# Model Mathematics

### Component: B0

$ddtimeB0=pr⁢mu⁢CT_star-rho⁢B0+delta_B⁢B0$

### Component: B1

$ddtimeB1=rho⁢1+alpha_B⁢B0-rho⁢B1+delta_B⁢B1$

### Component: B2

$ddtimeB2=rho⁢1+alpha_B⁢B1-rho⁢B2+delta_B⁢B2$

### Component: B3

$ddtimeB3=rho⁢1+alpha_B⁢B2-rho⁢B3+delta_B⁢B3$

### Component: B4

$ddtimeB4=rho⁢1+alpha_B⁢B3-rho⁢B4+delta_B⁢B4$

### Component: B5

$ddtimeB5=rho⁢1+alpha_B⁢B4-rho⁢B5+delta_B⁢B5$

### Component: B6

$ddtimeB6=rho⁢1+alpha_B⁢B5-rho⁢B6+delta_B⁢B6$

### Component: B7

$ddtimeB7=rho⁢1+alpha_B⁢B6-rho⁢B7+delta_B⁢B7$

### Component: B8

$ddtimeB8=rho⁢1+alpha_B⁢B7-rho⁢B8+delta_B⁢B8$

### Component: B9

$ddtimeB9=rho⁢1+alpha_B⁢B8-rho⁢B9+delta_B⁢B9$

### Component: B10

$ddtimeB10=rho⁢1+alpha_B⁢B9-rho⁢B10+delta_B⁢B10$

### Component: centroblasts_sum

$B_sum=B1+B1+B3+B4+B5+B6+B6+B7+B8+B9+B10$

### Component: C

$ddtimeC=d⁢rho⁢B10⁢1-mu⁢C$

### Component: C_star

$ddtimeC_star=mu⁢CA-mu⁢C_star$

### Component: centrocytes_sum

$C_starsum=C+C_star$

### Component: M

$ddtimeM=1-pr⁢mu⁢CT_star$

### Component: A

$ddtimeA=-z⁢A-u⁢CA⁢1log_A=log10⁡A1$

### Component: T

$ddtimeT=sigma⁢1+p⁢alpha_T⁢CT_star-delta_T⁢T$

### Component: CA

$CA=C⁢ASA⁢1+A$

### Component: CT_star

$CT_star=C_star⁢TST⁢1+C_star$

### Component: alpha_B

$alpha_B=KBKB+B_sum1$

### Component: alpha_T

$alpha_T=KTKT+T1$

### Component: total

$total=B_sum+C_starsumlog_total=log10⁡total1+1 e -12$

### Component: kinetic_parameters

Source
Derived from workspace Kesmir, Deboer, 1999 at changeset 73280bb07c7f.
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