Arterial Blood Gases (ABGs)| Interpretation

Arterial Blood Gases (ABGs)| Interpretation

Dr Matt & Dr Mike

4 года назад

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@sepalikarunarathna6392
@sepalikarunarathna6392 - 23.10.2023 18:42

Thank you dr.great explanation 👍

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@user-fp5fd9pf7p
@user-fp5fd9pf7p - 15.09.2023 00:46

Thanks alot

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@dr.kelechimusic
@dr.kelechimusic - 22.05.2023 00:12

Thank you for your clear explanation

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@givenkapa683
@givenkapa683 - 04.05.2023 11:04

Wow, thank you very much😅😅😅

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@sochein
@sochein - 11.03.2023 17:23

Appreciated

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@amro_alassa
@amro_alassa - 23.02.2023 20:48

why the last example is a metabolic acidosis with full compensated by lungs not a respiratory alkalosis with full compensated by kidneys ????

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@bharathrajck3868
@bharathrajck3868 - 04.01.2023 18:00

Thank you sir🙏

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@anuradiperera9427
@anuradiperera9427 - 28.11.2022 16:00

HI, could you interpret this ABG for me please?Pa02 7.5 kPa
pH 7.19
PaC02 7.55 kPa
HC03 18.0 mmol-1
B.E -6.0 mmol-1
Sa02 .86
Hb 8g/dl
Fi02 .70(70%)

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@ytautube
@ytautube - 20.11.2022 06:39

Thanks. this explained nicely.

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@smoothoperator6942
@smoothoperator6942 - 16.10.2022 07:04

Thank you, this is an exceptionally well done video that has helped me to understand ABG.

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@natashairiawan9583
@natashairiawan9583 - 11.10.2022 19:29

AMAZING

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@belalalgamal7731
@belalalgamal7731 - 23.09.2022 20:42

Excellent explanation please can you explain mixed disorders

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@calmattimes848
@calmattimes848 - 20.08.2022 22:14

Very clear! I like that there are some examples because most videos talk about what is acidosis and alkalosis but doesn't show how to actually apply it to ABGs

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@amosazure194
@amosazure194 - 14.08.2022 03:02

Great presentation. So clear

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@medico9560
@medico9560 - 07.08.2022 11:22

Very helpful sir🙏🙏

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@sonkesonke5423
@sonkesonke5423 - 01.08.2022 04:13

Thanks doc we'll presented

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@positivity7707
@positivity7707 - 08.07.2022 23:39

Thank you for this video... From India😊😊😊

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@FrawleyKat
@FrawleyKat - 01.06.2022 04:28

Thanks so much! Loved this breakdown, very easy to grasp

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@flojo44254
@flojo44254 - 27.05.2022 16:35

Thank you Doc

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@puneetmuker8591
@puneetmuker8591 - 02.05.2022 07:25

Great presentation..cleared many doubts of mine in such a confusing topic

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@josiehiggins9513
@josiehiggins9513 - 13.04.2022 11:48

Thanks so much! Very helpful!

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@meenabarot2037
@meenabarot2037 - 10.04.2022 23:17

Awsome!!!!! very smooth and clear explanation....Thank you again!

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@toomaalmutawa870
@toomaalmutawa870 - 25.03.2022 19:12

best explanation Dr Matt thank you

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@alaa.abed.razeq.abouda
@alaa.abed.razeq.abouda - 09.03.2022 21:55

Very very good 👍

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@HungryLaLa
@HungryLaLa - 25.02.2022 05:28

I’m a but confused about which values he is looking at when he talks about ROME. Like which values do we look at to see if they’re opposite or equal?

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@andrewnguyen2914
@andrewnguyen2914 - 17.01.2022 02:26

Hello Dr.Matt , for example #4 why the answer is metabolic acidosis instead of respiratory alkalosis ? , i have tried to use the ROME method but i did not quite get the result.

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@dr10percent57
@dr10percent57 - 27.12.2021 00:40

Very clear

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@cosimop1539
@cosimop1539 - 04.12.2021 19:06

Why do we consider HCO3- ions instead of HPO4-, analysing buffering system, if its pKa would be more similar to blood's PH?

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@VandTheVan
@VandTheVan - 29.11.2021 18:39

Thanks!

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@myronn09
@myronn09 - 09.11.2021 19:39

How do’s dissolved CO2 play a part in this?

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@rayblade6383
@rayblade6383 - 29.10.2021 08:58

Excellent explanation, infact, the best i have watched. Thanks so much Doc!

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@jacintawaigonjo2081
@jacintawaigonjo2081 - 27.10.2021 23:08

This is very informative 👏 👌

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@helenbaffo7189
@helenbaffo7189 - 20.10.2021 20:52

wow thank you so much xx

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@benjabenja2576
@benjabenja2576 - 17.10.2021 08:43

Thank you for this. It would be good if you can take it further by explaining mixed disorders as well.

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@JayJay-xm2uk
@JayJay-xm2uk - 14.10.2021 03:15

Thank you so much, this was really helpful as I was still struggling with ABG’s

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@suggarachel
@suggarachel - 04.09.2021 15:49

You made it so clear😊
In example 3 you have PaO2 at 105 i thought it only went up to 100

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@wernerrojo7321
@wernerrojo7321 - 24.08.2021 15:16

excellent video thank you.

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@alessia3568
@alessia3568 - 03.08.2021 20:29

In example 1, why wouldn't HCO3- just be high due to the high CO2? Wouldn't the equilibrium naturally increase both H+ and HCO3-? 
HELP!!

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@stoic_ape9518
@stoic_ape9518 - 22.07.2021 19:43

Holy cow its the other half of the channel

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@nermana1377
@nermana1377 - 10.07.2021 10:44

Thank you a lot! 🤗 You helped me with my pharmacy exam.

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@SuperMontanatana
@SuperMontanatana - 23.06.2021 18:17

This is very useful. Thank you very much!!

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@fatimarezai5644
@fatimarezai5644 - 17.06.2021 23:04

Thank you much sir
Great explaination
You made it so crystal clear as it was so complicated concept for me ever

keep it up great!!!!!!! Big fan of you!!!!

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@juliusl5211
@juliusl5211 - 14.06.2021 06:14

Thank you Dr. Matt!

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@doctorhouse7070
@doctorhouse7070 - 11.06.2021 20:33

Thank you.

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@masilafdo3684
@masilafdo3684 - 26.05.2021 01:50

Thank you

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@mr.truffles9294
@mr.truffles9294 - 13.04.2021 11:30

Thank you so much.
Subscribed 👍

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@faizanahmed5368
@faizanahmed5368 - 07.04.2021 02:31

Amazing, thanks a lot!

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@amania7359
@amania7359 - 30.03.2021 21:15

Hello, in example #2 why you said metabolic problem and HCO3 level is within the normal range (24)

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