Search PubMed⌕ Search

Biomedical subjects

P Bouche

Publications and source records attributed to P Bouche.

At least 37 records · Page 2Linked to original sources

[True neurological thoracic outlet syndrome].

The thoracic outlet syndrome (TOS) encompasses various clinical entities affecting the neurovascular bundle crossing the thoracic outlet. Unfortunately, this term often proves to be confusing because many of these entities have little in common beyond their known or presumed lesion site. Neurogenic TOS (true TOS) is caused by compression of the lower trunk in the brachial plexus, the cervical ribs or fibrous band. This syndrome is extremely rare. We consider that this neurological form of TOS is a clearly defined neurological syndrome. We report 10 patients with true TOS. All were females. Stating the onset was difficult because symptoms were progressive and insidious. Pain was the most frequently reported symptom. Sensory deficit was slight or absent. All patients showed unilateral severe atrophy of the thenar muscles. Wasting and weakness developed later. A reduced amplitude of ulnar and median compound muscle action potential associated with a normal amplitude of median sensory nerve action and a reduced amplitude of ulnar sensory nerve action potential were indicative of a chronic axon loss in the lower trunk of the brachial plexus. In all cases, we performed medial antebrachial cutaneous sensory nerve action potential, a C8-T1 innervated nerve. The absence of the medial antebrachial cutaneous sensory nerve action potential in 9 patients and a reduction in amplitude of 50 p. 100 compared to the unaffected side in the other patient, indicated the diagnostic value of this easy and reproductible test. It confirmed a C8-T1 post-ganglionic radicular lesion or a lower brachial plexus neuropathy. Radiography showed a rudimentary bilateral cervical rib or an elongated C7 transverse process in all cases. Surgery was performed in the affected side in 7 patients and in each case the lower part of the brachial plexus was found to be stretched and angulated over a fibrous band, which was removed. Pain was relieved after 1 to 4 weeks. A minimal motor improvement was observed after one year. Electrophysiological results were unchanged.

Adult↗

[What's new in primary lateral sclerosis?].

Primary lateral sclerosis as a nosological entity distinct from amyotrophic lateral sclerosis has been the subject of controversy since it was first described in the nineteenth century. Primary lateral sclerosis has been defined as a rare, non-hereditary disease characterized by highly progressive spinobulbar spasticity, related to the exclusive loss of precentral pyramidal neurons, with secondary pyramidal tract degeneration and preservation of anterior horn motor neurons. We carried out a study in nine patients with a diagnosis of primary lateral sclerosis. Our clinical, electrophysiological and pathological investigations provide evidence that the disease has a heterogeneous clinical presentation and that degeneration is not restricted to the central motor system but also affects the lower motor neuron. In view of this similarity with amyotrophic lateral sclerosis, primary lateral sclerosis may represent a slowly progressive syndrome closely related to motor neuron disease and amyotrophic lateral sclerosis.

Adult↗

Spectrum of clinical and electrophysiologic features in HNPP patients with the 17p11.2 deletion.

OBJECTIVE: To study the clinical and electrophysiologic features of a large series of carriers of the 17p11.2 deletion. BACKGROUND: The 17p11.2 deletion is associated in most patients with recurrent acute nerve palsies, which is the typical presentation of hereditary neuropathy with liability to pressure palsies (HNPP). Nevertheless, a few other phenotypes have been reported. METHODS: On the basis of clinical and electrophysiologic data, the authors conducted a retrospective study of 99 individuals with the 17p11.2 deletion referred to their neurogenetic department between 1993 and 1997. RESULTS: In addition to the typical presentation of HNPP, they describe five other phenotypes in 15 patients: recurrent positional short-term sensory symptoms, progressive mononeuropathy, Charcot-Marie-Tooth disease-like polyneuropathy, chronic sensory polyneuropathy, and chronic inflammatory demyelinating polyneuropathy-like, recurrent subacute polyneuropathy; and 14 asymptomatic patients. In all the deletion carriers, regardless of their phenotype and by the second decade, the authors found a characteristic, multifocal electrophysiologic neuropathy consisting of a diffuse increase in distal motor latencies contrasting with normal or moderately reduced motor nerve conduction velocities, a diffuse reduction in sensory nerve action potential, and multiple focal slowing of nerve conduction at the usual sites of entrapment. The key diagnostic criterion is a bilateral slowing of sensory and motor nerve conduction at the carpal tunnel with at least one abnormal parameter for motor conduction in one peroneal nerve. CONCLUSION: The authors confirm the clinical phenotypic heterogeneity of the 17p11.2 deletion and suggest that electrophysiologic examination is a reliable tool for screening suspected HNPP patients in its various clinical presentations.

Adolescent↗

Polyneuropathy in autosomal dominant cerebellar ataxias: phenotype-genotype correlation.

Autosomal dominant cerebellar ataxias (ADCAs) are clinically and genetically heterogeneous neurodegenerative disorders. The aim of this study was to evaluate electrophysiologically peripheral nervous system involvement in each of the groups studied and its correlation with the number of CAG repeats. Forty patients with ADCA were clinically and electrophysiologically investigated. Thirty-five patients belonged to the ADCA type I group (SCA1, 12; SCA2, 10; SCA3, 13) and five to the ADCA type II group. Axonal sensory or sensorimotor polyneuropathy was found in 42% of the SCA1 patients, 80% of the SCA2 patients, and 54% of the SCA3 patients, whereas electrophysiological studies were normal in all those with ADCA type II. The number of CAG repeats was significantly higher in SCA1 patients with polyneuropathy than in those without polyneuropathy (P = 0.01), whereas the reverse was observed in SCA3/MJD (Machado-Joseph disease) patients (P = 0.05). We conclude that axonal polyneuropathy is often associated with ADCA type I, but its frequency varies according to factors such as the locus responsible and the number of CAG repeats.

Adolescent↗

Electrophysiological diagnosis of motor neuron disease and pure motor neuropathy.

Motor neuron disease (MND) is a group of disorders in which there is degeneration of upper and lower motor neurons to a variable degree. Amyotrophic lateral sclerosis is the most frequent form of the disease, presenting with both upper and lower motor neuron involvement. Frequently, especially in the early stages of the disease, only lower motor neuron signs are present. In these conditions, some pure motor neuropathies may resemble MND. The diagnosis is of importance because some of these motor neuropathies are "dysimmune" disorders and may respond to immune therapies. In such diseases the multifocal motor neuropathy with conduction block appears to be the more frequent. In MND and pure motor neuropathies, the electrophysiological examination is the most decisive test. In MND, it is of diagnostic importance. In addition, it is useful in the assessment of disease severity and progression, in the evaluation of therapeutic trials and in the understanding of etiopathogenesis of the disease. In pure motor neuropathies, the presence of conduction block leads to immune treatment with good response in more than 50% of the cases.

Diagnosis, Differential↗

Reflexes elicited from cutaneous and mucosal trigeminal afferents in normal human subjects.

It has been shown that in patients in whom the central stump of the hypoglossal nerve has been anastomosed to the peripheral stump of a lesioned facial nerve, supraorbital nerve stimulation can elicit a short-latency reflex (12.5+/-0.6 ms; mean+/-S.D.) in facial muscles similar to the R1 disynaptic blink reflex response, but not followed by an R2 blink reflex component46. Thus in addition to replacing the facial neurons at peripheral synapses, these hypoglossal nerves contribute to a trigemino-hypoglossal reflex. The aim of this work was to study the type of reflex activities which can be elicited in both facial and tongue muscles by electrical stimulation of cutaneous (supraorbital nerve) or mucosal (lingual nerve) trigeminal (V) afferents in normal subjects. The results show that although stimulation of cutaneous V1 afferents elicits the well-known double component (R1-R2) blink reflex response in the orbicularis oculi muscles, it does not produce any detectable reflex response in the genioglossus muscle, even during experimental paradigms designed to facilitate the reflex activity. Conversely, stimulation of mucosal V3 afferents can elicit a single reflex response of the R1 type in the genioglossus muscle but not in the orbicularis oculi muscles, even during experimental paradigms designed to facilitate the reflex activity. These data are discussed in terms of two similar but separate circuits for the R1 responses of cutaneous (blink reflex) and mucosal (tongue reflex) origins. They suggest that in patients with hypoglossal-facial (XII-VII) nerve anastomosis, the short-latency trigemino-'hypoglossal-facial' reflex of the R1 blink reflex type observed in facial muscles following supraorbital nerve stimulation could be due to changes in synaptic effectiveness of the central connectivity within the principal trigeminal nucleus where both cutaneous and mucosal trigeminal afferents project.

Adult↗

Antiglycolipid antibodies in motor neuropathies.

In peripheral neuropathies with monoclonal gammopathy, mainly IgM, it appears clear from clinical, electrophysiological, and experimental data, that the target glycolipid or glycolipid epitope for the IgM is related to the type of neuropathy--purely sensory, predominantly sensory, or uniquely motor. Investigations have focused on chronic peripheral neuropathies associated with polyclonal IgM reactivity to glycolipids. Although IgM anti-GM1 antibodies are present in normal controls, there is a subgroup of motor neuropathies with high titer anti-GM1 antibodies, mainly multifocal neuropathies with conduction blocks (MMNCB). Another subgroup of MMNCB may include IgM anti-SGPG antibodies that do not cross-react with MAG. The importance of the fine structure of the epitope has to be considered in view of the pathogenicity of the antibody. It may bear consequences on its binding properties on the neuronal surfaces and on its biological implications.

Autoantibodies↗

Peripheral neuropathy associated with IgM monoclonal gammopathy: correlations between M-protein antibody activity and clinical/electrophysiological features in 40 cases.

Forty cases of polyneuropathy associated with IgM monoclonal gammopathy were retrospectively studied to investigate the relevance of clinical and electrophysiological features to M-protein antibody activity. There were 26 men and 14 women; mean age was 65 +/- 11.7 years at the time of the study. Thirty-nine patients had a symmetrical polyneuropathy, of whom 13 had a predominantly sensory and 17 a purely sensory neuropathy (i.e., 30 sensory neuropathies). The remaining patient had a multifocal mononeuropathy. Electrophysiological studies allowed the polyneuropathies to be classified as demyelinating in 33 cases (82.5%) and axonal in 6 cases. Antibody studies disclosed anti-MAG antibodies in 65% and anti-SGPG antibodies in 82.5% of patients. Anti-MAG antibodies were associated with only demyelinating polyneuropathies. Anti-SGPG antibodies were found in 91% of demyelinating polyneuropathies and 50% of axonopathies. In addition, anti-MAG/SGPG antibody activity was significantly correlated with the subgroup of sensory neuropathies (P < 0.01). Last, antisulfatide antibodies were found at significant titers in 18 cases, and their presence was significantly correlated with anti-MAG/SGPG antibody activity, but not with some clinical/electrophysiological features.

Adult↗

Electrophysiological determination of the site involved in generating abnormal muscle responses in hemifacial spasm.

In patients with hemifacial spasm (HFS), abnormal muscle responses due to abnormal cross-transmission are observed in facial muscles. However, the site in the facial nerve responsible for the cross-transmission remains a matter of controversy. We have developed a model in which by considering the electrophysiological parameters involved in producing the abnormal muscle response, we can determine the site of the abnormal cross-transmission within the facial nerve. This model was applied to HFS patients with three different etiologies: idiopathic, post-Bell's palsy, and post-XII-VII anastomosis. Our data show that: in idiopathic HFS, the cross-transmission may occur in the facial nerve at the level of the pontocerebellar angle; in post-Bell's palsy, it is inside the petrous bone; and in XII-VII anastomosis, it must be in the extracranial part of the facial nerve. The possible mechanisms for this cross talk are discussed in terms of ephaptic transmission or of a central hyperexcitability in the facial motor nucleus.

Adult↗

True neurogenic thoracic outlet syndrome: electrophysiological diagnosis in six cases.

We report 6 patients with true neurogenic thoracic outlet syndrome. All were female and presented unilateral severe atrophy of the thenar muscles. Pain in the affected upper limb was frequently reported, but sensory deficit was slight or absent. Reduced amplitude of ulnar and median compound muscle action potential associated with a normal amplitude of median sensory nerve action potential (SNAP) and a reduced amplitude of ulnar SNAP was indicative of a chronic axon loss in the lower trunk of the brachial plexus. The absence of the medial antebrachial cutaneous SNAP in 5 patients and a reduction in amplitude compared to the unaffected side in the other patient indicated a C8-T1 postganglionic radicular lesion or a lower brachial plexus neuropathy. Radiography showed a rudimentary bilateral cervical rib or an elongated C7 transverse process in all cases. Surgery was performed, and in each case the lower part of the brachial plexus was found to be stretched and angulated over a fibrous band, which was removed. Pain was relieved after 1-4 weeks, but at 1 year, there was only minimal motor improvement and the electrophysiological results were unchanged.

Action Potentials↗

Fine mapping of de novo CMT1A and HNPP rearrangements within CMT1A-REPs evidences two distinct sex-dependent mechanisms and candidate sequences involved in recombination.

The molecular mechanism resulting in the duplication or deletion of a 1.5 Mb region of 17p11.2-p12, associated, respectively, with Charcot-Marie-Tooth type 1A (CMT1A) and hereditary neuropathy with liability to pressure palsies (HNPP), has been proposed to be an unequal crossing-over during meiosis between the two chromosome 17 homologues generated by misalignment of the proximal and distal CMT1A-REP repeats, two homologous sequences flanking the 1.5 Mb CMT1A/HNPP monomer unit. In a recent study of a large series of de novo cases of CMT1A and HNPP, two distinct sex-dependent mechanisms were identified. Rearrangements of paternal origin, essentially duplications, were indeed generated by unequal meiotic crossing-over between the two chromosome 17 homologues, but duplications and deletions of maternal origin resulted from an intrachromosomal process, either unequal sister chromatid exchange or, in the case of deletion, excision of an intrachromatidal loop. In order to determine how these recombinations occur, 24 de novo crossover breakpoints were localized within the 1.7 kb rearrangement hot spot by comparing the sequences of the parental CMT1A-REPs with the chimeric copy in affected offspring. Nineteen out of 21 paternal crossovers were found in a 741 bp hot spot. All the breakpoints of maternal origin (n = 3), however, were located outside this interval, but in closely flanking sequences, supporting the hypothesis that two distinct sex-dependent mechanisms are involved. Several putative recombination promoting sequences in the hot spot, which are rare or absent in the surrounding 7.8 kb, were identified.

Charcot-Marie-Tooth Disease↗

X-linked Charcot-Marie-Tooth disease with connexin 32 mutations: clinical and electrophysiologic study.

OBJECTIVE: To relate X-linked Charcot-Marie-Tooth disease (CMTX) phenotypes to gender and type of neuropathy by the study of a large series of CMTX patients with proven Cx32 point mutations. BACKGROUND: CMTX is an X-linked form of Charcot-Marie-Tooth disease, caused by mutations in the connexin 32 gene. Males are usually more severely affected and have slower nerve conduction velocities than females. METHODS: Forty-eight patients from 10 families with Cx32 mutations were examined clinically and electrophysiologically. Mutations were characterized in index cases by automatic sequencing and detected in at-risk individuals by polymerase chain reaction (PCR)-restriction or single strand conformation polymorphism (SSCP) analysis. Two patients from different families had light and electron microscopy examination of a sural nerve biopsy. RESULTS: Males (n = 21) were more severely affected than females (n = 27), although six of the females were severely disabled. In the majority of males, the median motor nerve conduction velocity (MNCV) was between 30 and 40 m/s, whereas in females it ranged from 30 to normal values. Two children with mutation, a 6-year-old boy and a 7-year-old girl, were normal clinically and electrophysiologically. In most patients, the amplitude of motor nerve compound muscle action potentials (CMAP) was reduced in all nerves tested. MNCV was reduced as a function of the degree of axonal loss. A significant correlation was found between the decrease in CMAP amplitude and MNCV in the median, ulnar, and peroneal nerves. Sural nerve biopsies in one patient with a missense and one with a nonsense mutation both showed axonal neuropathy. CONCLUSION: Electrophysiologic and histologic findings support primary axonal neuropathy in CMTX with Cx32 mutations. Clinical and electrophysiologic data in males with different missense mutations in the of Cx32 gene differed significantly. Furthermore, males with a nonsense mutation (Arg22Stop) had earlier onset and a more severe phenotype than males with missense mutations.

Adolescent↗

[Pure motor neuropathy after radiation therapy: 6 cases].

We report clinical and neurophysiological characteristics of six patients (five women and one man) presenting a pure motor bilateral asymmetric proximal and distal weakness in the setting of radiation therapy for Hodgkin's lymphoma in four cases, carcinoma of the uterus in one, and cancer of the ovary in one. Motor deficit, amyotrophy, cramps, fasciculations and tendinous areflexia were confined to the lower limbs in five patients and to the upper limbs in one. No sensory or sphincter disturbance was noted. The progression of the disease was slow with sometimes secondary stabilization. In some patients, CSF showed a slight increase in protein content with no cell. Blood and MRI medullary examination were normal. Delay between radiation therapy and onset of neurological symptoms range from 6 to 24 years (mean 15). Neurophysiological findings suggest ventral roots proximal conduction blocks. We found an increase F-waves latency, a complete distal palsy contrasting with persistent muscle action potential after distal stimulation, in most of the patients; and an evidence of a conduction block between the erb point and the cervical roots using magnetic stimulation in the patient with upper limbs involvement. Mechanisms and sites of nerve radiation injury remains still unclear. These data could indicate, as it was already reported, a proximal damage involving predominantly the motor roots.

Adult↗

Recurrent polyradiculoneuropathy with the 17p11.2 deletion.

Hereditary neuropathy with liability to pressure palsies (HNPP) classically occurs as recurrent focal neuropathy. We report the first known instance of HNPP manifesting, over a 15-year period, as a recurrent sensorimotor polyneuropathy and confirmed by the presence of the PMP-22 gene deletion. We suggest that the molecular study of the 17p11.2 region could be an effective non invasive investigative tool in cases of chronic recurrent polyneuropathy associated with episodes of nerve palsy.

Adult↗

Charcot-Marie-Tooth disease with intermediate motor nerve conduction velocities: characterization of 14 Cx32 mutations in 35 families.

Charcot-Marie-Tooth disease can be inherited either autosomal dominantly or recessively or linked to the X chromosome. X-linked dominant Charcot-Marie-Tooth disease (CMTX) is a sensorimotor peripheral neuropathy in which males have usually more severe clinical symptoms and decreased nerve conduction velocities than do females. CMTX is usually associated with mutations in exon 2 of the connexin 32 (Cx32) gene. DNA from 35 unrelated CMT patients, without the 17p11.2 duplication, but with median nerve conduction between 30 and 40 m/s, were tested for the presence of Cx32 mutations. The entire coding sequence of the Cx32 gene was explored using a rapid nonradioactive technique to detect single-strand conformation polymorphisms (SSCP) on large PCR fragments. Thirteen abnormal SSCP profiles were detected and characterized by sequencing. In addition, systematic sequencing of the entire Cx32 coding region in the remaining index cases revealed another mutation that was not detected by SSCP. A total of 14 mutations were found, five of which were not previously reported. These results demonstrate the high frequency (40%) of mutations in the coding region of the Cx32 gene in CMT patients with intermediate MNCV, without 17p11.2 duplications. Most of these mutations (93%) can be detected by SSCP.

Amino Acid Sequence↗