Menu Home

Áåñïëàòíàÿ òåõíè÷åñêàÿ áèáëèîòåêà äëÿ ëþáèòåëåé è ïðîôåññèîíàëîâ Áåñïëàòíàÿ òåõíè÷åñêàÿ áèáëèîòåêà


Àíãëèéñêèé ÿçûê äëÿ ìåäèêîâ. Atherosclerotic mechanisms (ñàìîå âàæíîå)

Êîíñïåêòû ëåêöèé, øïàðãàëêè

Ñïðàâî÷íèê / Êîíñïåêòû ëåêöèé, øïàðãàëêè

Êîììåíòàðèè ê ñòàòüå Êîììåíòàðèè ê ñòàòüå

Îãëàâëåíèå (ðàçâåðíóòü)

54. Atherosclerotic mechanisms

Pivotal mechanisms involved in atherogenesis include.

1. Focal intimal influx and accumulation of plasma lipoproteins at lesion-prone sites.

2. Focal intimal monocyte-macrophage recruitment.

3. Generation within the intima of reactive oxygen species of free radicals by smooth muscle cells, macrophages and endothelial cells.

4. Oxidative modification of intimal lipoproteins by these reactive oxygen species to produce such oxidatively modified lipoproteins species as oxidized LDL and Lp(a).

5. Foam cell formation due to the uptake of oxidatively modified lipoproteins by the non-down-regulating macrophage scavenger receptors.

6. Foam cell necrosis, most likely due to the cytotoxic effects of oxidatively modified LDL. This process gives rise to the extracellular lipid core, and is an important event in the transition from the reversible fatty streak to the less readily reversible, more advanced atherosclerotic lesion.

7. Smooth muscle cell migration to and proliferation in the arterial intima, a process in which platelet-derived growth factor is believed to act as a chemo oattractant. Fibroblast growth factors likely regulate smooth muscle cell proliferation.

8. Plaque rupture, primarily at sites of greatest macrophage density. Proteolytic enzymes released by macrophages may stimulate plaque rupture, which ultimately leads to mural or occlusive thrombosis. Thrombosis contributes significantly to the stages of plaque growth.

9. Autoimmune inflammation, likely the result of anti-genic epitopes of oxidized LDL. Lipoproteins, such as LDL and Lp(a), enter the subendothelial space and intercept free radicals generated by endothelial cells. Following oxidation, these charge-modified lipoproteins are taken up by the non-down-regulating macrophage scavenger receptors pathway, resulting in lipid-rich, cho-lesteryl ester rich foam cells. Concurrently, circulating monocytes continue to attach to the endothelium, attracted by the chem oattractant MCP-1, and oxidized LDL. The expression and synthesis of MCP-1 by endothelial and smooth muscle cells is augmented by oxidatively modified lipoproteins, allowing the process to continue.

The next phase in atherogenesis is the development of the classic fatty streak as result of the continued uptake of oxidatively modified LDL by the macrophage scavenger receptors with continuing foam cell formation. A few smooth muscle cells can also be seen apparently entering the subendothelial space and proliferating within the intima during this phase. The transitional phase of atherogenesis is characterized by necrosis of the foam cells and the formation of an extracellular lipid core. In this stage, there is an increase in both smooth muscle cells proliferation and collagen synthesis, and lesions continue to grow. As long as elevated low density lipoproteins are present in the circulation, the atherosclerosis process continues. Among the additional changes taking place is the influx of Tlymphocytes. The involvenment of an autoimmune inflammatory component becomes obvious in the late stages of lesion development and is reflected by a prominent lymphocytic infiltration of the adventitia.

New words

atherogenesis - àòåðîãåíåç

plaque - àòåðîñêëåðîòè÷åñêàÿ áëÿøêà

lymphocytic - ëèìôîòè÷åñêèé

inflammatory - âîñïàëèòåëüíûé

low density lipoproteins - ëèïîïðîòåèíû íèçêîé ïëîòíîñòè

Àâòîð: Åëåíà Áåëèêîâà

<< Íàçàä: Iron in the body

>> Âïåðåä: Advances in blood component separation and plasma treatment for therapeutics

Ðåêîìåíäóåì èíòåðåñíûå ñòàòüè ðàçäåëà Êîíñïåêòû ëåêöèé, øïàðãàëêè:

Ìåæäóíàðîäíûå ñòàíäàðòû àóäèòà. Øïàðãàëêà

Óãîëîâíî-ïðîöåññóàëüíîå ïðàâî Ðîññèéñêîé Ôåäåðàöèè. Øïàðãàëêà

Ýêîíîìèêà ôèðìû. Êîíñïåêò ëåêöèé

Ñìîòðèòå äðóãèå ñòàòüè ðàçäåëà Êîíñïåêòû ëåêöèé, øïàðãàëêè.

×èòàéòå è ïèøèòå ïîëåçíûå êîììåíòàðèè ê ýòîé ñòàòüå.

<< Íàçàä

Ïîñëåäíèå íîâîñòè íàóêè è òåõíèêè, íîâèíêè ýëåêòðîíèêè:

Õîðîøî óïðàâëÿåìûå ëóãà ìîãóò êîìïåíñèðîâàòü âûáðîñû îò ñêîòà 15.02.2026

Æèâîòíîâîäñòâî, îñîáåííî ðàçâåäåíèå êðóïíîãî ðîãàòîãî ñêîòà, ÷àñòî îáâèíÿþò â çíà÷èòåëüíîì âêëàäå â ãëîáàëüíîå ïîòåïëåíèå èç-çà ìîùíîãî ïàðíèêîâîãî ãàçà - ìåòàíà, êîòîðûé âûäåëÿåòñÿ ïðè ïèùåâàðåíèè ó æâà÷íûõ æèâîòíûõ. Ýòî âûçûâàåò îñòðûå ïîëèòè÷åñêèå ñïîðû è ïðèçûâû ê ñîêðàùåíèþ ïîòðåáëåíèÿ ìÿñà. Îäíàêî ó÷åíûå íàïîìèíàþò, ÷òî ïîëíàÿ êàðòèíà êëèìàòè÷åñêîãî âîçäåéñòâèÿ îòðàñëè íå îãðàíè÷èâàåòñÿ òîëüêî âûáðîñàìè îò æèâîòíûõ: îãðîìíóþ ðîëü èãðàåò îêðóæàþùàÿ ýêîñèñòåìà - ïàñòáèùà, ïî÷âà è ðàñòèòåëüíîñòü, êîòîðûå ñïîñîáíû àêòèâíî ïîãëîùàòü óãëåêèñëûé ãàç èç àòìîñôåðû. Èññëåäîâàòåëè èç Óíèâåðñèòåòà Íåáðàñêè-Ëèíêîëüíà ðåøèëè ãëóáæå èçó÷èòü ýòîò áàëàíñ. Ãðóïïà ïîä ðóêîâîäñòâîì ïðîôåññîðà Ãàëåíà Ýðèêñîíà ñîñðåäîòî÷èëàñü íà òîì, êàê ïðàâèëüíî îðãàíèçîâàííûå ïàñòáèùà íàêàïëèâàþò óãëåðîä â ðàñòåíèÿõ è ãðóíòå áëàãîäàðÿ åñòåñòâåííûì ïðîöåññàì, ñòèìóëèðóåìûì âûïàñîì ñêîòà. Ó÷åíûå ïîä÷åðêèâàþò, ÷òî ïðè äîñòàòî÷íîì óðîâíå îñàäêîâ è ãðàìîòíîì óïðàâëåíèè òàêèå ëóãà ïðåâðàùàþòñÿ â ìîùíûå ïðèðîäíûå ïîãëî ...>>

NASA òåñòèðóåò èííîâàöèîííóþ òåõíîëîãèþ êðûëà 15.02.2026

Êîììåð÷åñêàÿ àâèàöèÿ åæåãîäíî ðàñõîäóåò êîëîññàëüíûå îáúåìû êåðîñèíà, ÷òî ñêàçûâàåòñÿ íå òîëüêî íà áþäæåòå àâèàêîìïàíèé, íî è íà ñîñòîÿíèè îêðóæàþùåé ñðåäû.  2024 ãîäó ãëîáàëüíûå çàòðàòû íà àâèàöèîííîå òîïëèâî äîñòèãëè 291 ìèëëèàðäà äîëëàðîâ, è ýòà ñóììà ïðîäîëæàåò ðàñòè. ×òîáû ñïðàâèòüñÿ ñ ýòèìè âûçîâàìè, NASA àêòèâíî ðàáîòàåò íàä òåõíîëîãèÿìè, ñïîñîáíûìè çàìåòíî ïîâûñèòü àýðîäèíàìè÷åñêóþ ýôôåêòèâíîñòü ñàìîëåòîâ. Îäíèì èç ñàìûõ ïåðñïåêòèâíûõ íàïðàâëåíèé ñòàëî ñîçäàíèå ñïåöèàëüíîé êîíñòðóêöèè êðûëà, êîòîðàÿ ìàêñèìèçèðóåò åñòåñòâåííûé ëàìèíàðíûé ïîòîê âîçäóõà è ìèíèìèçèðóåò ñîïðîòèâëåíèå.  ÿíâàðå 2026 ãîäà ñïåöèàëèñòû NASA Armstrong Flight Research Center óñïåøíî ïðîâåëè âàæíûé ýòàï íàçåìíûõ èñïûòàíèé êîíöåïöèè Crossflow Attenuated Natural Laminar Flow (CATNLF). Äëÿ ýêñïåðèìåíòà ïîä ôþçåëÿæ èññëåäîâàòåëüñêîãî ñàìîëåòà F-15B çàêðåïèëè âåðòèêàëüíî îðèåíòèðîâàííóþ ìàñøòàáíóþ ìîäåëü âûñîòîé îêîëî 0,9 ì (3 ôóòà), íàïîìèíàþùóþ óçêèé êèëü. Òàêàÿ êîìïîíîâêà ïîçâîëèëà ïîäâåðãíóòü ïðîòîòèï ð ...>>

Çàáîòà î âíóêàõ î÷åíü ïîëåçíà äëÿ çäîðîâüÿ ìîçãà 14.02.2026

Îáùåíèå ìåæäó ïîêîëåíèÿìè ïðèíîñèò ðàäîñòü âñåé ñåìüå, íî ìàëî êòî çàäóìûâàåòñÿ, íàñêîëüêî àêòèâíî áàáóøêè è äåäóøêè, çàáîòÿùèåñÿ î âíóêàõ, ïîääåðæèâàþò ñâîþ óìñòâåííóþ ôîðìó. Ðåãóëÿðíîå âçàèìîäåéñòâèå ñ äåòüìè ñòèìóëèðóåò ìîçã ïîæèëûõ ëþäåé, ïîìîãàÿ ñîõðàíÿòü ïàìÿòü, ñêîðîñòü ìûøëåíèÿ è îáùóþ êîãíèòèâíóþ àêòèâíîñòü. Íîâûå íàó÷íûå äàííûå ïîäòâåðæäàþò, ÷òî òàêàÿ äîáðîâîëüíàÿ ïîìîùü íå òîëüêî âàæíà äëÿ îáùåñòâà, íî è ìîæåò çàìåäëÿòü âîçðàñòíûå èçìåíåíèÿ â ìîçãå. Èññëåäîâàòåëè èç Òèëáóðãñêîãî óíèâåðñèòåòà â Íèäåðëàíäàõ ïðîâåëè àíàëèç, ÷òîáû ïîíÿòü, ïðèíîñèò ëè óõîä çà âíóêàìè ðåàëüíóþ ïîëüçó çäîðîâüþ ïîæèëûõ ëþäåé. Âåäóùèé àâòîð ðàáîòû Ôëàâèÿ ×åðå÷åñ îòìåòèëà, ÷òî ìíîãèå áàáóøêè è äåäóøêè ðåãóëÿðíî ïðèñìàòðèâàþò çà äåòüìè, è îñòàâàëñÿ îòêðûòûì âîïðîñ, íàñêîëüêî ýòî ïîëîæèòåëüíî ñêàçûâàåòñÿ íà èõ ñîáñòâåííîì áëàãîïîëó÷èè, îñîáåííî â ïëàíå êîãíèòèâíûõ ôóíêöèé. Ó÷åíûå ïîñòàâèëè öåëü âûÿñíèòü, ñïîñîáåí ëè ðåãóëÿðíûé óõîä çà âíóêàìè çàìåäëèòü ñíèæåíèå ïàìÿòè è äðóãèõ óìñòâåííûõ ñïîñîá ...>>

Ñëó÷àéíàÿ íîâîñòü èç Àðõèâà

Ðàäèîìàÿê äëÿ ï÷åëû 19.11.2006

Äëÿ ñëåæåíèÿ çà ïîëåòîì íàñåêîìûõ óæå äàâíî ïûòàþòñÿ ïðèìåíÿòü ðàäèîëîêàòîð. Íî íà ìàëîé âûñîòå, òèïè÷íîé äëÿ ïîëåòà íàñåêîìûõ, ðàäèîâîëíû îòðàæàþòñÿ îò ðàñòåíèé, ïîñòðîåê, íåðîâíîñòåé ìåñòíîñòè. Ñèãíàë, îòðàæåííûé îò ìàëîé öåëè, òåðÿåòñÿ â ïîìåõàõ.

Àíãëèéñêèå ñïåöèàëèñòû ïðåäëîæèëè èñïîëüçîâàòü äëÿ ñëåæåíèÿ çà íàñåêîìûìè òàê íàçûâàåìûé òðàíñïîíäåð - ïðîâîëî÷êó-àíòåííó ñ âêëþ÷åííûì â íåå ïîëóïðîâîäíèêîâûì äèîäîì. Ïðè îáëó÷åíèè ýòîãî óñòðîéñòâà ðàäèîâîëíàìè îíî èñïóñêàåò âîëíó âäâîå áîëüøåé ÷àñòîòû. Êñòàòè, íà ýòîì ïðèíöèïå îñíîâàíà ðàáîòà íàêëååê, íå ïîçâîëÿþùèõ âûíåñòè èç ìàãàçèíà íåîïëà÷åííóþ ïîêóïêó.

Òðàíñïîíäåð âåñèò íåñêîëüêî ìèëëèãðàììîâ è íèñêîëüêî íå ìåøàåò ïîëåòó.

Äðóãèå èíòåðåñíûå íîâîñòè:

▪ Ýëåêòðè÷åñêàÿ êàïñóëà äëÿ ñòèìóëÿöèè æåëóäîêà è óëó÷øåíèÿ àïïåòèòà

▪ Âíåøíèå íàêîïèòåëè 5 ÒÁ îò LaCie

▪ Áåñøóìíûå ñàìîëåòû íà ñîâèíûõ êðûëüÿõ

▪ ÈÑ Toshiba TC3567õ ñ ïîääåðæêîé ñòàíäàðòà Bluetooth Low Energy 4.1

▪ Æèäêèé ëàçåð, íå èñïàðÿþùèéñÿ â âîçäóõå

Ëåíòà íîâîñòåé íàóêè è òåõíèêè, íîâèíîê ýëåêòðîíèêè

 

Èíòåðåñíûå ìàòåðèàëû Áåñïëàòíîé òåõíè÷åñêîé áèáëèîòåêè:

▪ ðàçäåë ñàéòà Îãðàíè÷èòåëè ñèãíàëà, êîìïðåññîðû. Ïîäáîðêà ñòàòåé

▪ ñòàòüÿ Åñëè êòî-òî êîå-ãäå ó íàñ ïîðîé. Êðûëàòîå âûðàæåíèå

▪ ñòàòüÿ ×òî òàêîå ðàê? Ïîäðîáíûé îòâåò

▪ ñòàòüÿ Èäåíòèôèêàöèÿ îïàñíîñòåé

▪ ñòàòüÿ Èçãîòîâëåíèå ïå÷àòíîé ïëàòû â äîìàøíèõ óñëîâèÿõ. Ýíöèêëîïåäèÿ ðàäèîýëåêòðîíèêè è ýëåêòðîòåõíèêè

▪ ñòàòüÿ Ìîäåëè ïàðàøþòîâ. Ôèçè÷åñêèé ýêñïåðèìåíò

Îñòàâüòå ñâîé êîììåíòàðèé ê ýòîé ñòàòüå:

Èìÿ:


E-mail (íå îáÿçàòåëüíî):


Êîììåíòàðèé:





Ãëàâíàÿ ñòðàíèöà | Áèáëèîòåêà | Ñòàòüè | Êàðòà ñàéòà | Îòçûâû î ñàéòå

www.diagram.com.ua

www.diagram.com.ua
2000-2026