MedNexus
2018年 · 第46卷第03期
MedNexus
- 全部
- 总编随笔
- 心力衰竭
- 临床研究
- 技术与方法
- 流行学与人群防治
- 病例报告
- 学术动态
- 综述
Recently, I participated in the "Leader Conference-2018 Brand Advantage Annual Ceremony" jointly organized by "Health News" and "Good Doctor Online", and deeply felt the enthusiasm and enthusiasm of the industry to participate in health management. A variety of ideas and techniques, involving all areas and levels of disease management. How should we make good use of the technology of our time, solve the health problems faced by our time (such as the so-called "lifestyle diseases") and improve our health level? Both the medical and industrial circles are thinking and exploring this issue. I participated in the final discussion session of the conference, mainly expressing a clinician's view on the application of mobile medicine and smart medicine in the management of chronic non-communicable diseases.
The patient was an 82-year-old male who was admitted to the hospital on 24 February 2017 due to "chest pain for 2 h". The patient suffered from sudden chest pain accompanied by sweating 2 h before admission and came to our emergency department. The electrocardiogram showed that the heart rate was 36 beats/min, the ST segment elevation of extensive anterior wall leads was 0.3~0.4 mV, and the ST segment depression of Ⅱ, Ⅲ and aVF leads was 0.1 mV. The patient was previously in good health. Considering "coronary heart disease, acute anterior wall myocardial infarction", after administration of "aspirin 300 mg, ticagrelor 180 mg, atorvastatin 40 mg, heparin 5 000 IU", coronary angiography was performed directly into the catheter laboratory through the right radial artery, which showed 100% occlusion of the proximal segment of the left anterior descending artery (
The 81-year-old male was admitted to the hospital on October 14, 2016 due to "sudden palpitations, chest tightness and dizziness for 1 d". Emergency electrocardiogram before admission showed complete atrioventricular block. The patient had a history of hypertension for more than 10 years, up to 180/100 mmHg (1 mmHg =0.133 kPa), oral valsartan (80 mg, once/d), amlodipine (5 mg, once/d); With a history of type 2 diabetes for more than 5 years, he took gliclazide extended-release tablets (30 mg, once a day), and his blood pressure and blood glucose were controlled normally. Physical examination on admission: clear consciousness, pulse 35 beats/min, breathing 18 beats/min, blood pressure 170/80 mmHg, clear breathing sounds in both lungs, no dry and wet rales, heart rate 35 beats/min, arrhythmia, no pathological murmur in each valve auscultation area, and no edema in both lower limbs. Electrocardiogram after admission: complete atrioventricular block. Admission diagnosis: (1) arrhythmia, third-degree atrioventricular block; (2) Grade 3 hypertension (very high risk); (3) Type 2 diabetes.
The patient was a 58-year-old male who was admitted to the hospital on December 5, 2016 due to "chest pain for 3 h". The patient began to develop chest pain without obvious trigger 3 h ago, accompanied by palpitations, no sweating, nausea, vomiting, dyspnea and hemoptysis. Previous history of hypertension, systolic blood pressure up to 160 mmHg (1 mmHg =0.133 kPa), untreated. No history of diabetes, no history of smoking or drinking. The symptoms of chest pain persisted and did not relieve. He came to our hospital for treatment. Physical examination: body temperature 36.4 ℃, pulse 62 beats/min, blood pressure 110/80 mmHg, no positive signs. ECG showed: sinus rhythm, V2~ V6The ST segment of the lead reached 0.5 mV oblique depression after the J point, and the T wave was symmetrical at the high tip. The ST segment of the aVR lead was elevated about 1.5 mV, and the ST segment of the lead Ⅰ and Ⅱ was mildly depressed (
A 14-year-old female was admitted to the hospital in November 2015 due to "recurrent syncope for 5 years and recurrence for 4 h". Five years ago, I had sudden syncope after running, which lasted about 1 min and then regained consciousness, accompanied by general fatigue, chest tightness, palpitation, sweating and dizziness. After that, syncope occurred twice, each attack was related to strenuous activity, and intermittent oral administration of "Coenzyme Q10 capsules" and other drugs. Sudden syncope after running 4 h ago, regained consciousness about 1 min later, accompanied by general fatigue, palpitation, chest tightness, dizziness, nausea and vomiting of stomach contents, which was non-jetting, and took 1 capsule of "Suxiao Jiuxin Pill". Previous visit to an outside hospital with blood pressure 90/68 mmHg (1 mmHg =0.133 kPa) and heart rate 105 beats/min. Electrocardiogram showed sinus rhythm, Ⅱ, Ⅲ, aVF and V2~ V6ST segment depression was 0.2 mV in the leads, and ST segment elevation was 0.1~0.2 mV in aVR and aVL leads. The diagnosis was "transient syncope to be examined (acute severe myocarditis, cardiogenic shock)", and symptomatic supportive treatment such as pressurization (dopamine) and fluid rehydration (specific usage and dose unknown) was given. After 2 hours, the blood pressure gradually returned to normal (specific value unknown). The patient was previously in good health.
Macrophages in tissues and organs participate in the inflammatory response under pathological conditions, and play an important role in the development of heart diseases and atherosclerosis[
For a long time, compared with heart failure with reduced ejection fraction (HFrEF), left ventricular ejection fraction (LVEF)<40%] and heart failure with preserved ejection fraction (HFpEF, LVEF ≥50%), heart failure with mid-range ejection fraction (HFmrEF, LVEF 40%-49%) It has not received enough attention in clinical practice. With the deepening of research, the clinical characteristics and prognosis of HFmrEF are increasingly different from those of HFrEF and HFpEF. The 2016 European Society of Cardiology (ESC) Heart Failure Diagnosis and Treatment Guidelines independently propose HFmrEF as a concept different from HFrEF and HFpEF, in order to attract researchers' attention to the pathophysiology, clinical features, treatment and prognosis of HFmrEF[
High conductivity calcium activates potassium ion channels (large-conductance calcium-activated potassium channels, BKCa) is widely distributed on mammalian cell membranes, and plays an important role in regulating physiological processes such as vascular tone, neurotransmitter and hormone release. renin-angiotensin-aldosterone system (RAAS) is an important humoral fluid regulation system in human body, which has the functions of maintaining water and electrolyte balance and regulating blood pressure. Current studies have shown that renin, angiotensin, and aldosterone can affect BKCA expression and activity and regulate its function. In this paper, RAAS versus BKCaThis paper summarizes the functions and mechanisms of.
The heart is one of the organs that consume more energy in the human body. The maintenance of its function depends on the continuous production and rational and efficient utilization of adenosine triphosphate (ATP). Disorders in the generation or utilization of energy can lead to the development of a variety of heart diseases. A large number of studies have proved that the metabolic remodeling and energy depletion of the heart are important causes of the occurrence and development of heart diseases[
tetrahydrobipterin (BH4) is an essential cofactor of three kinds of nitric oxide synthase, including endothelial nitric oxide synthase (eNOS), neuronal nitric oxide synthase (nNOS) and inducible nitric oxide synthase (iNOS). Under normal physiological conditions, nitric oxide synthase catalyzes L-arginine to generate nitric oxide (NO) under the condition of sufficient BH4; When BH4 is deficient, its catalytic product is a superoxide radical. Because NO has the effects of dilating blood vessels and preventing platelet aggregation, and BH4 directly affects NO level in the body, it is also closely related to cardiovascular system activity. BH4 deficiency may lead to a series of changes in cardiovascular activity such as endothelial dysfunction, hypertension, atherosclerosis, etc. This article reviews BH4 biosynthesis, regulation and its role in cardiovascular diseases.
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