Kidney

Abdomen • Anatomy

KIDNEY

Study notes covering the introduction, functions, external features, relations, coverings, internal structure, blood supply, innervation and clinical anatomy of the kidney.

1

Introduction

Kidneys are a pair of excretory organs situated on the posterior abdominal wall, one on each side of the vertebral column, behind the peritoneum.

They:

  • Remove waste products of metabolism from blood.
  • Remove excess water and salts from blood.
  • Maintain blood pH.

Synonyms

Renes

Kidneys are also called renes.

Renal

Renal → derivative of renes.

Nephros

Source of terms such as:

  • Nephron
  • Nephritis
  • etc.
2

Functions of Kidney

  1. Helps in purification of blood by:
    • Ultrafiltration
    • Removal of metabolic waste products
  2. Conserves body fluid and electrolytes and maintains their balance.
  3. Functions as an endocrine organ by producing:
    • Erythropoietin → helps in formation of RBCs.
    • Renin → converts angiotensinogen to angiotensin, which helps in blood pressure regulation.
    • Vitamin D3
    • Kidney enzyme 1-hydroxylase converts 25-hydroxy vitamin D3, produced in liver, to active 1,25-dihydroxy vitamin D3.
3

Shape, Size and Weight

Kidneys are bean-shaped, reddish-brown organs.

Size

Length

11 cm

Left kidney is 1.5 cm longer than the right.

Breadth

6 cm

Anteroposterior / Thickness

3 cm

Weight

Male

150 g

Female

135 g

Lobulation

  • In the newborn, the kidney is lobulated.
  • In adults, its surface is smooth due to fusion of lobules.
  • In the foetus:
    • Kidney is lobulated.
    • It is made up of about 12 lobules.
  • After birth:
    • Lobules gradually fuse.
    • Adult kidney becomes uniformly smooth.
    • Evidence of foetal lobulation may persist.
4

Location

Regions Occupied

Epigastric region

Hypochondriac regions

Lumbar regions

Umbilical region

Vertebral Level

  • Kidneys lie opposite T12 to L3 vertebrae.
  • Right kidney is slightly lower than the left.
  • Left kidney is a little nearer to the median plane than the right.

Transpyloric Plane

The transpyloric plane passes through:

  • Upper part of the hilus of right kidney.
  • Lower part of the hilus of left kidney.
5

External Features

Each kidney is bean-shaped and has:

1. Two Poles

  • Superior
  • Inferior

2. Two Borders

  • Medial
  • Lateral

3. Two Surfaces

  • Anterior
  • Posterior

4. Hilum / Hilus

Depression on the medial border.

Poles

Superior / Upper Pole

  • Broad.
  • In close contact with the corresponding suprarenal gland.

Inferior / Lower Pole

  • Pointed.

Surfaces

Anterior Surface

Irregular.

Posterior Surface

Flat.

Borders

Lateral Border

Convex.

Medial Border

Concave.

Its middle part shows a depression called the hilus/hilum.

Hilum

Structures seen in the hilum from anterior → posterior:

  1. Renal vein
  2. Renal artery
  3. Renal pelvis → expanded upper end of ureter.
6

Anatomical Position and Side Determination

Anatomical Position

Hold the kidney in such a way that:

  1. Broad upper pole faces upward and slightly medially.
  2. Convex, irregular surface faces anteriorly.
  3. Flat posterior surface faces posteriorly.
  4. Concave border with hilum faces medially and is directed towards the opposite side of the kidney.
Example

Hilum of right kidney is directed to the left.

Side Determination

Observe the structures at the hilum.

1. Renal Vein

  • Thin-walled.
  • May contain blood clots.

2. Renal Artery

  • Thick-walled.
  • Rounded.

3. Renal Pelvis

  • Dilated above.
  • Narrow downward.
  • Continues as ureter.

4. Additional Branch

Sometimes a branch of the renal artery passes behind the renal pelvis to enter the hilum.

Mnemonic: VAP

  • V → Vein
  • A → Artery
  • P → Pelvis
Note
  • It is often difficult to recognize the anterior and posterior aspects of the kidney by looking at its surfaces.
  • The proper way is to examine the structures present in the hilum.
  • Since the pelvis continues inferiorly with the ureter, superior and inferior poles can also be distinguished by examining the hilum.
  • Commonly:
    • One branch of renal artery enters the hilus behind the renal pelvis.
    • A tributary of the renal vein may be found in the same plane.
7

Axes of Kidney and Movements During Respiration

Long Axis

Directed downward and laterally.

Therefore, the upper pole of kidney is nearer to the midline.

Transverse Axis

Directed laterally and backward.

This is because the kidney rests on sloping muscles of the posterior abdominal wall adjacent to the vertebral bodies.

Movements During Respiration

  • Kidneys move vertically about 2.5 cm with respiration.
  • This occurs because the upper part of the posterior surface is related to the diaphragm.
8

Relations of the Kidneys

Peritoneal Relations

Kidney is a retroperitoneal organ.

It is covered anteriorly by parietal peritoneum only at the following areas:

Right Kidney

  • Hepatic area
  • Jejunal area

Left Kidney

  • Gastric area
  • Splenic area
  • Jejunal area
Note

For right kidney:

  • Suprarenal gland
  • Duodenum
  • Come in direct contact.

For left kidney:

  • Left suprarenal gland
  • Colon
  • Pancreas
  • Come in indirect contact.

Anterior Relations

Right Kidney

  1. Right suprarenal gland
  2. Right lobe of liver
  3. Second part of duodenum
  4. Right colic (hepatic) flexure
  5. Jejunum

Left Kidney

  1. Left suprarenal gland
  2. Spleen
  3. Stomach
  4. Pancreas
  5. Left colic (splenic) flexure
  6. Jejunum

Posterior Relations of Kidneys

  1. 11th rib
    • Only to the left kidney.
  2. 12th rib
  3. Muscles
    • Diaphragm
    • Quadratus lumborum
    • Psoas major
    • Transverse abdominis
  4. Nerves emerging from lateral border of psoas
    • Subcostal
    • Iliohypogastric (L1)
    • Ilioinguinal (L1)
  5. Subcostal vessels
9

Capsules or Coverings of Kidney

From within outward, kidney is surrounded by four coverings:

1.
Fibrous capsule
2.
Perirenal (perinephric) fat
3.
Renal fascia
4. Pararenal fat

1. Fibrous Capsule

  • Thin membrane.
  • Closely invests the kidney.
  • Lines the renal sinus.
  • Normally, it can be easily stripped off from the kidney.

2. Perirenal / Perinephric Fat

  • Layer of adipose tissue lying outside the fibrous capsule.
  • Thickest at the borders of the kidney.
  • Fills the extra space in the renal sinus.

3. Renal Fascia

  • Dense, elastic connective tissue sheath.
  • Covers:
  • Kidney
  • Suprarenal gland
  • Perirenal fat

Anterior Layer

Fascia of Gerota

Posterior Layer

Fascia of Zuckerkandl

4. Pararenal / Paranephric Body (Fat)

  • Consists of a variable amount of fat lying outside the renal fascia.
  • More abundant:
    • Posteriorly
    • Towards the lower pole of kidney
  • Fills the paravertebral gutter.
  • Forms a cushion for the kidney.

Attachments of Renal Fascia

Laterally

  • Both layers fuse.
  • Continue behind the colon with parietal peritoneum.

Medially

  • Anterior layer covers the kidney and renal vessels.
  • Continues with the similar layer of opposite renal fascia after crossing the aorta and inferior vena cava.
  • Posterior layer is attached to the bodies of lumbar vertebrae.

Posteriorly

  • Posterior layer covers the posterior surface of kidney.
  • Fuses with fascia covering psoas major.

Superiorly

  • The two layers of fascia do not fuse with each other.
  • Anterior layer:
    • Fuses with inferior layer of coronary ligament on the right.
    • Fuses with gastrosplenic ligament on the left.
  • Superior part of posterior layer fuses with fascia covering:
    • Psoas major
    • Quadratus lumborum
    • Inferior fascia

Inferiorly

Recent concept:

Both layers fuse to form a single multilaminar fascia.

Loosely attached to parietal peritoneum.

Superior Continuity

  • Superiorly, the peritoneal space is open and continuous with:
    • Connective tissue at bare area of liver on the right.
    • Subdiaphragmatic connective tissue on the left.
Note
  • There are different views about the existence and attachments of renal fascia.
  • The source gives a simplified description to avoid overload.
  • According to the previous view:
    • The two fasciae fused laterally to form lateral conal fascia.
    • This continued anterolaterally behind the colon to blend with parietal peritoneum.
10

Macroscopic Structure of Kidney

A longitudinal section of kidney on naked-eye examination shows three zones:

1.
Renal cortex
2.
Renal medulla
3.
Renal sinus

1. Renal Cortex

Reddish-brown outer zone of kidney.

a. Cortical Arches / Cortical Lobules

Form a cap over the bases of renal pyramids.

b. Renal Columns

Extensions of renal cortex between renal pyramids.

2. Renal Medulla

  • Pale inner zone.
  • Consists of 5–10 conical masses called renal pyramids.
  • Each renal pyramid has:
    • Peripheral base
    • Apex
  • Apices converge to the renal sinus.
  • Papillae are the projecting apices of renal pyramids into the minor calyces.

3. Renal Sinus

  • Cavity of kidney.
  • Continuous with the hilum of kidney.
  • Contains:
    1. Renal pelvis
    2. Minor calyces
    3. Major calyces
    4. Renal vessels
    5. Lymphatics
    6. Nerves
    7. Fat
11

Renal Pelvis and Calyces

Renal Pelvis

  • Funnel-shaped dilatation.
  • Passes downward and medially through the hilum of kidney.
  • Continues as the ureter at the lower pole of kidney.
  • Capacity of renal pelvis → 5–7 ml

Major Calyces

  • Renal pelvis divides into 2–3 major calyces.
  • Kalyx = cup of a flower.

Minor Calyces

  • 7–13 small cavities.
  • They unite to form major calyces.
  • The dilated outer part of minor calyces receives the renal papilla.

Medullary Rays of Ferrin

  • Striations of the renal cortex.
  • Extensions of medulla into the cortex.
  • Contain:
    • Straight tubules
    • Collecting ducts

Cortical Labyrinth

Region of cortex between adjacent medullary rays.

Area Cribrosa

  • Perforated area at the tip of each renal papilla.
  • Perforations are due to collecting duct openings.

Kidney Lobe

  • Each pyramid with the surrounding cortical tissue forms a lobe of kidney.
  • Each kidney contains 8–18 lobes.
  • Lobulation is a prominent feature of foetal kidneys.
  • In adult kidneys, lobes are indistinct.

Kidney Lobule

  • Similar to the secretory unit of exocrine glands.
  • Collecting ducts of medullary ray + surrounding cortical tissue constitute the kidney lobule.
12

Juxtaglomerular Apparatus

The juxtaglomerular apparatus consists of:

1. Macula densa

2. Juxtaglomerular cells

3. Lacis cells / extraglomerular mesangial cells

1. Macula Densa

  • Cells of the distal convoluted tubule.
  • These cells are crowded and overlapping.
  • Hence, they are called macula densa.

2. Juxtaglomerular Cells

  • Modified smooth muscle cells of the afferent arteriole.
  • Processes form a lace-like network.
  • Secrete renin.

3. Lacis Cells

  • Also called extraglomerular mesangial cells.
  • Modified mesangial cells near the juxtaglomerular cells.
  • Show receptors for angiotensin II.
  • Probably regulate glomerular filtration rate.
13

Blood Supply, Lymphatic Drainage and Innervation

Blood Supply of Kidney

  • Each kidney is supplied by a renal artery arising from the abdominal aorta.
  • Usually, there is a single renal artery for each kidney.
  • In 30% individuals, an accessory renal artery is present.

Renal Vein

  • Each kidney is drained by a renal vein into the inferior vena cava.
  • Left renal vein:
    • Is longer.
    • Crosses anterior to the aorta.
    • Receives blood from the left gonadal vein.

Lymphatic Drainage

Lymphatics of the kidney drain into the lateral aortic nodes.

These nodes are located at the level of origin of the renal arteries.

Nerve Supply

  • Kidney is supplied by the renal plexus.
  • Renal plexus is an offshoot of the coeliac plexus.
  • It contains sympathetic fibres from T10–L1.
  • These fibres are chiefly vasomotor.
  • Afferent nerves of the kidney belong to T10–T12 spinal segments.
14

Microvasculature of Kidney

  1. Each kidney is supplied by the renal artery.
    • Lobar arteries
    • Interlobar arteries
  2. Interlobar arteries divide to form arcuate arteries along the base of pyramids.
  3. Arcuate arteries form interlobular arteries.
    • These traverse the cortex towards the capsule.
    • Interlobular arteries give afferent arterioles.
  4. Afferent arterioles give rise to a network of glomerular capillaries.
    • These unite to form efferent arterioles.
  5. Efferent arterioles form a second set of capillaries called the peritubular capillary plexus.
  6. Efferent arterioles form the juxtamedullary glomeruli and vasa recta and help in the countercurrent exchange system.
  7. Peritubular capillaries in the cortex drain into:
    • Interlobular veins
    • Arcuate veins
    • Interlobar veins
    • Finally renal veins
  8. Vasa recta are associated with the juxtamedullary glomeruli.

Blood Supply — Arterial Sequence

Renal artery
↓
5 segmental arteries
↓
Lobar artery
↓
Interlobar artery
↓
Arcuate artery
↓
Interlobular artery
↓
Afferent arteriole
↓
Glomerular capillaries
↓
Efferent arteriole

The efferent arteriole gives rise to:

  • Peritubular capillaries
  • Vasa recta

Venous Drainage Sequence

Peritubular capillaries
↓
Interlobular veins
↓
Arcuate veins
↓
Interlobar veins
↓
Segmental veins
↓
Renal veins
↓
Inferior vena cava

Capsule

  • Capsule drains into stellate veins.
  • Stellate veins ultimately drain into interlobar veins.

Renal Lobe

Renal lobe is a portion of kidney consisting of:

  • A renal pyramid
  • Renal cortex above it.

In humans, there are 8–18 renal lobes.

15

Clinical Anatomy

Renal Pain

  • Pain sensation from kidney is carried by sympathetic fibres to T10–L1 spinal segments.
  • It is referred to:
    • Loin
    • Anterior abdominal wall
  • It radiates down into the groin.
  • Pain ranges from:
    • Dull aching
    • Severe spasmodic pain
  • It occurs due to:
    • Stretching of renal capsule
    • Spasm of smooth muscles of the wall of renal pelvis

Palpation of Kidney

  • Kidney is palpated bimanually.
  • One hand is placed anteriorly.
  • One hand is placed behind the flank.
  • Patient is in the supine position.
  • Normal kidney is not palpable except in:
    • Very thin person
    • Position changes.

Renal Angle

  • The angle between:
    • Lower border of the 12th rib
    • Outer border of erector spinae
  • This is called the renal angle.
  • It overlies the lower part of the kidney.
  • Kidney tenderness is elicited by applying pressure over this angle with the thumb.

Kidney Movement on Deep Inspiration

  • On deep inspiration, the kidney moves downward.
  • Its lower pole becomes palpable in:
    1. Thin persons
    2. Children
    3. Enlarged kidney.