{"title":"\"下降值\":伪命题还是独特的信息源?穴位电导率急剧下降的同时,脑电图、心率变异、免疫力、新陈代谢和 GDV 参数也出现显著偏差","authors":"A. Gozhenko, Toto Zantaraia, W. Żukow","doi":"10.12775/qs.2024.17.004","DOIUrl":null,"url":null,"abstract":"Background. \nWith this article, we start the project \"Functional relationships between the parameters of acupuncture points and the neuro-endocrine-immune network\", thereby joining the construction of a bridge between the Western and Eastern paradigms of medicine. \nMaterials and methods. The object of observation were 10 women (32-76 years) and 10 men (37-67 years) examined twice with a weekly interval. The volunteers were considered practically healthy, but the initial testing revealed deviations from the norm in a number of parameters of the neuro-endocrine-immune (NEI) network as a manifestation of maladaptation. We recorded electrical conductivity in acupuncture points (AP) Pg(ND), TR(X) and MC(AVL) as well as parameters of NEI network, gas discharge visualization (GDV) and metabolism. \nResults. The preliminary analysis of the parameters revealed in the female SO drastic deviations from both the reference and the average for the sample, the levels of electrical conductivity of three pairs of AP - that is, the so-called \"falling values\", which are usually removed from the subsequent analysis as artifacts. However, we found the same drastic or significant deviations of a number of other parameters of GDV, EEG, HRV, adaptation hormones, immunity and metabolism in this patient. Therefore, the registered drastic decrease in electrical conductivity of AP is by no means an artifact, but reflects the peculiarities of the NEI network, GDV and metabolism of the patient's body during the first examination. It is significant that upon re-examination, the deviations of the parameters significantly or completely approached the range of the average for the sample ± SD or the norm ± SD. \nConclusion. The above gives us a reason to initiate a broad discussion of the problem of \"falling variables\" as carriers of unique information that is ignored and lost.","PeriodicalId":431915,"journal":{"name":"Quality in Sport","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2024-05-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"„Falling values”: artifacts or source of unique information? Drastically low electrical conductivity of acupuncture points is accompanied by significant deviations of EEG, HRV, immunity, metabolism and GDV parameters\",\"authors\":\"A. Gozhenko, Toto Zantaraia, W. Żukow\",\"doi\":\"10.12775/qs.2024.17.004\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Background. \\nWith this article, we start the project \\\"Functional relationships between the parameters of acupuncture points and the neuro-endocrine-immune network\\\", thereby joining the construction of a bridge between the Western and Eastern paradigms of medicine. \\nMaterials and methods. The object of observation were 10 women (32-76 years) and 10 men (37-67 years) examined twice with a weekly interval. The volunteers were considered practically healthy, but the initial testing revealed deviations from the norm in a number of parameters of the neuro-endocrine-immune (NEI) network as a manifestation of maladaptation. We recorded electrical conductivity in acupuncture points (AP) Pg(ND), TR(X) and MC(AVL) as well as parameters of NEI network, gas discharge visualization (GDV) and metabolism. \\nResults. The preliminary analysis of the parameters revealed in the female SO drastic deviations from both the reference and the average for the sample, the levels of electrical conductivity of three pairs of AP - that is, the so-called \\\"falling values\\\", which are usually removed from the subsequent analysis as artifacts. However, we found the same drastic or significant deviations of a number of other parameters of GDV, EEG, HRV, adaptation hormones, immunity and metabolism in this patient. Therefore, the registered drastic decrease in electrical conductivity of AP is by no means an artifact, but reflects the peculiarities of the NEI network, GDV and metabolism of the patient's body during the first examination. It is significant that upon re-examination, the deviations of the parameters significantly or completely approached the range of the average for the sample ± SD or the norm ± SD. \\nConclusion. 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引用次数: 0
摘要
背景。通过这篇文章,我们启动了 "穴位参数与神经-内分泌-免疫网络之间的功能关系 "项目,从而加入到东西方医学范式之间的桥梁建设中。材料和方法观察对象为 10 名女性(32-76 岁)和 10 名男性(37-67 岁),每周检查两次。这些志愿者被认为身体基本健康,但初步检测发现,他们的神经-内分泌-免疫(NEI)网络的一些参数偏离了正常值,这是适应不良的表现。我们记录了穴位(AP)Pg(ND)、TR(X)和 MC(AVL)的电导率以及神经-内分泌-免疫(NEI)网络、气体放电显像(GDV)和新陈代谢的参数。结果。对参数的初步分析表明,在雌性 SO 中,三对 AP 的电导率水平--即所谓的 "下降值"--与参考值和样本平均值都有很大偏差,通常会被作为假象从后续分析中剔除。然而,我们发现该患者的其他一些 GDV、脑电图、心率变异、适应激素、免疫力和新陈代谢参数也出现了同样的急剧或显著偏差。因此,所记录的 AP 电导率急剧下降绝非伪影,而是反映了首次检查时患者身体的近地神经网络、广东话语音变异和新陈代谢的特殊性。重要的是,在再次检查时,参数偏差明显或完全接近样本平均值±标清或标准值±标清的范围。结论上述情况使我们有理由开始广泛讨论 "下降变量 "问题,因为它是被忽视和丢失的独特信息的载体。
„Falling values”: artifacts or source of unique information? Drastically low electrical conductivity of acupuncture points is accompanied by significant deviations of EEG, HRV, immunity, metabolism and GDV parameters
Background.
With this article, we start the project "Functional relationships between the parameters of acupuncture points and the neuro-endocrine-immune network", thereby joining the construction of a bridge between the Western and Eastern paradigms of medicine.
Materials and methods. The object of observation were 10 women (32-76 years) and 10 men (37-67 years) examined twice with a weekly interval. The volunteers were considered practically healthy, but the initial testing revealed deviations from the norm in a number of parameters of the neuro-endocrine-immune (NEI) network as a manifestation of maladaptation. We recorded electrical conductivity in acupuncture points (AP) Pg(ND), TR(X) and MC(AVL) as well as parameters of NEI network, gas discharge visualization (GDV) and metabolism.
Results. The preliminary analysis of the parameters revealed in the female SO drastic deviations from both the reference and the average for the sample, the levels of electrical conductivity of three pairs of AP - that is, the so-called "falling values", which are usually removed from the subsequent analysis as artifacts. However, we found the same drastic or significant deviations of a number of other parameters of GDV, EEG, HRV, adaptation hormones, immunity and metabolism in this patient. Therefore, the registered drastic decrease in electrical conductivity of AP is by no means an artifact, but reflects the peculiarities of the NEI network, GDV and metabolism of the patient's body during the first examination. It is significant that upon re-examination, the deviations of the parameters significantly or completely approached the range of the average for the sample ± SD or the norm ± SD.
Conclusion. The above gives us a reason to initiate a broad discussion of the problem of "falling variables" as carriers of unique information that is ignored and lost.