Intradialytic hypotension is a common complication of hemodialysis sessions in patients with chronic renal failure, with an estimated prevalence of 10 to 30%. This hypotensopn is classically defined by a decrease in systolic blood pressure greater than 30 mmHg associated with clinical signs (cramps, abdominal pain, unconsciousness, convulsions). Its repetition is correlated with cardiovascular events, neurological events and excess mortality. Several clinical factors have been proposed to predict the risk of intradialytic hypotension such as age, certain comorbidities (diabetes, ischemic heart disease...), dialysis modalities (hemodialysis), ultrafiltration, conductivity but also alterations of the autonomic nervous system (especially the sympathetic system). In recent years, the study of vegetative functions has been facilitated by the use of SUDOSCAN® (Impeto, Paris, France) which is a simple, non-invasive tool that allows the study of Chlorine conductance directly reflecting the activity of small non-myelinated C fibers that innervate the sweat glands. SUDOSCAN® has shown good sensitivity and specificity in the diagnosis of vegetative damage in diabetic patients and also a good correlation with cardiac autonomic neuropathy. More recently, SUDOSCAN® has shown good sensitivity in the detection of neuropathies small fibers especially in diabetic patients. This sensitivity is comparable to QST-type quantitative tests and the correlation with cardiovascular dysautonomia tests is good. This test, simple and fast realization, does not require the active participation of the patient. There is a good correlation between the results of SUDOSCAN® and the reduction of intra-dermal fiber density at cutaneous biopsy. Hemodialysis patients are at risk of peripheral neurological involvement not only because of an increasing incidence of diabetes (30-40%) but also because of the abnormal production and elimination of certain uremic toxins. Few studies exist on the anomalies of the vegetative system in hemodialysis. A recent publication has suggested a difference in nerve excitability depending on the type of hemodialysis suggesting nerve changes secondary to ionic changes. The identification of patients at risk of intradialytic hypotension during dialysis sessions could be useful for adapting hemodialysis protocols. Patients will be classified into 2 groups according to the occurrence of intradialytic hypotension. Group 1 corresponds to patients with intradialytic hypotension and group 2 corresponds to patients without intradialytic hypotension.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
PREVENTION
Masking
NONE
Enrollment
176
The additional examination, related to this research protocol, corresponds to a record of cutaneous conductance with chlorine. This recording of 2 min 30 is done thanks to SUDOSCAN® within 30 minutes before the dialysis session (before the "connection" to the dialysis machine) and within 30 minutes after the end of the dialysis with a measurement of the tension blood pressure and heart rate immediately before SUDOSCAN®.
AURA Paris Plaisance
Paris, France
Cutaneous conductance to chlorine by SUDOSCAN before hemiodialysis
This outcome is to measure cutaneous conductance to chlorine by SUDOSCAN, 30 minuts before hemodialysis.
Time frame: Day 1
Cutaneous conductance to chlorine by SUDOSCAN after hemiodialysis
This outcome is to measure cutaneous conductance to chlorine by SUDOSCAN, 30 minuts after hemodialysis.
Time frame: Day 1
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