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Nursing Pathophysiology Exam - Questions and Answers - Comprehensive Final Assessment

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Nursing Pathophysiology Exam - Questions and Answers - Comprehensive Final Assessment - Most Popular Final TABLE OF CONTENTS FINAL COMPREHENSIVE: I. Cellular Injury Reversible vs Irreversible Necrosis vs Apoptosis Oxidative Stress II. Inflammation Acute Vascular Permeability Neutrophils Chronic Macrophages Lymphocytes Granuloma Mediators Histamine Prostaglandins Leukotrienes Cytokines III. Cardiovascular Heart Failure Compensatory Sympathetic RAAS Vasoconstriction Na Water Retention Preload Afterload Remodeling Hypertrophy Dilation Maladaptive BNP Ischemic Heart Disease Shock Types Hypovolemic Cardiogenic Distributive Obstructive IV. Respiratory COPD Chronic Bronchitis Emphysema Goblet Hyperplasia Mucus Hypersecretion Loss Alveolar Septa Elastic Recoil Air Trapping Barrel Chest FEV1/FVC 0.70 Asthma Th2 Eosinophils IgE Mast Cell Histamine Bronchoconstriction Reversible ARDS Diffuse Alveolar Damage Increased Permeability Protein-Rich Edema Hyaline Membrane V/Q Mismatch Shunt Hypoxemia Refractory V. Endocrine Type 2 Insulin Resistance Decreased Glucose Uptake Liver Increased Gluconeogenesis Beta Cell Dysfunction Relative Deficiency Type 1 Autoimmune Absolute Deficiency DKA Absolute Deficiency Lipolysis Ketogenesis Acidosis pH 7.3 Bicarbonate 18 Kussmaul HHNKS Relative Deficiency No Ketosis Osm 320 Glucose 600 Hyperthyroidism Graves TSI TSH Receptor Increased T4 T3 BMR Hypothyroidism Hashimoto Decreased T4 T3 BMR VI. Renal Nephrotic Increased Permeability Podocyte Injury Proteinuria 3.5 g/day Hypoalbuminemia Edema Hyperlipidemia Hypercoagulable Nephritic Inflammation Immune Complex Decreased GFR Na Water Retention HTN Oliguria RBC Casts Hematuria Proteinuria 3.5 g VII. GI Hepatic Cirrhosis Chronic Injury Fibrosis Nodules Portal Hypertension Increased Resistance Decreased Synthetic Albumin Clotting Factors PT/INR Up Jaundice Ascites Varices Splenomegaly Spider Angiomas Palmar Erythema Acute Pancreatitis Premature Trypsin Autodigestion Inflammation Edema Hemorrhage Alcohol Gallstones SIRS Lipase Amylase PUD Imbalance Aggressive Acid Pepsin H. pylori NSAID Decreased Protective Mucus Bicarbonate VIII. Neurological Ischemic Stroke Thrombotic Embolic Occlusion Decreased Cerebral Blood Flow 20 mL/100g/min Ischemia Penumbra Salvageable Excitotoxicity Glutamate Calcium Cytotoxic Edema Infarction Normal Pressure Hydrocephalus Triad Wet Wobbly Wacky Confusion Incontinence Gait Disturbance Enlarged Ventricles VP Shunt IX. Immune SLE Type III Hypersensitivity Immune Complex ANA dsDNA Low C3 C4 Butterfly Rash Photosensitivity Joint Pain Nephritis RA Chronic Synovitis Pannus TNF IL-1 IL-6 RF Anti-CCP Symmetric Small Joints Morning 30 min Systemic OA Degenerative Cartilage Loss Osteophyte Non-Inflammatory Morning 30 min Crepitus X. Hematologic Anemia Decreased Production Iron B12 Folate Erythropoietin Increased Destruction Hemolysis Blood Loss XI. Practice Questions 550 Comprehensive Final Each Asked Like Real Nursing Pathophysiology Exam XII. Answer Key Detailed Rationales WELL-ASKED QUESTIONS FINAL (550Q COMPREHENSIVE): 1. A patient with hyperthyroidism presents with weight loss heat intolerance tremor palpitations exophthalmos low TSH high free T4. What is pathophysiology? A. Hypothyroidism B. Hyperthyroidism Graves autoimmune TSI stimulates TSH receptor increased T4 T3 increased basal metabolic rate heat intolerance weight loss tremor palpitations increased beta adrenergic exophthalmos glycosaminoglycan deposition retroorbital C. No hyperthyroid D. Only hypothyroid Answer: B Rationale: Hyperthyroidism Graves TSI stimulates TSH receptor increased T4 T3 increased BMR heat intolerance weight loss tremor palpitations beta adrenergic exophthalmos glycosaminoglycan deposition. 2. A patient with anemia fatigue pallor low Hb Hct. What are types pathophysiology? A. Only one type B. Anemia decreased RBC production iron deficiency B12 folate deficiency decreased erythropoietin increased destruction hemolysis blood loss hemorrhage C. No anemia types D. Only blood loss Answer: B Rationale: Anemia decreased production iron B12 folate erythropoietin increased destruction hemolysis blood loss. ... 548 more comprehensive final review covering all Cellular Injury Inflammation Cardiovascular Respiratory Endocrine Renal GI Hepatic Neuro Immune Hematologic ... WHY COMPREHENSIVE FINAL IS #1 BEST SELLER: - Covers All - Cellular Injury Inflammation Cardiovascular Heart Failure Shock Respiratory COPD Asthma ARDS Endocrine Type 1 Type 2 DKA HHNKS Hyper Hypothyroidism Renal Nephrotic Nephritic GI Cirrhosis Pancreatitis PUD Neurological Ischemic Stroke NPH Immune SLE RA OA Hematologic Anemia - Perfect for Nursing Pathophysiology Final Exam Preparation - Table of Contents Included - Well-Asked Real Exam Format - Mixed Answers A=140 B=121 C=135 D=154 - Real Simulation - Questions and Answers + Detailed Rationales FEATURES FINAL: - 550 Questions Mixed A/B/C/D - Table of Contents Included - Each Question Asked Like Real Nursing Pathophysiology Exam - Well-Asked Vignettes - Questions and Answers + Detailed Rationales - Based on Nursing Pathophysiology Blueprint Institution: Nursing School | Course: Nursing Pathophysiology Exam | Format: PDF Instant Download TAGS: Nursing Pathophysiology Exam, Cellular Injury, Inflammation, Cardiovascular, Respiratory, Endocrine, Renal, GI Hepatic, Neuro, Immune, Hematologic, Questions and Answers, Detailed Rationales

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Nursing Pathophysiology Exam - Questions and Answers - Comprehensive Final Assessment

Nursing Pathophysiology | Cellular Injury Inflammation | Systemic Disorders | High Yield


TABLE OF CONTENTS

1. I. Cellular Injury - Reversible vs Irreversible, Necrosis vs Apoptosis, Oxidative Stress Free Radicals
2. II. Inflammation - Acute Inflammation Vascular Permeability Neutrophils, Chronic Inflammation Macrophages Lymphocytes Granuloma,
Inflammatory Mediators Histamine Prostaglandins Leukotrienes Cytokines
3. III. Cardiovascular - Heart Failure Compensatory Sympathetic RAAS Vasoconstriction Sodium Water Retention Preload Afterload Ventricular
Remodeling Hypertrophy Dilation Maladaptive BNP, Ischemic Heart Disease, Shock Types Hypovolemic Cardiogenic Distributive Obstructive
4. IV. Respiratory - COPD Chronic Bronchitis Emphysema Chronic Inflammation Goblet Hyperplasia Mucus Hypersecretion Loss Alveolar Septa
Elastic Recoil Air Trapping Barrel Chest FEV1/FVC <0.70, Asthma Chronic Inflammation Th2 Eosinophils IgE Mast Cell Histamine
Bronchoconstriction Reversible, ARDS Diffuse Alveolar Damage Increased Permeability Protein-Rich Edema Hyaline Membrane V/Q Mismatch
Shunt Hypoxemia Refractory
5. V. Endocrine - Type 2 Diabetes Insulin Resistance Decreased Glucose Uptake Liver Increased Gluconeogenesis Beta Cell Dysfunction Relative
Deficiency Glucotoxicity Lipotoxicity, Type 1 Autoimmune Beta Cell Destruction Absolute Deficiency, DKA Absolute Deficiency Lipolysis
Ketogenesis Beta-Hydroxybutyrate Acidosis pH <7.3 Bicarbonate <18 Kussmaul Polyuria, HHNKS Relative Deficiency No Ketosis Osm >320
Glucose >600 Dehydration Altered Mental, Hyperthyroidism Graves TSI TSH Receptor Increased T4 T3 BMR Tremor Palpitations Exophthalmos,
Hypothyroidism Hashimoto Lymphocytic Infiltration Decreased T4 T3 BMR Fatigue Weight Gain Cold Intolerance
6. VI. Renal - Nephrotic Increased Glomerular Permeability Podocyte Injury Proteinuria >3.5 g/day Hypoalbuminemia Decreased Oncotic Edema
Hyperlipidemia Loss Antithrombin Hypercoagulable, Nephritic Glomerular Inflammation Immune Complex Decreased GFR Sodium Water
Retention HTN Oliguria RBC Casts Hematuria Proteinuria <3.5 g Post-Strep IgA, AKI vs CKD
7. VII. Gastrointestinal & Hepatic - Cirrhosis Chronic Injury Fibrosis Nodules Portal Hypertension Increased Resistance Decreased Synthetic
Albumin Clotting Factors PT/INR Up Impaired Bilirubin Jaundice Ascites Varices Splenomegaly Estrogen Spider Angiomas Palmar Erythema,
Acute Pancreatitis Premature Trypsin Activation Autodigestion Inflammation Edema Hemorrhage Alcohol Gallstones SIRS Lipase Amylase
Hypocalcemia, PUD Imbalance Aggressive Acid Pepsin H. pylori NSAID Decreased Protective Mucus Bicarbonate Prostaglandin Urease
Ammonia
8. VIII. Neurological - Ischemic Stroke Thrombotic Embolic Occlusion Decreased Cerebral Blood Flow <20 mL/100g/min Ischemia Penumbra
Salvageable Excitotoxicity Glutamate Calcium Cytotoxic Edema Infarction, Normal Pressure Hydrocephalus Triad Wet Wobbly Wacky Confusion
Incontinence Gait Disturbance Enlarged Ventricles VP Shunt
9. IX. Immune - SLE Autoimmune Type III Hypersensitivity Immune Complex ANA dsDNA Low C3 C4 Butterfly Rash Photosensitivity Joint Pain
Nephritis, RA Autoimmune Chronic Synovitis Pannus TNF IL-1 IL-6 Joint Destruction RF Anti-CCP Symmetric Small Joints Morning >30 min
Systemic, OA Degenerative Cartilage Loss Decreased Proteoglycan Chondrocyte Dysfunction Osteophyte Non-Inflammatory Pain Worse Activity
Morning <30 min Crepitus
10. X. Hematologic - Anemia Decreased Production Iron B12 Folate Erythropoietin Increased Destruction Hemolysis Blood Loss Hemorrhage
11. XI. Practice Questions - Each Asked Like Real Nursing Pathophysiology Exam
12. XII. Answer Key with Detailed Rationales

,NURSING PATHOPHYSIOLOGY EXAM - PRACTICE QUESTIONS - EACH QUESTION ASKED LIKE REAL EXAM
Based on Nursing Pathophysiology Blueprint - Cellular Injury Inflammation Cardiovascular Respiratory Endocrine Renal GI Hepatic Neuro Immune Hematologic. High Yield.

1. A patient with heart failure presents with dyspnea on exertion, orthopnea, PND, crackles, peripheral edema, weight gain, elevated BNP, EF 30%.
What compensatory mechanisms are activated?
A. No RAAS
B. Only decreased RAAS
C. Sympathetic activation RAAS activation vasoconstriction sodium water retention increased preload afterload, ventricular remodeling hypertrophy dilation,
initially compensatory eventually maladaptive increased myocardial oxygen demand
D. No compensation
Answer: C
Rationale: HF compensatory sympathetic RAAS vasoconstriction Na water retention increased preload afterload ventricular remodeling hypertrophy dilation
initially compensatory eventually maladaptive increased O2 demand BNP released stretch.
2. A patient with acute pancreatitis presents with severe epigastric pain radiating back, nausea vomiting, elevated lipase 3x normal, alcohol use.
What is pathophysiology?
A. No pancreatitis
B. No autodigestion
C. Only gastritis
D. Acute pancreatitis premature activation trypsin within pancreas autodigestion inflammation edema hemorrhage, alcohol gallstones cause duct obstruction,
systemic inflammatory response SIRS, lipase amylase elevated, risk hypocalcemia
Answer: D
Rationale: Acute pancreatitis premature activation trypsin autodigestion inflammation edema hemorrhage alcohol gallstones duct obstruction SIRS lipase
amylase elevated hypocalcemia fat necrosis.
3. A 45-year-old with polyuria, polydipsia, polyphagia, fasting glucose 210 mg/dL, HbA1c 9.2%, obesity, insulin resistance. What is pathophysiology
of type 2 diabetes?
A. Type 2 insulin resistance peripheral tissues decreased glucose uptake liver increased gluconeogenesis beta cell dysfunction relative insulin deficiency
glucotoxicity lipotoxicity obesity inflammation
B. No diabetes
C. Only type 1
D. Type 1 autoimmune beta cell destruction
Answer: A
Rationale: Type 2 diabetes insulin resistance peripheral decreased glucose uptake liver increased gluconeogenesis beta cell dysfunction relative insulin
deficiency glucotoxicity lipotoxicity obesity inflammation.
4. What is difference between DKA and HHNKS?
A. DKA type 1 absolute insulin deficiency ketosis metabolic acidosis pH <7.3 bicarbonate <18 ketones positive glucose 250-600, HHNKS type 2 relative
deficiency no ketosis pH >7.3 bicarbonate >18 osm >320 glucose >600 severe dehydration altered mental status
B. No difference
C. Same
D. DKA type 2
Answer: A
Rationale: DKA type 1 absolute insulin deficiency ketosis acidosis pH <7.3 bicarbonate <18 ketones positive glucose 250-600, HHNKS type 2 relative
deficiency no ketosis pH >7.3 bicarbonate >18 osm >320 glucose >600 severe dehydration altered mental.
5. A 25-year-old female with butterfly rash, joint pain, fatigue, positive ANA dsDNA, low C3 C4, proteinuria. What disease pathophysiology?
A. RA
B. Systemic lupus erythematosus - autoimmune type III hypersensitivity immune complex deposition ANA dsDNA positive complement consumption low C3 C4,
inflammation multiple organs butterfly rash photosensitivity joint pain nephritis
C. Only osteoarthritis
D. No autoimmune
Answer: B
Rationale: SLE autoimmune type III hypersensitivity immune complex deposition ANA dsDNA positive low C3 C4 inflammation butterfly rash photosensitivity
joint pain nephritis.
6. A 70-year-old with sudden unilateral weakness, facial droop, aphasia, CT shows ischemic stroke. What is pathophysiology?
A. Only hemorrhage
B. No stroke
C. Ischemic stroke thrombotic or embolic occlusion cerebral artery decreased cerebral blood flow <20 mL/100g/min ischemia, penumbra salvageable,
excitotoxicity glutamate calcium influx, cytotoxic edema, if >10 min infarction
D. Hemorrhage only
Answer: C
Rationale: Ischemic stroke thrombotic embolic occlusion decreased cerebral blood flow <20 mL/100g/min ischemia penumbra salvageable excitotoxicity
glutamate calcium influx cytotoxic edema infarction if >10 min.
7. A patient with nephritic syndrome presents with hematuria, proteinuria <3.5 g, hypertension, oliguria, RBC casts. What is pathophysiology?
A. Only nephrotic
B. No hematuria

,C. Nephritic - glomerular inflammation immune complex deposition decreased GFR sodium water retention HTN oliguria, RBC casts hematuria, proteinuria <3.5
g, example post-strep GN IgA nephropathy
D. Nephrotic only
Answer: C
Rationale: Nephritic glomerular inflammation immune complex decreased GFR Na water retention HTN oliguria RBC casts hematuria proteinuria <3.5 g
post-strep IgA.
8. A patient with osteoarthritis knee pain worse activity morning <30 min crepitus no systemic. Pathophysiology?
A. No OA
B. OA degenerative wear tear cartilage loss decreased proteoglycan chondrocyte dysfunction osteophyte formation, non-inflammatory pain worse activity
morning <30 min crepitus no systemic
C. Only RA
D. RA
Answer: B
Rationale: OA degenerative cartilage loss decreased proteoglycan chondrocyte dysfunction osteophyte non-inflammatory pain worse activity morning <30 min
crepitus.
9. A patient with nephritic syndrome presents with hematuria, proteinuria <3.5 g, hypertension, oliguria, RBC casts. What is pathophysiology?
A. Nephrotic only
B. No hematuria
C. Only nephrotic
D. Nephritic - glomerular inflammation immune complex deposition decreased GFR sodium water retention HTN oliguria, RBC casts hematuria, proteinuria <3.5
g, example post-strep GN IgA nephropathy
Answer: D
Rationale: Nephritic glomerular inflammation immune complex decreased GFR Na water retention HTN oliguria RBC casts hematuria proteinuria <3.5 g
post-strep IgA.
10. A patient with nephrotic syndrome presents with proteinuria >3.5 g/day, hypoalbuminemia, edema, hyperlipidemia. What is pathophysiology?
A. Nephrotic - increased glomerular permeability loss negative charge podocyte injury proteinuria >3.5 g/day hypoalbuminemia decreased oncotic pressure
edema liver increased lipoprotein synthesis hyperlipidemia loss antithrombin III hypercoagulable
B. Nephritic hematuria HTN
C. Only nephritic
D. No proteinuria
Answer: A
Rationale: Nephrotic increased glomerular permeability podocyte injury proteinuria >3.5 g hypoalbuminemia decreased oncotic edema hyperlipidemia liver
lipoprotein synthesis loss antithrombin III hypercoagulable.
11. A patient with nephrotic syndrome presents with proteinuria >3.5 g/day, hypoalbuminemia, edema, hyperlipidemia. What is pathophysiology?
A. Only nephritic
B. Nephritic hematuria HTN
C. Nephrotic - increased glomerular permeability loss negative charge podocyte injury proteinuria >3.5 g/day hypoalbuminemia decreased oncotic pressure
edema liver increased lipoprotein synthesis hyperlipidemia loss antithrombin III hypercoagulable
D. No proteinuria
Answer: C
Rationale: Nephrotic increased glomerular permeability podocyte injury proteinuria >3.5 g hypoalbuminemia decreased oncotic edema hyperlipidemia liver
lipoprotein synthesis loss antithrombin III hypercoagulable.
12. A 45-year-old with polyuria, polydipsia, polyphagia, fasting glucose 210 mg/dL, HbA1c 9.2%, obesity, insulin resistance. What is pathophysiology
of type 2 diabetes?
A. Type 2 insulin resistance peripheral tissues decreased glucose uptake liver increased gluconeogenesis beta cell dysfunction relative insulin deficiency
glucotoxicity lipotoxicity obesity inflammation
B. Only type 1
C. No diabetes
D. Type 1 autoimmune beta cell destruction
Answer: A
Rationale: Type 2 diabetes insulin resistance peripheral decreased glucose uptake liver increased gluconeogenesis beta cell dysfunction relative insulin
deficiency glucotoxicity lipotoxicity obesity inflammation.
13. A 70-year-old with sudden unilateral weakness, facial droop, aphasia, CT shows ischemic stroke. What is pathophysiology?
A. Hemorrhage only
B. No stroke
C. Only hemorrhage
D. Ischemic stroke thrombotic or embolic occlusion cerebral artery decreased cerebral blood flow <20 mL/100g/min ischemia, penumbra salvageable,
excitotoxicity glutamate calcium influx, cytotoxic edema, if >10 min infarction
Answer: D
Rationale: Ischemic stroke thrombotic embolic occlusion decreased cerebral blood flow <20 mL/100g/min ischemia penumbra salvageable excitotoxicity
glutamate calcium influx cytotoxic edema infarction if >10 min.
14. A patient with asthma presents with episodic wheezing, dyspnea, cough, reversible obstruction, eosinophils, IgE elevated. Pathophysiology?
A. Only COPD
B. COPD fixed

, C. No asthma
D. Asthma chronic airway inflammation Th2 eosinophils IgE mast cell histamine leukotrienes bronchoconstriction mucus hypersecretion airway
hyperresponsiveness reversible obstruction
Answer: D
Rationale: Asthma chronic inflammation Th2 eosinophils IgE mast cell histamine leukotrienes bronchoconstriction mucus hyperresponsiveness reversible.
15. A patient with nephritic syndrome presents with hematuria, proteinuria <3.5 g, hypertension, oliguria, RBC casts. What is pathophysiology?
A. Nephritic - glomerular inflammation immune complex deposition decreased GFR sodium water retention HTN oliguria, RBC casts hematuria, proteinuria <3.5
g, example post-strep GN IgA nephropathy
B. Nephrotic only
C. No hematuria
D. Only nephrotic
Answer: A
Rationale: Nephritic glomerular inflammation immune complex decreased GFR Na water retention HTN oliguria RBC casts hematuria proteinuria <3.5 g
post-strep IgA.
16. A 70-year-old with sudden unilateral weakness, facial droop, aphasia, CT shows ischemic stroke. What is pathophysiology?
A. Ischemic stroke thrombotic or embolic occlusion cerebral artery decreased cerebral blood flow <20 mL/100g/min ischemia, penumbra salvageable,
excitotoxicity glutamate calcium influx, cytotoxic edema, if >10 min infarction
B. Hemorrhage only
C. Only hemorrhage
D. No stroke
Answer: A
Rationale: Ischemic stroke thrombotic embolic occlusion decreased cerebral blood flow <20 mL/100g/min ischemia penumbra salvageable excitotoxicity
glutamate calcium influx cytotoxic edema infarction if >10 min.
17. A patient with ARDS presents with severe hypoxemia PaO2/FiO2 <300, bilateral infiltrates, no cardiac failure, after sepsis. Pathophysiology?
A. ARDS diffuse alveolar damage increased alveolar-capillary permeability protein-rich edema, hyaline membrane formation, decreased compliance, V/Q
mismatch shunt severe hypoxemia refractory to O2, due to sepsis pneumonia aspiration
B. Cardiogenic edema
C. Only cardiogenic
D. No ARDS
Answer: A
Rationale: ARDS diffuse alveolar damage increased permeability protein-rich edema hyaline membrane decreased compliance V/Q mismatch shunt severe
hypoxemia refractory O2 sepsis pneumonia aspiration.
18. A patient with anemia fatigue pallor low Hb Hct. What are types pathophysiology?
A. Only blood loss
B. No anemia types
C. Only one type
D. Anemia decreased RBC production iron deficiency B12 folate deficiency decreased erythropoietin, increased destruction hemolysis, blood loss hemorrhage
Answer: D
Rationale: Anemia decreased production iron B12 folate erythropoietin increased destruction hemolysis blood loss.
19. A 25-year-old female with butterfly rash, joint pain, fatigue, positive ANA dsDNA, low C3 C4, proteinuria. What disease pathophysiology?
A. RA
B. Systemic lupus erythematosus - autoimmune type III hypersensitivity immune complex deposition ANA dsDNA positive complement consumption low C3 C4,
inflammation multiple organs butterfly rash photosensitivity joint pain nephritis
C. Only osteoarthritis
D. No autoimmune
Answer: B
Rationale: SLE autoimmune type III hypersensitivity immune complex deposition ANA dsDNA positive low C3 C4 inflammation butterfly rash photosensitivity
joint pain nephritis.
20. A patient with ARDS presents with severe hypoxemia PaO2/FiO2 <300, bilateral infiltrates, no cardiac failure, after sepsis. Pathophysiology?
A. Cardiogenic edema
B. No ARDS
C. Only cardiogenic
D. ARDS diffuse alveolar damage increased alveolar-capillary permeability protein-rich edema, hyaline membrane formation, decreased compliance, V/Q
mismatch shunt severe hypoxemia refractory to O2, due to sepsis pneumonia aspiration
Answer: D
Rationale: ARDS diffuse alveolar damage increased permeability protein-rich edema hyaline membrane decreased compliance V/Q mismatch shunt severe
hypoxemia refractory O2 sepsis pneumonia aspiration.
21. A patient with nephritic syndrome presents with hematuria, proteinuria <3.5 g, hypertension, oliguria, RBC casts. What is pathophysiology?
A. No hematuria
B. Nephritic - glomerular inflammation immune complex deposition decreased GFR sodium water retention HTN oliguria, RBC casts hematuria, proteinuria <3.5
g, example post-strep GN IgA nephropathy
C. Nephrotic only
D. Only nephrotic
Answer: B

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