of compactness, low cost, robustness, and ease of installation, practical applications in many noise problems can be anticipated.

Acoustics↗

Dyspeptic patients with visceral hypersensitivity: sensitisation of pain specific or multimodal pathways?

BACKGROUND AND AIMS: Patients with functional dyspepsia who have hypersensitivity to gastric distension have more prevalent pain, suggesting the presence of hyperalgesia. It is unclear whether this reflects activation of pain specific afferent pathways or multimodal afferent pathways that also mediate non-painful sensations. In the former case, hyperalgesia should occur when intensity of non-painful sensations is still low. The aim of the study was to analyse whether the symptom profile during gastric dissentions in functional dyspepsia patients with hyperalgesia reflects sensitisation of pain specific or multimodal pathways. METHODS: Forty eight consecutive dyspeptic patients (35 female) underwent gastric sensitivity testing with a barostat balloon using a double random staircase protocol. At the end of every distending step, patients scored perception of upper abdominal sensations on a graphic 0-6 rating scale and completed visual analogue scales (VAS 0-100 mm) for pain, nausea, satiety, and fullness. The end point was a rating scale of 5 or more. RESULTS: Hypersensitivity was present in 20 patients (40%); gastric compliance did not differ between normo- and hypersensitive patients. At maximal distension (score 5 or more), hypersensitive patients had significantly lower distending pressures and intra-balloon volumes, but similar VAS scores for pain, nausea, satiety, and fullness compared with normosensitive patients. In both normosensitive and hypersensitive patients, elevation of pain VAS scores with increasing distending pressures paralleled the elevation in VAS scores for nausea, satiety, and fullness. CONCLUSIONS: Hypersensitive dyspeptic patients reach the same intensity of painful and non-painful sensations as normosensitive patients but at lower distending pressures. Hyperalgesia occurs in hypersensitive dyspeptic patients at distending pressures that also induce intense non-painful sensations. These findings argue against isolated upregulation of pain specific afferents in functional dyspepsia patients with visceral hypersensitivity.

Adult↗

Brain magnetic resonance imaging and multimodal evoked potentials in benign and secondary progressive multiple sclerosis.

Brain MRI and multimodal evoked potentials (EPs) were obtained for 13 patients with benign multiple sclerosis and 13 patients with secondary progressive multiple sclerosis, matched for age and duration of the disease, to investigate the nature of the disability in multiple sclerosis. Patients with secondary progressive multiple sclerosis had significantly greater lesion loads for five of seven periventricular regions and for three of nine regions separate from the ventricles. Patients with secondary progressive multiple sclerosis also had more severe infratentorial atrophy scores (p = 0.04), whereas there were no differences between the two groups in number and extent of enhancing lesions. The frequencies were significantly higher and severities greater for multimodal EP abnormalities of all the modalities in patients with secondary progressive multiple sclerosis. At least one EP component was absent in 12 (92%) patients with secondary progressive multiple sclerosis but in only one patient (8%) with benign multiple sclerosis (p < 0.001). There was neurophysiological evidence for cervical cord involvement in eight (61%) patients with secondary progressive multiple sclerosis and in one with benign multiple sclerosis (p < 0.01). These data indicate that the total amount of lesions, the distribution, and the nature of the pathological process might all account for the development of disability in multiple sclerosis.

Age of Onset↗

Multimodality in vivo imaging systems: twice the power or double the trouble?

Many different types of radiation have been exploited to provide images of the structure and function of tissues inside a living subject. Each imaging modality is characterized by differing resolutions on the spatial and temporal scales, and by a different sensitivity for measuring properties related to morphology or function. Combinations of imaging modalities that integrate the strengths of two modalities, and at the same time eliminate one or more weaknesses of an individual modality, thus offer the prospect of improved diagnostics, therapeutic monitoring, and preclinical research using imaging approaches. This review discusses the advantages and challenges in developing multimodality imaging systems for in vivo use, highlights some successful combinations that are now routinely used in the clinic and in research, and discusses recent advances in multimodality instrumentation that may offer new opportunities for imaging.

Artifacts↗

Classification of breast lesions with multimodality computer-aided diagnosis: observer study results on an independent clinical data set.

PURPOSE: To evaluate a computer-aided diagnosis multimodality intelligent workstation as an aid to radiologists in the interpretation of mammograms and breast sonograms. MATERIALS AND METHODS: An institutional review board approved the protocol for an observer study with signed consent, as well as the retrospective use of the mammograms, sonograms, and clinical data with waiver of consent. The HIPAA-compliant observer study was conducted with five breast radiologists and five breast imaging fellows, all of whom gave confidence ratings and patient management decisions, both without and with the computer aid, for 97 lesions that were unknown to both the observers and the computer. The performance of each observer without and with the computer aid was quantified by using four performance measures: area under the receiver operating characteristic curve (A(z)) value, partial A(z) value, sensitivity, and specificity. The statistical significance of the differences in the performance measures without and with the computer aid was determined by using a two-tailed t test for paired data. RESULTS: Use of the computer aid resulted in an improvement of the average performance of the 10 observers, as measured by means of a statistically significant increase in A(z) value (0.87-0.92; P < .001), partial A(z) value (0.47-0.68; P < .001), and sensitivity (0.88-0.93; P = .005). A statistically significant difference was not found in the specificity without and with the computer aid (0.66-0.69; P = .20). CONCLUSION: Use of multimodality intelligent workstations can improve the performance of radiologists in the task of differentiating malignant and benign lesions at mammography and sonography.

Adult↗

Palpable solid breast masses: retrospective single- and multimodality evaluation of 201 lesions.

The diagnostic virtues and limitations of single- and multimodality testing in the evaluation of solid palpable breast masses were studied. Two hundred one consecutive patients who had a solid palpable breast mass and who underwent biopsy between September 1982 and July 1986 were included for blinded retrospective analysis of their physical examination, mammographic, ultrasonographic (US), thermographic, and pathologic characteristics. Benign breast disease was diagnosed histologically in 106 women, while carcinoma was established in 95. The sensitivities of physical examination, mammography, US, and thermography were 0.88, 0.94, 0.78, and 0.49, respectively. US alone had the highest sensitivity in correct diagnosis of a benign solid breast mass and had the highest accuracy (0.84). Use of four modalities increased the preoperative diagnostic true-positive rate to 0.97, with some decline in specificity. Multimodality testing seems particularly beneficial in pre- and perimenopausal patients.

Adult↗

Multimodality imaging evaluation of the pediatric neck: techniques and spectrum of findings.

Neck masses are a common finding in children and can present a difficult diagnostic challenge. These masses may represent a variety of conditions having a congenital, acquired inflammatory, neoplastic, or vascular origin. The fascial spaces and compartments of the neck provide an approach to differential diagnosis, and extensive knowledge of the anatomy and contents of each cervical compartment is mandatory in the diagnosis of pediatric neck lesions. Several imaging techniques, including radiography, gray-scale and Doppler ultrasonography, conventional and three-dimensional computed tomography, magnetic resonance (MR) imaging, and MR angiography, have been proposed for the evaluation of such lesions, and each has its own advantages and limitations. The imaging findings in 120 children who had been referred or treated for cervical lesions were retrospectively reviewed, and a systematic multimodality imaging approach to pediatric neck lesions based on the involvement of anatomic compartments of the cervical region was developed to increase diagnostic efficiency. Careful attention to clinical history and physical examination findings, along with knowledge of the embryologic features and anatomy of the cervical region and a multimodality imaging approach, is very helpful in the diagnosis and management of pediatric neck lesions.

Adolescent↗

Multimodal assessment of pain in the esophagus: a new experimental model.

A new multimodal pain assessment model was developed integrating electrical, mechanical, cold, and warmth stimuli into the same device. The device, with a bag and electrodes for electrical stimulation, was positioned in the lower part of the esophagus in 11 healthy subjects. Mechanical stimuli were delivered with an impedance planimetric system. Thermal stimuli were performed by circulating water of different temperatures (5-50 degrees C) inside the bag. All subjects reported both nonpainful and painful local and referred sensations to all stimuli. Temporal summation to repeated electrical stimuli could be studied. For all stimuli, there was a relationship between stimulus intensity and pain intensity. The referred pain area increased with increasing intensity of the electrical and mechanical stimuli. There were several differences between the sensations evoked by the four stimulus modalities, indicating activation of different visceral nerve pathways. This model offers the possibility for controlled multimodal stimuli activating the superficial and deeper layers of the human gut and should be used in basic, clinical, and pharmacological pain studies.

Adult↗

Convergence of multimodal sensory input onto higher-level neurons of the crayfish olfactory pathway.

Intracellular electrophysiological studies of lateral protocerebral interneurons (LPIs) in the crayfish Procambarus clarkii have revealed convergence of multimodal sensory information onto these higher-level cells of the crustacean central olfactory pathway. Antennular stimulation by odors or electrical shocks generates excitatory-inhibitory sequences in some LPIs as does electrical or hydrodynamic stimulation of the antennae. Photic stimulation of the ipsilateral compound eye generates excitatory responses in LPIs, usually in the form of trains of impulse bursts that are timed to the peaks of the spontaneous oscillatory activity that characterizes these neurons. Focal electrical stimulation of the olfactory lobe, the termination point of antennular afferent input, or the accessory lobe, where higher-level visual and tactile inputs converge, also generates brief excitation and a delayed, prolonged inhibition in LPIs. Both phases of this activity are thought to be transmitted to the lateral protocerebrum via deutocerebral projection neurons, which have extensive dendritic arborizations in the olfactory lobe and the accessory lobe. The excitatory pathway is thought to synapse directly with target LPIs, whereas the inhibitory pathway is probably indirect and mediated through GABAergic interneurons within the lateral protocerebrum. There is evidence that both presynaptic and postsynaptic inhibition suppress activity in LPIs. Preliminary observations suggest that a small cluster of neurons adjacent to the hemi-ellipsoid body are inhibitory to LPI activity. Multimodal inhibitory and excitatory modulation of LPI activity may play a part in the contextual identification of odors in the crayfish olfactory system.

Action Potentials↗

The requirement of multimodal therapy (vaccine, local tumor radiation, and reduction of suppressor cells) to eliminate established tumors.

PURPOSE: Numerous immune-based strategies are currently being evaluated for cancer therapy in preclinical models and clinical trials. Whereas many strategies look promising in preclinical models, they are often evaluated before or shortly following tumor implantation. The elimination of well-established tumors often proves elusive. Here we show that a multimodal immune-based therapy can be successfully employed to eliminate established tumors. EXPERIMENTAL DESIGN: This therapy consists of vaccines directed against a self-tumor-associated antigen, the use of external beam radiation of tumors to up-regulate Fas on tumor cells, and the use of a monoclonal antibody (mAb) to reduce levels of CD4+CD25+ suppressor cells. RESULTS: We show here for the first time that (a) antigen-specific immune responses induced by vaccines were optimally augmented when anti-CD25 mAb was given at the same time as vaccination; (b) anti-CD25 mAb administration in combination with vaccines equally augmented T-cell immune responses specific for a self-antigen as well as those specific for a non-self antigen; (c) whereas the combined use of vaccines and anti-CD25 mAb enhanced antigen-specific immune responses, it was not sufficient to eliminate established tumors; (d) the addition of external beam radiation of tumors to the vaccine/anti-CD25 mAb regimen was required for the elimination of established tumors; and (e) T cells from mice receiving the combination therapy showed significantly higher T-cell responses specific not only for the antigen in the vaccine but also for additional tumor-derived antigens (p53 and gp70). CONCLUSIONS: These studies reported here support the rationale for clinical trials employing multimodal immune-based therapies.

Animals↗

A prospective study of alexithymia in obsessive-compulsive patients treated with multimodal cognitive-behavioral therapy.

BACKGROUND: Alexithymia as a predictor of treatment outcome in psychotherapy has often been discussed but rarely evaluated in prospective studies. The present study evaluated the absolute and relative stability of alexithymia in patients with obsessive-compulsive disorder (OCD), and the predictive value of alexithymia for the outcome of treatment. METHODS: We conducted a prospective study with 42 inpatients receiving intensive, multimodal cognitive-behavioral therapy (CBT). Patients were assessed for alexithymia at pre- and post-treatment with the 20-item Toronto Alexithymia Scale (TAS-20), for obsessive-compulsive symptoms and depression with the Yale-Brown Obsessive-Compulsive Scale (Y-BOCS) and the 21-item Hamilton Depression Rating Scale (HDRS). RESULTS: OCD and comorbid depression showed a highly significant symptom-reduction from pre- to post-treatment while no absolute changes in the TAS-20 total scores and its factors 1 and 3 occurred. Only factor 2 scores decreased significantly, but with a smaller effect size than the effect sizes for the changes in Y-BOCS and HDRS. Alexithymia scores at pre-treatment correlated significantly with alexithymia scores at the end of treatment, indicating its relative stability. In the linear regression analyses, no variables were identified that predicted significantly the outcome of treatment. CONCLUSIONS: Our findings support the view that alexithymia is a stable personality trait rather than a state-dependent phenomenon in obsessive-compulsive patients. Alexithymia scores do not predict response to multimodal CBT in OCD. It might be an effect of CBT that patients could at least partly regain or newly learn the capability to describe their feelings.

Adult↗

Combined multimodal approach to the treatment of metastatic anal carcinoma: report of a case and review of the literature.

BACKGROUND: We report on a patient with squamous cell anal carcinoma and liver metastases, who underwent multimodal treatment for cure, consisting of repeated partial hepatectomy in combination with chemoradiotherapy. PATIENTS AND METHODS: A 54-year-old woman presented with squamous cell anal carcinoma and liver metastases. She was treated with a combination of chemoradiotherapy for the primary tumor and then underwent surgery for liver metastases. 2 and 5 years after presentation, the patient underwent repeated partial hepatectomies for recurrent liver disease. At present, 5 months after completing therapy and 71 months after the initial diagnosis, she is in good health with no evidence of disease. RESULTS: Repeated partial hepatectomy led to prolonged survival in a patient with squamous cell anal carcinoma metastatic to the liver. CONCLUSIONS: This is the first report of aggressive partial hepatectomy for recurrent liver metastases resulting from anal cancer. Based on our experience, we suggest that in selected patients repeated hepatectomy should be part of an aggressive multimodal treatment program with curative intent.

Antineoplastic Agents↗

Multimodality treatment of trigeminal neuralgia.

Most trigeminal neuralgia (TN) studies focus on a single strategy, microvascular decompression (MVD) or percutaneous rhizotomy (PR). We use a multimodality approach to TN. We perform MVD on patients younger than 70 years and PR on older patients or those where MVD has failed. We performed a chart review of the procedures for TN over the past 3 years and used a questionnaire for long-term follow-up. The questionnaire asked patients to rate their pre- and postoperative pain, outcome, and medication changes. Seventy-four procedures (40 MVDs and 34 PRs) were performed on 67 patients. Twenty patients had undergone previous procedures. 93% of the patients had significant initial pain relief. Over a 1.2-year mean follow-up, 51% of the patients had complete pain relief while 27% had a substantial improvement. There were no deaths and 5 complications. Our results suggest that a multimodality approach to TN yields excellent results with minimal complications.

Age Factors↗

A new multimodality correlative imaging technique for VOP/VIM (VL) thalamotomy procedures.

This paper describes our experience at Mayo Clinic with a new technique for planning ventro-oralis posterior (VOP) ventral intermediate (ventrolateral) VIM (VL) thalamotomy procedures for selected patients with medically intractable tremor. This new method employs a multimodality correlative imaging technique for determining the lesion target point on MR images. At surgery, stereotactic frame settings for the final lesion target were ultimately determined by stereotactic ventriculography modified by neurophysiological recording. Acceptable correlation was found between the multimodality correlative imaging method and the actual target coordinates determined by ventriculography and semi-microelectrode recording.

Humans↗

Angiographic follow-up in 37 patients after radiosurgery for cerebral arteriovenous malformations as part of a multimodality treatment approach.

Modified Linac radiosurgery was utilized at our institution between 1990 and 1995 in 54 patients with cerebral arteriovenous malformations (AVMs) as part of a multimodality therapeutic approach. Most patients also underwent surgery and embolization of the AVMs prior to radiosurgery. The goal of the adjunctive radiosurgical treatment was the complete angiographic obliteration of the deep residual AVM after subtotal embolization and resection. Radiosurgery was used as the primary treatment of some small deep AVMs which were judged to have a high risk of morbidity if approached surgically. Of the 54 patients, 37 have had follow-up angiograms available for review. The median time interval between radiosurgery and the most recent angiogram was 22 months (range 5-66 months). This is a retrospective report on the angiographic follow-up available on this selected group of patients with difficult AVMs. All angiograms were evaluated for the presence of residual AVM. If any residual AVM was present, a decrease in size of more than 50% was noted as significant. The hospital and office charts of all patients were reviewed and the patients and families were contacted for up-to-date clinical follow-up. Prior to treatment, 11 patients had Spetzler-Martin grade 5 AVMs, 12 patients had grade 4 AVMs, and 14 patients had grade 3 AVMs. There were no grade 1 or 2 AVMs treated with radiosurgery. Of these 37 patients, 13 (35%) were completely obliterated on follow-up angiography. Three of the 11 (27%) grade 5 AVMs were completely obliterated. Seven of the 12 (58%) grade 4 AVMs were obliterated. Three of the 14 (21%) grade 3 AVMs have documented radiosurgical obliteration, however 8 others have had a significant decrease in size on the first posttreatment angiogram (median follow-up 14 months) and have further angiographic follow-up pending. There were 5 hemorrhages after radiosurgery, 1 was fatal and 1 resulted in permanent morbidity. Six patients have been reembolized since radiosurgery and 2 of those had their AVMs surgically resected thereafter. Only 1 patient of 6 (17%) in this series who was treated with radiosurgery alone has had documented AVM obliteration. None of 3 treated with embolization alone prior to radiosurgery have had complete obliteration. Three of the 5 patients (60%) who had only surgery prior to radiosurgery had their AVMs completely obliterated. Of the 23 patients who had all three treatments (embolization, surgery, and radiosurgery), 10 (43%) had complete obliteration of their AVMs. One patient (2%) developed moderate permanent neurological disability as a result of radiosurgery-induced necrosis. This patient did have complete obliteration of her AVM. These data support the use of radiosurgery for treatment of cerebral AVMs as part of a multimodality approach if the surgical risk of any residual AVM after embolization and microsurgical resection is deemed excessive. The adjunctive use of radiosurgery in this series resulted in the safe complete obliteration of many very difficult grade 4 and 5 AVMs. These data do not support the use of radiosurgery as the primary treatment of surgically resectable AVMs since there is a risk of interval hemorrhage and the obliteration rate is far inferior to that of microsurgical resection.

Adolescent↗

Example for applying the COMSTAT multimodal factor analysis algorithm to EEG data to describe variance sources.

An example is given for the application of the COMSTAT algorithm for multimodal factor analysis to EEG power spectral data. The COMSTAT algorithm enlarges Tucker 's three-mode factor analysis to a multimodal one, and improves his algorithm by a least squares solution. The EEG power spectral data from 65 healthy subjects with an occipital rhythm between 8 and 12 Hz were taken. For demonstration purposes we selected three modes, which have been used by other authors: mode 1: 29 frequency classes, 1n of relative power, in delta f = 1.0-Hz steps between 1 and 30 Hz; mode 2: 16 segments, 40 s each, during the two situational vigilance conditions reaction time (RT) and resting (RS), and mode 3: 65 persons. The frequency mode could be described sufficiently by five factors which we called: delta F/alpha F1; nu F/alpha F2; beta F1/alpha F1; beta F2; beta F3. The factor-loading profiles were similar to those described earlier in independent data. Thus, in the three-mode model we obtained results comparable to those of two-mode models. In the level of 16 situational segments only two factors were extractable. They described the two situations RT, higher vigilance level, and RS, lower vigilance level. In order to demonstrate the changes in factor structure, if a two-mode model is enlarged by a third mode, we used two models for the description of personal (P) variance. When the matrix persons X segments (P X V) was taken, only two factors were extractable.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗