Créer jeu
Télécharger
Obtenir Plan Académique
Partager le jeu
Intégrez-le à votre plateforme

Vous pouvez intégrer le jeu dans un LMS compatible avec LTI 1.1 ou LTI 1.3 comme Canvas, Moodle ou Blackboard. Les scores seront ainsi automatiquement enregistrés dans le carnet de notes de la plateforme.
Télécharger
Vous avez dépassé le nombre maximum de jeux que vous pouvez intégrer à Google Classroom avec votre Plan actuel.

Pour intégrer autant de jeux que vous le souhaitez dans Google Classroom, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Vous avez dépassé le nombre maximum de jeux que vous pouvez intégrer à Microsoft Teams avec votre Plan actuel.

Pour intégrer autant de jeux que vous le souhaitez dans Microsoft Teams, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Le téléchargement du jeu est une fonctionnalité exclusive pour les utilisateurs avec un Plan Académique ou un Plan Commercial.

Obtenez votre Plan Académique ou Plan Commercial dès maintenant et commencez à intégrer vos jeux dans votre LMS, votre site Web ou votre blog.

Si vous le souhaitez, vous pouvez télécharger une jeu de test ici et tester son intégration:

Fluid, Electrolyte & Acid-Base Mastery (Fill in the Blanks)

Compléter

Parties jouées 0

À propos de cette activité

Practice fluid compartments, balance, and electrolytes.

Créé par

United States

Téléchargez la version pour jouer sur papier

Créez votre propre jeu gratuite à partir de notre créateur de jeu
Affrontez vos amis pour voir qui obtient le meilleur score dans ce jeu

Top Jeux

%
Anonyme
Anonyme
%
%
%
Vous avez dépassé le nombre maximum de jeux que vous pouvez imprimer avec votre Plan actuel.

Pour imprimer autant de jeux que vous le souhaitez, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Imprimez votre jeu
Fluid, Electrolyte & Acid-Base Mastery (Fill in the Blanks)
 

Compléter

Fluid, Electrolyte & Acid-Base Mastery (Fill in the Blanks)Version en ligne

Practice fluid compartments, balance, and electrolytes.

par Cari Monee
1

A patient presents with that improves with diuretics . This is typical of a fluid shift in the __________ space , where excess fluid accumulates in dependent areas but can be mobilized by diuresis . In contrast , edema in which fluid is trapped in a may be seen after severe burns and is less responsive to diuretics , a phenomenon known as : __________ .

2

Normal fluid balance relies on intake and output , typically around a similar volume per day . The organ chiefly responsible for regulating fluid output is the , which adjust and solute excretion to maintain balance . When intake markedly exceeds output , examples include excess retention of water with weight gain and edema , whereas lowers interstitial and intravascular volumes . A common clinical sign of dehydration is skin tenting and dry mucous membranes , followed by tachycardia : __________ .

3

The major extracellular cation is , while the major intracellular cation is . An Na + level of 150 mEq / L indicates hypernatremia and can cause symptoms such as confusion , irritability , and seizures . Potassium is critical for cardiac rhythm and muscle contraction . Regulation of potassium is primarily through the hormone acting on the kidneys , but cell shifts also occur with acid - base disturbances : __________ .

4

Acid - base balance is maintained by , the lungs , and the kidneys . The first line of defense against pH changes is chemical buffers such as bicarbonate and phosphate in the plasma and cells . The most important buffer system in the body is the . The respiratory system regulates pH by removing or retaining CO2 ; hypoventilation causes CO2 retention leading to a metabolic shift called respiratory __________ , whereas hyperventilation causes loss of CO2 leading to respiratory __________ .

5

ABG interpretation uses the method : Respiratory Opposite , Metabolic Equal . For example , a pH 7 . 32 with CO2 50 mmHg indicates with metabolic compensation not yet complete . The patient with pH 7 . 48 and CO2 30 mmHg has metabolic alkalosis with respiratory compensation . If pH is 7 . 30 and HCO3 - is 18 mEq / L , this reflects with inadequate compensation : __________ .

6

The body ? s percentage varies with age and adiposity . In young adults , water content is highest in lean tissues ; as age increases and adipose tissue becomes more prominent , total body water decreases . The fluid compartment between the cells and blood vessels is the and plasma , both part of the . Fluid located outside cells but within tissue spaces is called interstitial fluid : __________ .

7

Vital signs and skin findings guide dehydration assessment . Skin tenting , dry mucous membranes , and tachycardia suggest due to dehydration , while rapid weight gain and edema indicate fluid overload . Edema in the lungs ( ) is a form of edema affecting the respiratory system , whereas involves the brain : __________ .

8

The hormone - regulated sensation that drives helps regulate fluid intake . Thirst is primarily triggered by increased plasma and decreased blood volume . The mechanism involves osmoreceptors in the that respond to changes in osmolality and angiotensin II during volume depletion : __________ .

9

Electrolyte balance includes the following relationships : is the chief extracellular cation , the chief intracellular cation , and calcium / magnesium participate in neuromuscular function . A low sodium state ( hyponatremia ) can cause confusion and seizures as the brain adapts to hypo - osmolality . The electrolyte that follows sodium to maintain electrical neutrality and is closely tied to is : __________ .

10

In acid - base terms , is characterized by low HCO3 - and a low pH , while respiratory alkalosis shows a high pH with low CO2 . Deep , rapid breathing seen in metabolic acidosis is called . The slowest but most powerful regulator of acid - base balance is the , which excrete H + and reabsorb bicarbonate to restore pH : __________ .

11

Average adult fluid intake and output in 24 hours should be approximately , give or take based on body size and activity . The organ primarily responsible for regulating fluid output is the . When intake is 800 mL and output is 2300 mL in 24 hours , the condition is , with negative fluid balance : __________ .

12

An type resulting from increased capillary hydrostatic pressure or decreased plasma leads to fluid accumulation in interstitial spaces . from liver disease is an example of generalized edema due to hepatic portal hypertension and low oncotic pressure . The fluid movement into interstitial spaces constitutes edema with potential third spacing : __________ .

13

A patient with severe burns may develop fluid trapped in nonfunctional spaces due to , a condition altering intravascular volume . This nonfunctional accumulation of fluid is described as , a phenomenon separate from interstitial . The process can significantly affect blood pressure and tissue perfusion : __________ .

14

Normal distribution of body fluids is called . When fluids shift from the extracellular to the intracellular space due to , cells swell . Conversely , dehydration lowers intracellular volume . The type of fluid movement is best described as a driven by osmolality changes : __________ .

15

A 70 kg adult has an estimated around 42 L . accounts for about two - thirds of TBW , and extracellular fluid accounts for about one - third . The extracellular space comprises and interstitial fluid . The term for the fluid within blood vessels is plasma , while the fluid outside cells but within tissue is interstitial fluid : __________ .

16

due to fluid loss triggers baroreceptor - mediated signals resulting in increased heart rate and vasoconstriction to preserve perfusion . Skin findings include tachycardia and mucous membrane dryness . The rate of falls , and serum osmolality may rise . Appropriate management includes to restore volume : __________ .

17

features fluid in the alveolar spaces , impairing gas exchange . It may occur due to heart failure or fluid overload . involves the brain and can cause headaches , confusion , or herniation if severe . Edema types can be classified as , intracellular , or transcompartmental : __________ .

18

regulation integrates signals from and volume receptors . The interprets increased plasma osmolality as a thirst stimulus , prompting fluid intake . This mechanism helps maintain serum osmolality close to a narrow range . The key regulator of thirst is : __________ .

19

The principal extracellular cation is ; the principal intracellular cation is . An isolated rise in sodium without accompanying water can lead to hypernatremia , manifesting with thirst and neurologic symptoms . Potassium balance is regulated by in the kidneys and by insulin and acid - base status in cells : __________ .

20

A patient with Na + 150 mEq / L experiences , which can cause confusion and due to brain cell dehydration . Corrective therapy involves careful to avoid rapid shifts that could lead to cerebral edema . The condition described is : __________ .

21

is essential for resting membrane potential and cardiac conduction . Its levels are tightly controlled by and cellular uptake . A potassium imbalance can cause muscle weakness or arrhythmias . The hormone most closely linked to potassium excretion is : __________ .

22

A patient with muscle spasms and tetany most likely has a deficiency of or , depending on the presentation . Tetany is classically associated with low causing neuromuscular excitability . The electrolyte linked to neuromuscular excitability is : __________ .

23

deficiency can predispose to system instability , including dysrhythmias and neuromuscular irritability . Magnesium follows and interacts with in regulating conduction and muscle tone . The electrolyte involved is : __________ .

24

often moves with to maintain ; it also participates in acid - base balance as a major anion . Low chloride can accompany metabolic alkalosis , while high chloride may accompany metabolic acidosis in some scenarios . The electrolyte that commonly follows sodium to maintain neutrality is : __________ .

25

Normal blood . A pH of 7 . 30 indicates requiring investigation of the underlying disturbance . If CO2 is high , the condition is metabolic compensation ongoing for respiratory acidosis ; if CO2 is low , the body has compensated via hyperventilation . The standard reference range for pH is : __________ .

Voulez-vous vraiment quitter la page ?

En quittant la page, vous perdrez la progression du jeu.