孙作东
研究员 无
黑龙江省亚欧脑科学研究院 研究院
脑科学基础理论研究;重大脑病康复治疗设备研发;神经科学;生命科学;生物医学工程
个性化签名
- 姓名:孙作东
- 目前身份:在职研究人员
- 担任导师情况:无
- 学位:
-
学术头衔:
国家“百千万”人才工程国家级人选, 享受国务院特殊津贴专家, 省学术和技术带头人等省级重要人才平台入选者
- 职称:高级-研究员
-
学科领域:
生物医学电子学
- 研究兴趣:脑科学基础理论研究;重大脑病康复治疗设备研发;神经科学;生命科学;生物医学工程
孙作东,研究员,博士后合作导师,享受国务院特殊津贴,“脑细胞激活论”创立者,世界首台帕金森治疗仪、阿尔茨海默治疗仪发明人;黑龙江省亚欧脑科学研究院院长,奥博医疗创始人;“ 中国青年五四奖章”获得者,“新世纪百千万人才工程”国家级人选,黑龙江省及哈尔滨市有突出贡献中青年专家,省级领军人才梯队带头人。 研究方向:脑科学基础理论研究与重大脑病康复治疗设备研发
-
全讯担保网主页访问
7107
-
关注数
2
-
成果阅读
1395
-
成果数
8
上传时间
2022-03-29
【期刊论文】question of parity non-conservation in weak interactions
sun zuodong, sun zuodong
journal of physical science and application,2022,10(2):33-49
2022年03月07日
in order to reasonably explain the phenomenon of cell bioelectricity, we proposed the conservation law of cell membrane area, established the ion inequality equation, and therefore paid attention to the mystery of “θ-τ”. we researched and analyzed the “θ-τ” mystery, discussed the parity non-conservation in weak interactions, suggested possible experiments to test the parity non-conservation in weak interactions, and gave our research and analysis conclusions: the parity non-conservation in weak interactions, is still a “conjecture”; the experimental scheme suggested in the papers by c. n. yang et al. cannot determine whether the weak interaction can separate left and right, and it is impossible to directly answer whether θ and τ in the “θ-τ” mystery are the same particle; the co60 β decay experiment such as c. s. wu is a pseudo-mirror experiment, whether the experimental result violates parity conservation is only based on the assumption of c. n. yang et al. in fact, experiments such as polarized co60 did not overturn the so-called “law of parity conservation”. the mirror image principle does not have any physical meaning, does not correspond to any physical conservation quantity, and cannot be destroyed by any physical experiment. in the process of turning “mirror symmetry” and “mirror asymmetry” into so-called physical “common sense” and scientific “facts” respectively, the methods of transformation are “stealing concepts” and “circular argumentation”. the “θ-τ” mystery is a “man-made” mystery. θ and τ are two different particles, which may be the result of the same precursor particle being divided into two. the work of c. n. yang, t. d. lee, c. s. wu et al. has brought quantum physicists from the “small black room” to the “bigger black room” or “smaller black room”. the right and wise choice is to go back through the door that came in. with the development of science today, it is time for some contents to reform from the bottom.
mystery of θ-τ, question of parity non-conservation, c., n., yang, t., d., lee, c., s., wu, “origami windmill” model, mystery of θ-τ, question of parity non-conservation, c., n., yang, t., d., lee, c., s., wu, “origami windmill” model, mystery of θ-τ, question of parity non-conservation, c., n., yang, t., d., lee, c., s., wu, “origami windmill” model
0
-
139浏览
-
0点赞
-
0收藏
-
43分享
-
3下载
-
0评论
-
引用
zuodong sun
journal of us-china medical science,2020,17(4):132-139
2020年08月20日
the study of the action potential of cardiomyocytes is as important as the study of nerve fiber cells. the theoretical basis of the action potential of cardiomyocytes is the ionic theory formed by nerve fiber cells. its core point of view: the decline phase of the action potential of cells is dominated by k outflow. applying the principle of the k channel “origami windmill” model, the mechanism of action potential generation of nerve fiber cells has been reasonably explained, and a point contrary to the ion theory has been drawn: the phase of the action potential decline is dominated by k influx. similarly, applying the principle of the k channel “origami windmill” model can also give a reasonable explanation for the mechanism of action potential generation of cardiomyocytes. the difference between cardiomyocyte action potential and nerve fiber cell: in addition to k , cl-, na , the process of generating cardiomyocyte action potential also involves the participation of ca2 . ca2 inflow in the rising phase will shorten the depolarization time; ca2 inflow in the falling phase will prolong the repolarization time. k , ca2 space substitution proportion: rotate into 2 k , squeeze out 3 ca2 , and 4 extra negative charges in the cell, the proportion is 2: 3: 4; conversely, squeeze out 2 k , rotate into 3 ca2 , 4 extra positive charges the cells, the proportion is 3: 2: 4. na , ca2 space substitution proportion: rotate into 1 na , squeeze out 1 ca2 , and 1 extra negative charges in the cell, the proportion is 1: 1:1; conversely, rotate into 1 ca2 , squeeze out 1 na , there is 1 more positive charge in the cell, and the proportion is 1: 1: 1. application of “origami windmill” model principle, can reasonably explain the cardiomyocytes action potential generation mechanism, further proveding “origami windmill” the model theory, “the theory of dove-like particles”“the theory of braincell activation” of science.
k+, channel, “origami windmill” model, cardiomyocytes, action potential, generation mechanism
-
113浏览
-
0点赞
-
0收藏
-
44分享
-
3下载
-
0评论
-
引用
【期刊论文】enlightening point of view based on potassium channel “origami windmill” model
zuodong sun
journal of us-china medical science,2020,17(4):109-131
2020年08月20日
applying the k channel origami windmill model principle, the whole process of action potential generation of nerve fiber cells and cardiomyocytes is explained reasonably. its core view is: cell action potential decline phase, dominated by influx of potassium ions. this is contrary to the core idea of the traditional theory—ionic theory. according to ionic theory, cell action potential decline phase, dominated by outflow of k ions. in the face of such two opposing views, the author traces back to the source, combing and commenting on the basic theoretical research on the production mechanism of cell bioelectricity generation and the results of classical basic experiments. and a series of enlightening viewpoints are produced:1. ionic theory has its preexistence deficiency; 2. there are principle defects in ghk equation and h-h equation; 3. ion channels may “same direction sharing”; 4. sodium-potassium pumps, calcium pumps and so on may not exist. the thesis's point is falsifiable. if “cell action potential decline stage, dominated by outflow of k ions” can be proved, all the points in this paper will not be true. on the contrary, the series of enlightening views in this paper will inevitably lead to a revolution in the field of life science. the viewpoint of this paper is not only closely related to the causes of human major diseases, treatment principles and methods, but also may have a profound impact on the future research direction of life science researchers.
k+, channel “origami windmill” model, action potential, sodium-potassium pump, ionic theory, ghk equation, h-h equation
-
108浏览
-
0点赞
-
0收藏
-
45分享
-
1下载
-
0评论
-
引用
上传时间
2019-09-17
【期刊论文】potassium channel origami windmill model
zuodong sun
journal of us-china medical science,2019,16(4):1-4
2019年09月16日
本文提出的钾离子通道模型,是一个独立的功能单位,四条孔道螺旋同步单方向旋转,转运k 方式是被动单向的,对atp没有依赖性,不同于之前的“船桨”“螺旋桨”“旋转门”等模型。作用机制是k 与孔道螺旋内带正电荷的氨基酸形成的排斥力推动“风齿”后退“风车”旋转,而k 通道孔径大小随着“风车”转速的快慢而变化,决定着通道孔“开放”与“关闭”。“折纸风车”模型,是应用细胞的生物物理学原理揭示k 通道运行机制,对与之相关的其它一些基础性研究具有启发意义,或许有助于从源头上回答人类健康和疾病的基本生物学问题。
k 通道, ;开放, ;关闭, ;折纸风车, ;模型, ;k 转运
-
216浏览
-
0点赞
-
0收藏
-
54分享
-
0下载
-
0评论
-
引用
上传时间
2019-03-21
【期刊论文】the theory of dove-like particles
zuodong sun
journal of us-china medical science,2019,16(2):73-99
2019年03月15日
alzheimer’s disease (ad) has been reported for more than 100 years since its first discovery in 1906. there has been no significant progress in the study of its real causes and pathogenesis. the viewpoint of this paper is a heuristic viewpoint based on brain cell activation theory under such background. in this paper, the pathogenesis of sporadic ad is discussed at molecular level by applying the principles of cell physics and biology. the purpose of this paper is to harmonize the existing theories of etiology of ad and to solve the source problems that have plagued the research field of neurodegenerative diseases for a long time. conclusion: (1) basic contents: excess cations are transferred from extracellular to intracellular. they compete position with potassium ions on the inner surface of cell membranes, thus abatementing the membrane potential, making action potential unable to activate calcium channels normally, which eventually leads to abnormal apoptosis of brain cells. amyloid plaque is the remains of abnormal apoptotic brain cells. amyloid plaque is the aggregation of amyloid spots by van der waals force and electrostatic attraction, and its interstitium is amyloid protein. brain cells consist of neurons, microglia and astrocytes in turn. most of the spotted nuclei in the remains are cations. (2) solutions: physical means, especially transcranial magnetoelectricity stimulation, should be the first choice for treatment. (3) naming principles: because of the core point of view in this paper—the position of cation occupying potassium is the initiating factor of ad, so the etiology theory is named theory of dove-like particles. take the chinese idiom “turtledove occupies the nest of magpies”. “turtledove” represents the non-essential cation, “magpie” refers to the effective potassium ion, and “nest” refers to the position of the effective potassium ion.
alzheimer,, etiology,, cationic placement,, amyloid plaque,, cell remains,, physical mean
-
243浏览
-
0点赞
-
0收藏
-
55分享
-
0下载
-
0评论
-
引用
【期刊论文】method and application of endogenous neurotransmitter regulation theory
zuodong sun, bing lu, yuting sun, aili wang, aobo dong, wenhua wang, wuyi sun
vixra.org,2018,1802(2):1802-1810
2018年03月13日
[objective] verification and application of the theory of brain cell activation. [methods] applying transcranial magnetoelectric encephalopathy treatment instrument to the treatment of neurodegenerative disease. including but not limited to: parkinson's disease and alzheimer's disease. [results] transcranial magnetoelectric encephalopathy treatment instrument,its double - center, randomized, double - blind clinical trial has been carried out at the national clinical trial base,it proves that the instrument is safe and effective. this instrument is especially suitable for the treatment of the following diseases: 1. it is suitable for the treatment of mild to moderate parkinson's disease and can significantly improve resting tremor, rigidity, bradykinesia in patients with parkinson’s disease and other symptoms. 2. it is suitable for the treatment of mild and moderate alzheimer's disease and vascular dementia and can improve the mental state, cognitive behavior and self-care ability of daily life. 3. it is suitable for the treatment of mild to moderate depression and can obviously improve the main symptoms of depression, sleep disorder, anxiety and so on. 4. it is suitable for the treatment of cerebral apoplexy sequelae, cerebrovascular dementia and brain atrophy, it can activate the brain cells in the state of inhibition and mobilize the potential energy of the brain. [conclusions] the theory of brain cell activation,it is applicable to encephalopathy and not limited to encephalopathy,according to this theory, the subject of "physical disease science" can be created.
the theory of brain cell activation, ca2+, channel, transcranial magnetoelectric, parkinson', s disease
-
180浏览
-
0点赞
-
0收藏
-
30分享
-
4下载
-
0评论
-
引用
【期刊论文】the theory of brain cell activation
zuodong sun
journal of us-china medical science,2017,14(5):203-211
2017年09月12日
this is a new idea that based on effective treatment of parkinson's disease and alzheimer's disease with transcranial magnetoelectric stimulation technology, it can understand a hypothesis about voltage-gated ca2 channels is the best target for activation by physical means, basic content:parkinson's disease , alzheimer's disease etc. neuronal degeneration diseases, that closely related to physical-gated ion channels, which can be treated with physical means, activating neurotransmitters-energic neurons plays key roles in the treatment, and voltage-gated ca2 channels is the best target for physical means, the purpose is to induce ca2 inflowing and triggers neuronal axon terminals synaptic vesicles releasing neurotransmitters. the theory of brain cell activation sets forth the principle, method and purpose of treatment of the physical gated ion channel diseases such as alzheimer's disease, parkinson's disease and other neural degeneration diseases, and indicates that the attempt to treat these diseases using pharmaceutical and chemical approaches could shake our confidence in conquering the diseases, and the application of physical approaches or combined application of physical and chemical approaches in the treatment of some major encephalopathy may be our main research direction in the future.
neuronal degeneration, physical means; transcranial magnetoelectric, voltage-gated ca2 channels, best
-
177浏览
-
0点赞
-
0收藏
-
27分享
-
4下载
-
0评论
-
引用
张旺, 王孝义, 郭洪渠, 宋媛媛, 王爱丽, 孙作东, 沈红
中华神经医学杂志,2018,17(7):673-677
2018年07月15日
目的 探讨经颅磁电刺激(tmes)疗法对海仁酸(ka)致颞叶癫痫鼠的疗效。 方法 62只大鼠按照随机数字表法分为预处理组(共32只)和治疗组(共30只),预处理组再分为4个小组,分别给予治疗仪最大电流强度(mci) 0%,25%,50%,75%的电流刺激,确定本实验条件下的最佳刺激参数。治疗组再分为3个小组,每组10只。2组(癫痫刺激组、癫痫非刺激组)为符合纳入标准的癫痫模型大鼠,刺激组刺激参数为预处理组确定出的最佳刺激参数;非刺激组大鼠刺激前后处理与刺激组相同,但治疗仪无有效的能量输出。第3组对照组为未造模对照大鼠。3组大鼠均给予每天1次,40 min/次,共14 d的刺激。记录并比较3组大鼠行为学、电生理学及组织学变化,以评估tmes疗法对癫痫大鼠的疗效。 结果 50%mci为最佳刺激强度。癫痫刺激组大鼠癫痫波出现的频率明显低于癫痫非刺激组大鼠[(30.210 ±4.580)次/min vs. (31.380 ± 4.247)次/min],差异有统计学意义(t=3.235,p=0.001)。timm染色结果提示3组大鼠染色评分差异有统计学意义(f=17.429, p=0.000),癫痫刺激组大鼠海马齿状回的内分子层timm染色评分较癫痫非刺激组明显减轻,差异有统计学意义(p<0.05)。结论 tmes疗法可通过改善癫痫大鼠海马齿状回内分子层组织学变化程度来影响齿状回神经元环路的形成,进而降低癫痫脑电波的发作频率。
经颅磁电刺激, 颞叶癫痫, 海仁酸
-
219浏览
-
0点赞
-
0收藏
-
28分享
-
4下载
-
0评论
-
引用