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首页> 外文期刊>International journal of occupational medicine and environmental health. >Effects of occupational exposure to arsenic on the nervous system: clinical and neurophysiological studies.
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Effects of occupational exposure to arsenic on the nervous system: clinical and neurophysiological studies.

机译:职业性砷暴露对神经系统的影响:临床和神经生理学研究。

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OBJECTIVES: A number of metals, especially heavy metals, exhibit neurotoxic properties. Neurological and neurophysiological studies indicate that the functions of the central (CNS) and peripheral nervous system (PNS) may be impaired under conditions of exposure to arsenic (As). The aim of the present study was to assess the effects of inorganic arsenic on the central and peripheral nervous system. MATERIALS AND METHODS: The study covered a group of 21 male workers (mean age: 41.9 yr; SD: 7.6; range: 31-55 yr) employed in a copper smelting factory. Their employment duration ranged from 5 to 33 years (mean: 18.1 yr; SD: 7.8). Arsenic concentrations in workplace air amounted to 0.01003 mg/m3 on average (SD: 0.00866). Urine arsenic concentrations ranged from 3.48 to 23.63 mug/l (mean: 11.91 mug/l; SD: 9.5). The control group consisted of 16 males non-occupationally exposed to As, matched for gender, age and work shift pattern. The evaluation of neurological effects was based on the findings of neurological examination, electroencephalography (EEG), visual evoked potentials (VEPs) and electroneurography (ENeG). RESULTS: Clinical symptoms, such as sleeplessness or sleepiness, irritability, headache, painful spasms in extremity muscles, extremity paresthesia and pain, and muscular fatigue prevailed among functional disorders of the nervous system in workers chronically exposed to As. Neurological examination did not reveal any organic lesions in the CNS or PNS. In EEG records classified as abnormal, generalized changes were most common. VEP examinations revealed abnormalities in evoked response latency. Stimulation of the motor fibers of the peroneal and medial nerves resulted in a decreased amplitude of the motor potential. Stimulation of the sensory fibers of medial nerves brought about a decreased amplitude of the sensory potential and a lower conduction velocity of the sural nerves. CONCLUSION: The findings of the study indicate that exposure to As concentrations within the threshold limit values (TLV) can induce subclinical effects on the nervous system, especially subclinical neuropathy.
机译:目的:许多金属,特别是重金属,具有神经毒性。神经和神经生理学研究表明,在暴露于砷(As)的条件下,中枢(CNS)和周围神经系统(PNS)的功能可能会受损。本研究的目的是评估无机砷对中枢和周围神经系统的影响。材料与方法:该研究覆盖了一组21名男性,其平均年龄为41.9岁; SD:7.6;范围:31-55岁。他们的就业期限为5至33年(平均:18.1年;标准差:7.8)。工作场所空气中的砷平均浓度为0.01003 mg / m3(SD:0.00866)。尿中砷的浓度范围为3.48至23.63杯/升(平均值:11.91杯/升;标清:9.5)。对照组包括16位非职业性暴露于As的男性,其性别,年龄和工作轮班方式均与之匹配。神经学效果的评估基于神经学检查,脑电图(EEG),视觉诱发电位(VEP)和电子神经电图(ENeG)的发现。结果:在长期暴露于As的工人的神经系统功能障碍中,临床症状包括失眠或嗜睡,烦躁,头痛,四肢肌肉疼痛痉挛,四肢感觉异常和疼痛以及肌肉疲劳。神经系统检查未发现CNS或PNS中有任何器质性病变。在分类为异常的EEG记录中,最普遍的变化是普遍的。 VEP检查发现诱发反应潜伏期异常。腓骨和内侧神经运动纤维的刺激导致运动电位的幅度降低。刺激内侧神经的感觉纤维导致感觉电位的振幅降低和腓肠神经的传导速度降低。结论:研究结果表明,在阈限值(TLV)内暴露于砷浓度可引起对神经系统的亚临床作用,特别是亚临床神经病。

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