11

HEMODIALYSIS & EXTRACORPOREAL THERAPY

Chapter 11

Volume, Dry Weight, & Intradialytic

Hypotension

Orientation & KnowledgeVisualise & MapClinical ReasoningSafety & EvidencePatient DecisionsApply & Test
Chapter Preamble

This preamble records the dynamic decisions the master makes for this chapter.

Signals declared

  • Sig-T therapeutic (primary) — the chapter manages volume, dry weight, and intradialytic hypotension.
  • Sig-M mechanistic — plasma refilling, the volume–cardiovascular link, and IDH physiology drive the decisions.
  • Sig-D diagnostic — it assesses dry weight and volume status.
  • Sig-V evidence-dense — ultrafiltration-rate harm and IDH prevention rest on outcome data.

Levels populated and omitted

  • Twenty levels are built — a mechanism-and-evidence chapter with absolute-risk, documentation, and reflective prompts.
  • Omitted: L15 and L16 — volume and blood-pressure management is evidence-driven effective-care, not a preference-sensitive choice.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

The contract between this chapter and the reader.

  1. 1. Explain volume as the core cardiovascular problem of haemodialysis.
  2. 2. Define dry weight and assess it with clinical and objective tools.
  3. 3. Relate interdialytic weight gain and sodium to the ultrafiltration requirement.
  4. 4. Keep the ultrafiltration rate within a safe range.
  5. 5. Explain the pathophysiology of intradialytic hypotension.
  6. 6. Treat an acute episode of intradialytic hypotension.
  7. 7. Prevent intradialytic hypotension.
  8. 8. Manage hypertension from euvolemia first.
  9. 9. Link chronic overload to left-ventricular hypertrophy and cardiovascular mortality.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Volume is the core cardiovascular problem of HD: chronic overload causes hypertension, left-ventricular hypertrophy, and death, while rapid removal causes intradialytic hypotension and organ stunning.
  • The task is to reach euvolemia without removing fluid faster than the body can tolerate.
  • Dry weight is the lowest weight tolerated without hypotension or symptoms, at which the patient is normotensive without antihypertensives.
  • Assess volume clinically — blood pressure, oedema, JVP, lung crackles — and, where available, with bioimpedance, lung ultrasound, and relative-blood-volume monitoring.
  • Interdialytic weight gain, driven by salt-induced thirst, sets the ultrafiltration requirement.
  • Dietary salt restriction is the cornerstone; keep dialysate sodium near plasma and avoid sodium loading.
  • High ultrafiltration rates (beyond about 10–13 mL/kg/h) are linked to hypotension, myocardial stunning, and mortality.
  • Lower the ultrafiltration rate with longer or more frequent sessions and less interdialytic gain — not by pulling harder.
  • Intradialytic hypotension occurs when ultrafiltration outpaces plasma refilling, worsened by impaired vasoconstriction, cardiac dysfunction, eating, antihypertensives, and warm dialysate.
  • Treat an acute episode by stopping ultrafiltration, laying the patient flat, and giving fluid — then reassess.
  • Prevent it with cooler dialysate, a lower ultrafiltration rate, avoiding food during dialysis, holding pre-dialysis antihypertensives, and adequate dialysate calcium.
  • Hypertension is mostly volume-dependent: achieve dry weight first, then add antihypertensives, allowing for a lag before blood pressure falls.
  • Chronic overload drives left-ventricular hypertrophy, which partly regresses with euvolemia.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree volume and IDH are fully covered here.

Why it matters at the bedside

Volume is where haemodialysis does its most good and its most harm. Leave fluid on and the heart pays over months; pull it off too fast and the patient pays in the chair, with hypotension and stunned organs. The whole craft is reaching dry weight at a speed the body can survive.

Volume as the core cardiovascular problem

  • Chronic fluid overload raises blood pressure and, with it, drives left-ventricular hypertrophy and the high cardiovascular mortality of dialysis. The opposite error — removing fluid faster than the circulation tolerates — causes intradialytic hypotension and repeated ischaemic injury. Both ends of the volume problem kill, which is why euvolemia, reached gently, is the central goal.

Dry weight and assessing it

  • Dry weight is the lowest post-dialysis weight a patient tolerates without hypotension or cramps, at which they are normotensive without antihypertensives and free of overload. It resists precise definition, so it is judged from the clinical picture — blood pressure, oedema, jugular venous pressure, lung crackles — and, where available, bioimpedance, lung ultrasound, and relative-blood-volume monitoring. It is found by probing: lowering the target gradually and backing off at the first hypotension or cramp.

Interdialytic gain and sodium

  • Between sessions the patient gains fluid in proportion to salt intake, because sodium drives thirst. That interdialytic weight gain sets how much must be removed and how fast — so the lever that matters most is dietary salt restriction, supported by keeping dialysate sodium near plasma and avoiding the sodium loading that worsens thirst and the next gain.

The ultrafiltration rate

  • How fast fluid is removed is itself a risk. Ultrafiltration rates beyond roughly 10–13 mL/kg/h are linked to intradialytic hypotension, myocardial stunning, and mortality. When the rate is too high, the answer is to remove the same fluid over more time — longer or more frequent sessions — and to cut interdialytic gain, not to pull harder.

Intradialytic hypotension — pathophysiology

  • Hypotension on dialysis happens when ultrafiltration removes plasma faster than the interstitium can refill it, draining the intravascular space. Several factors make it worse: impaired compensatory vasoconstriction and autonomic neuropathy, poor cardiac reserve, eating during the session (which pools blood in the gut), antihypertensives taken before dialysis, a warm dialysate, and a low dialysate calcium.

Treating acute IDH

  • When the pressure drops mid-session, stop or reduce ultrafiltration, lay the patient flat (head-down), and give fluid — a saline bolus, or hypertonic saline or mannitol if needed. Then reassess: the episode is a signal to re-examine the dry weight, the ultrafiltration rate, and the contributing factors, not just to rescue and continue.

Preventing IDH

  • Prevention is more valuable than rescue, because each episode injures organs. Cool the dialysate (around 35.5 °C), lower the ultrafiltration rate by lengthening or adding sessions, avoid food during dialysis, hold pre-dialysis antihypertensives, and ensure an adequate dialysate calcium. Refractory cases may need midodrine or isolated ultrafiltration.

Hypertension: euvolemia first

  • Most hypertension in HD is volume-dependent, so the first move is to reach dry weight rather than to add drugs. Blood pressure often falls only days to weeks after the dry weight is lowered — the lag phenomenon — so the target is approached patiently and not over-corrected; interdialytic and ambulatory readings predict outcome better than the peridialytic numbers.

Volume and the heart

  • The link runs both ways: chronic overload drives left-ventricular hypertrophy, much of which regresses once the patient is truly euvolemic, while repeated intradialytic hypotension stuns the myocardium and other organs, accumulating ischaemic injury over time. Treating volume well is, in the end, cardiac protection.

Evidence base

  • The harm of high ultrafiltration rates and of chronic overload rests on consistent observational data; the benefit of cooler dialysate for intradialytic hypotension rests on randomised and observational trials; and the blood-pressure benefit of reaching dry weight rests on dry-weight-reduction studies.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — Assessing volume

ToolWhat it showsNote
Clinical (BP, oedema, JVP, crackles)Gross fluid statusMisses hidden overload
BioimpedanceObjective fluid statusDetects hidden overload
Lung ultrasoundPulmonary congestionB-lines indicate overload
Relative blood-volume monitoringIntravascular volume trendGuides UF; flags IDH risk
BNP / IVC ultrasoundAdjunct volume signalsSupportive

Table B — Causes of intradialytic hypotension

CauseMechanism
UF rate > plasma refillingIntravascular hypovolaemia (the core cause)
Impaired vasoconstriction / autonomic neuropathyFailure to compensate
Cardiac dysfunctionPoor output reserve
Eating during dialysisSplanchnic blood pooling (steal)
Pre-dialysis antihypertensivesBlunted compensation
Warm dialysate; low dialysate calciumVasodilation; reduced contractility

Table C — Treating acute IDH

StepAction
Stop / reduce ultrafiltrationThe first move
PositionLay the patient flat (Trendelenburg)
FluidSaline bolus (hypertonic saline / mannitol if needed)
ReassessDry weight, ultrafiltration rate, and the cause
ResumeAt a lower ultrafiltration rate once stable

Table D — Preventing IDH

MeasureNote
Cooler dialysate (~35.5 °C)Reduces episodes
Lower UF rate (longer/more sessions)Stay within the safe range
Avoid eating during dialysisPrevents splanchnic steal
Hold pre-dialysis antihypertensivesPreserves compensation
Adequate dialysate calciumSupports contractility
Midodrine / isolated ultrafiltrationRefractory cases

Table E — Dry weight and sodium principles

PrincipleNote
Dry weightLowest weight without hypotension; normotensive off drugs
ProbingLower gradually; back off at hypotension/cramps
Lag phenomenonBP falls over days–weeks after dry weight is lowered
Salt restrictionCornerstone — cuts thirst and interdialytic gain
Dialysate sodiumNear plasma; avoid sodium loading

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 11.1 — Ultrafiltration and plasma refilling
Figure 11.1 — Ultrafiltration and plasma refilling
Figure 11.2 — The volume–heart link
Figure 11.2 — The volume–heart link
Flowchart 11.A — Acute intradialytic hypotension
Flowchart 11.A — Acute intradialytic hypotension
Flowchart 11.B — The high ultrafiltration rate / overload
Flowchart 11.B — The high ultrafiltration rate / overload
06
Phase B · Level 6

Concept Maps

Causal chains, each ending in a named action.

Chain 1 — Outpacing refill

High ultrafiltration rate → plasma removed faster than the interstitium refills → intravascular hypovolaemia → intradialytic hypotension → ACTION: lower the UF rate with more time, not more force.

Chain 2 — The salt cycle

High salt intake → thirst → large interdialytic weight gain → high ultrafiltration requirement → hypotension and overload → ACTION: restrict salt and keep dialysate sodium near plasma.

Chain 3 — Silent injury

Repeated intradialytic hypotension → myocardial, cerebral, and gut stunning → cumulative ischaemic injury → ACTION: prevent episodes with cool dialysate and a lower UF rate.

Chain 4 — Overload and the heart

Chronic overload → hypertension and left-ventricular hypertrophy → cardiovascular mortality → ACTION: reach dry weight (LVH partly regresses).

Chain 5 — Losing compensation

Warm dialysate, eating, and pre-dialysis antihypertensives → impaired vasoconstriction and splanchnic pooling → intradialytic hypotension → ACTION: cool the dialysate, avoid food, and hold pre-dialysis antihypertensives.

07
Phase B · Level 7

Clinical Decision Pathways

Numbered rules. These numbers are the cross-reference handle for the cases and flowcharts.

R1
IF assessing volume, THEN combine clinical signs with objective tools (bioimpedance, lung ultrasound) where available.
R2
IF interdialytic gain is high, THEN restrict dietary salt and keep dialysate sodium near plasma.
R3
IF the ultrafiltration rate exceeds the safe range, THEN lengthen or add sessions and cut interdialytic gain — do not pull harder.
R4
IF acute intradialytic hypotension occurs, THEN stop ultrafiltration, lay the patient flat, and give fluid; then reassess.
R5
IF intradialytic hypotension is recurrent, THEN cool the dialysate, lower the UF rate, avoid eating during dialysis, and hold pre-dialysis antihypertensives.
R6
IF it persists despite these measures, THEN ensure adequate dialysate calcium and consider midodrine or isolated ultrafiltration.
R7
IF the patient is hypertensive, THEN achieve dry weight first, then add antihypertensives, allowing for the lag.
R8
IF probing dry weight, THEN lower it gradually and back off at the first hypotension or cramp.
R9
IF chronic overload is present, THEN treat it as cardiac risk — it drives left-ventricular hypertrophy and mortality.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

Five cases. Each stops you at a decision before it answers it.

CASE 1COMPLEX

Hypertensive, but ‘euvolemic’Hidden overload and probing dry weight

Presentation

A patient is persistently hypertensive on three agents with left-ventricular hypertrophy, yet looks euvolemic clinically. Bioimpedance shows fluid overload.

Pause and reflect

Before reading on: a fourth drug, or something about the volume?

Analysis

The hypertension, hypertrophy, and bioimpedance together reveal hidden overload that the examination missed. The fix is volume, not another drug: probe the dry weight downward gradually, expecting blood pressure to fall over days to weeks (the lag), and back off at any hypotension.

Management plan

  1. Trust the objective tools over the exam (R1).
  2. Probe dry weight downward gradually; restrict salt (R2, R8).
  3. Allow for the lag before judging the blood pressure (R7).

Teaching points

  • Hypertension with LVH and a ‘normal’ exam is hidden overload — lower dry weight, don't add drugs.

Cross-reference: exercises R1, R2, R7, R8.

CASE 2COMPLEX

Crashing every sessionRecurrent intradialytic hypotension

Presentation

A patient drops their blood pressure most sessions. They have large interdialytic gains needing a high ultrafiltration rate, eat lunch during dialysis, take antihypertensives that morning, and run a warm dialysate.

Pause and reflect

Before reading on: which levers, in combination, fix this?

Analysis

Several drivers stack: a high ultrafiltration rate outpacing refill, eating-induced splanchnic pooling, pre-dialysis antihypertensives, and a warm bath. The fix is to address them together — lower the UF rate (more time, less salt and gain), cool the dialysate, stop food during sessions, and hold the morning antihypertensives.

Management plan

  1. Lower the UF rate: more time and less interdialytic gain (R3, R5).
  2. Cool the dialysate; avoid food; hold pre-dialysis antihypertensives (R5).
  3. If refractory, adequate dialysate calcium ± midodrine (R6).

Teaching points

  • Recurrent IDH usually has several causes — fix them together, starting with the UF rate.

Cross-reference: exercises R3, R5, R6.

CASE 3STANDARD

The pressure drops mid-runAn acute IDH episode

Presentation

Halfway through a session a patient becomes lightheaded and nauseated, with a sharp fall in blood pressure.

Pause and reflect

Before reading on: what are the first three things you do, in order?

Analysis

Acute intradialytic hypotension is treated by removing the cause and restoring the circulation: stop ultrafiltration, lay the patient flat, and give a fluid bolus, with hypertonic saline or mannitol if the response is poor. The episode then prompts a review of dry weight and the ultrafiltration rate rather than simply finishing the session as planned.

Management plan

  1. Stop ultrafiltration; lay flat; saline bolus (R4).
  2. Escalate fluid if needed; exclude cardiac/sepsis causes (R4).
  3. Resume at a lower UF rate; reassess dry weight (R4, R5).

Teaching points

  • Acute IDH: stop UF, lay flat, give fluid — then rethink the prescription.

Cross-reference: exercises R4, R5.

CASE 4STANDARD

Heavy between sessionsThe interdialytic gain problem

Presentation

A patient consistently gains large amounts of fluid between sessions, forcing a high ultrafiltration rate. A high-sodium dialysate has been used to limit cramps.

Pause and reflect

Before reading on: what is driving the gains, and what did the high-sodium bath do?

Analysis

Salt drives thirst and the large interdialytic gains, and the high-sodium dialysate makes it worse by loading more sodium. The real lever is dietary salt restriction with a near-plasma dialysate sodium, which cuts thirst, gains, and the ultrafiltration requirement together.

Management plan

  1. Return dialysate sodium to near plasma; restrict dietary salt (R2).
  2. Lower the UF rate as gains fall (R3).
  3. Reassess interdialytic gain and blood pressure.

Teaching points

  • Cut the salt to cut the gain — a high-sodium bath feeds the cycle.

Cross-reference: exercises R2, R3.

CASE 5COMPLEX

Dry weight down, pressure unchangedThe lag phenomenon

Presentation

After lowering a patient's dry weight, the blood pressure has not yet fallen a week later. The team is tempted to lower the weight much further, quickly.

Pause and reflect

Before reading on: is the unchanged pressure a reason to push the weight down faster?

Analysis

Blood pressure often falls only days to weeks after the dry weight is lowered — the lag phenomenon — so an unchanged reading at a week is expected, not a failure. Driving the weight down aggressively to force a faster response risks hypotension and stunning; the right approach is patience and gradual probing.

Management plan

  1. Recognise the lag; do not over-correct (R7, R8).
  2. Continue gradual probing; reassess over weeks (R8).
  3. Watch for hypotension as the marker to stop.

Teaching points

  • Blood pressure lags dry-weight reduction by days to weeks — be patient, not aggressive.

Cross-reference: exercises R7, R8.

09
Phase C · Level 9

Clinical Implications

Every mechanism from Level 3 earns a bedside consequence and an action.

MECHANISM

Ultrafiltration can outpace plasma refilling.

WHY IT MATTERS

The intravascular space collapses and the pressure drops.

ACTION

Lower the ultrafiltration rate with more time, not more force.

MECHANISM

Salt drives thirst and interdialytic weight gain.

WHY IT MATTERS

Large gains force a high, dangerous ultrafiltration rate.

ACTION

Restrict salt and keep dialysate sodium near plasma.

MECHANISM

Repeated intradialytic hypotension stuns the heart and other organs.

WHY IT MATTERS

Ischaemic injury accumulates session by session.

ACTION

Prevent episodes with cool dialysate and a lower UF rate.

MECHANISM

Chronic overload raises pressure and cardiac load.

WHY IT MATTERS

It drives left-ventricular hypertrophy and mortality.

ACTION

Reach dry weight; the hypertrophy partly regresses.

MECHANISM

Warm dialysate, eating, and pre-dialysis antihypertensives impair compensation.

WHY IT MATTERS

Vasoconstriction fails and blood pools, dropping the pressure.

ACTION

Cool the dialysate, avoid food, and hold pre-dialysis antihypertensives.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every threshold and rule in the chapter is here.

Volume is the core CV problem: overload and fast removal both harm.
Dry weight = lowest weight without hypotension; normotensive off drugs.
Assess volume clinically + bioimpedance/lung ultrasound.
Interdialytic gain (salt-driven) sets the UF requirement.
Salt restriction is the cornerstone; dialysate Na near plasma.
High UF rate (>~10–13 mL/kg/h) → IDH, stunning, mortality.
Lower UF rate with more time/frequency, not more force.
IDH = UF outpaces plasma refilling (+ poor compensation).
Acute IDH: stop UF, lay flat, give fluid, reassess.
Prevent IDH: cool dialysate, lower UF rate, no food, hold antihypertensives.
Refractory IDH: adequate dialysate calcium, midodrine, isolated UF.
Hypertension is volume-dependent — dry weight first.
Lag phenomenon: BP falls days–weeks after dry weight reduced.
Probe dry weight gradually; back off at hypotension/cramps.
Chronic overload → LVH (regresses with euvolemia) → mortality.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

A high ultrafiltration rate (beyond ~10–13 mL/kg/h) — hypotension and mortality risk.
Recurrent intradialytic hypotension or cramps — cumulative organ stunning.
Hypertension with LVH and a ‘normal’ exam — hidden overload.
Rising interdialytic gain on a high-sodium bath — the sodium cycle.

Panel B — NEVER DO

NEVER — treat overload by raising the ultrafiltration rate alone.
NEVER — use a high-sodium dialysate to suppress cramps.
NEVER — rely on antihypertensives over reaching dry weight.
NEVER — over-correct dry weight while ignoring the blood-pressure lag.
NEVER — dismiss recurrent intradialytic hypotension as harmless.
12
Phase D · Level 12

Common Pitfalls

Anti-patterns clinicians fall into. Each becomes a Level 22 distractor.

WRONG Raising the ultrafiltration rate to treat overload.
RIGHT Lengthen or add sessions and cut interdialytic gain.
WHY High ultrafiltration rates harm the heart and outcomes.
WRONG Using a high-sodium dialysate to prevent cramps.
RIGHT Keep dialysate sodium near plasma and restrict salt.
WHY High-sodium baths drive thirst and larger gains.
WRONG Adding antihypertensives before reaching dry weight.
RIGHT Achieve euvolemia first, then add drugs.
WHY Most HD hypertension is volume-dependent.
WRONG Driving dry weight down hard when BP hasn't fallen yet.
RIGHT Allow for the lag and probe gradually.
WHY Blood pressure falls over days to weeks, not at once.
WRONG Letting the patient eat during a hypotension-prone session.
RIGHT Avoid food during dialysis.
WHY Eating pools blood in the gut and drops the pressure.
WRONG Treating recurrent IDH as a nuisance to rescue each time.
RIGHT Prevent it — cool dialysate, lower UF rate.
WHY Each episode stuns the heart and other organs.
13
Phase D · Level 13

Evidence Grading

The grade reflects strength of evidence, not importance.

GRADE

A

HIGH CONFIDENCE

The effect is real and the estimate is stable.

RCTs at low risk of bias; multiple concordant prospective cohorts; meta-analyses.

GRADE

B

MODERATE CONFIDENCE

The effect is likely real but may shift with new data.

Observational studies, registries, mechanistic human studies.

GRADE

C

LOW CONFIDENCE

Rests on physiology, reasoning, or consensus rather than outcomes.

Pathophysiological reasoning; extrapolation; consensus without outcomes.

StatementGradeRationale for the grade
High ultrafiltration rates are associated with hypotension and mortality.BConsistent observational data.
Cooler dialysate reduces intradialytic hypotension.BRandomised and observational data.
Chronic volume overload drives LVH and cardiovascular mortality.BConsistent observational data.
Reaching dry weight lowers blood pressure.BDry-weight-reduction trials.
Dietary salt restriction reduces interdialytic gain and blood pressure.BObservational and physiological data.
Midodrine helps refractory intradialytic hypotension.CSmall studies.

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute-Risk Presentation

Outcomes as natural frequencies. Figures are representative; the direction of effect is given where precise numbers are uncertain.

OutcomeOption AOption BDifferenceEvidence
Events with high vs lower ultrafiltration ratehigh UF ratelower UF rateMore hypotension/events at high ratesSee L13 — Grade B
IDH episodes, warm vs cool dialysatewarmcoolFewer episodes with cool dialysateSee L13 — Grade B
Cardiovascular events, overload vs euvolemiaoverloadedeuvolemicFewer events when euvolemicSee L13 — Grade B
LVH regression with dry weightpersistent overloadeuvolemicPartial regressionSee L3 — Grade B

Reading the table

The pattern points one way: gentler, slower fluid removal toward true euvolemia improves outcomes, while pulling hard and leaving fluid on both cost. Where exact frequencies are uncertain, the direction of effect is given; the evidence column points to where the detail lives.

Apply & Test

Phase F Apply & Test
17
Phase F · Level 17

Documentation Templates

Copy-paste chart notes that map to the real decisions in this chapter.

Template 1 — Volume / dry-weight assessment

  • Clinical: BP ___; oedema ___; JVP ___; crackles ___.
  • Objective: bioimpedance ___; lung ultrasound ___; relative blood volume ___.
  • Interdialytic weight gain: ___; ultrafiltration rate: ___ mL/kg/h (within safe range? yes/no).
  • Dry-weight plan: current ___; probing down to ___ gradually; lag expected.
  • Salt restriction reinforced; dialysate sodium near plasma: yes/no.

Template 2 — Intradialytic hypotension plan

  • Pattern: episodes per week ___; timing in session ___.
  • Contributors: high UF rate / eating / pre-dialysis antihypertensives / warm dialysate / low Ca.
  • Acute plan: stop UF, lay flat, fluid bolus.
  • Preventive measures set: cool dialysate ___; lower UF rate ___; no food ___; hold antihypertensives ___.
  • Refractory steps: dialysate calcium ___; midodrine ___; isolated UF ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Volume = core CV problem; overload and fast removal both harm.
Dry weight = lowest tolerated; normotensive off drugs.
Assess: clinical + bioimpedance/lung ultrasound.
Interdialytic gain (salt) sets the UF requirement.
Salt restriction first; dialysate Na near plasma.
High UF rate harms → more time/frequency, not more force.
IDH = UF outpaces refilling.
Acute IDH: stop UF, lay flat, fluid.
Prevent: cool dialysate, lower UF rate, no food, hold antihypertensives.
Refractory: Ca, midodrine, isolated UF.
Hypertension volume-dependent → dry weight first.
Lag: BP falls days–weeks after dry weight ↓.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. Why is volume the core cardiovascular problem of HD?

Show answer

A. Chronic overload causes hypertension, LVH, and death, while rapid removal causes intradialytic hypotension and organ stunning.

DETAILED. Both too much fluid and too-fast removal injure the heart.

CLINICAL. Euvolemia, reached gently, is the central goal.

CARD 2

Q. What is dry weight and how is it assessed?

Show answer

A. The lowest weight tolerated without hypotension or symptoms, normotensive off antihypertensives; assessed clinically and with bioimpedance, lung ultrasound, and relative-blood-volume monitoring.

DETAILED. It is found by probing — lowering gradually and backing off at hypotension.

CLINICAL. No single tool defines it precisely.

CARD 3

Q. How do salt and interdialytic gain affect ultrafiltration?

Show answer

A. Salt drives thirst and interdialytic weight gain, which sets how much fluid must be removed and how fast.

DETAILED. Large gains force a high, dangerous ultrafiltration rate.

CLINICAL. Salt restriction is the cornerstone lever.

CARD 4

Q. Why does the ultrafiltration rate matter, and how do you lower it?

Show answer

A. High rates (beyond ~10–13 mL/kg/h) cause hypotension, stunning, and mortality; lower the rate with longer or more frequent sessions and less interdialytic gain.

DETAILED. Pulling harder is the wrong response.

CLINICAL. Remove the same fluid over more time.

CARD 5

Q. What is the pathophysiology of intradialytic hypotension?

Show answer

A. Ultrafiltration removes plasma faster than the interstitium refills, draining the intravascular space — worsened by poor vasoconstriction, cardiac dysfunction, eating, antihypertensives, and warm dialysate.

DETAILED. It is fundamentally a refilling/compensation failure.

CLINICAL. Each contributor is a preventable lever.

CARD 6

Q. How is an acute IDH episode treated?

Show answer

A. Stop ultrafiltration, lay the patient flat, and give fluid (saline, or hypertonic saline/mannitol if needed); then reassess.

DETAILED. The episode prompts a review of dry weight and UF rate.

CLINICAL. Rescue, then rethink the prescription.

CARD 7

Q. How is intradialytic hypotension prevented?

Show answer

A. Cooler dialysate, a lower ultrafiltration rate, avoiding food during dialysis, holding pre-dialysis antihypertensives, and adequate dialysate calcium.

DETAILED. Refractory cases may need midodrine or isolated ultrafiltration.

CLINICAL. Prevention beats repeated rescue because episodes injure organs.

CARD 8

Q. How is hypertension managed in HD?

Show answer

A. Achieve dry weight first — most HD hypertension is volume-dependent — then add antihypertensives, allowing for the lag.

DETAILED. Blood pressure falls days to weeks after dry weight is lowered.

CLINICAL. Interdialytic/ambulatory readings predict outcome best.

CARD 9

Q. What is the lag phenomenon?

Show answer

A. Blood pressure often falls only days to weeks after the dry weight is lowered.

DETAILED. An unchanged pressure soon after a dry-weight reduction is expected.

CLINICAL. Probe gradually and do not over-correct.

20
Phase F · Level 20

One-Minute Preceptor

Micro-teaching for rounds. Two scenarios, five steps each.

SCENE 1
Hypertensive but ‘dry’
GET A COMMITMENTAsk: “He's on three drugs with LVH but looks euvolemic — add a fourth?”
PROBE“What might the exam be missing?”
TEACHHidden overload — confirm with bioimpedance and probe the dry weight down, expecting a lag.
REINFORCE“Right — lower the volume before adding drugs.”
CORRECT ERRORSIf they reached for another agent, redirect to dry weight.
SCENE 2
Crashing on dialysis
GET A COMMITMENTAsk: “She drops her pressure most sessions — where do you start?”
PROBE“What's the single most important driver, and what stacks on it?”
TEACHA high UF rate outpacing refill, plus eating, antihypertensives, and a warm bath — lower the rate and fix the rest together.
REINFORCE“Exactly — IDH is usually multifactorial; the UF rate leads.”
CORRECT ERRORSIf they only gave saline each time, point to prevention and the UF rate.
21
Phase F · Level 21

Reflective Prompts

Metacognition anchored to this chapter's tensions. No answers provided.

  1. 1. Reaching true dry weight means tolerating some hypotension while you probe; how do you balance that against the harm each episode does?
  2. 2. Salt restriction is the most powerful lever and the one you least control between sessions; how do you make it real rather than a line in the notes?
  3. 3. A high-sodium bath buys a calm session and a heavier week; how often do you trade the visible problem for the invisible one?
  4. 4. The lag phenomenon asks for patience when the blood pressure won't move; what makes waiting harder than acting, and how do you hold the line?
  5. 5. Intradialytic hypotension is treated and forgotten by the next session, yet its injury accumulates; how do you keep a silent, cumulative harm visible?
22
Phase F · Level 22

Board-Style Q&A

Nine items, each anchored in this chapter. At least one per objective.

Q 01
A patient is hypertensive on three agents with LVH but looks euvolemic; bioimpedance shows overload. The best step is:

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  • AAdd a fourth antihypertensive
  • BProbe the dry weight downward gradually
  • CReassure — the exam is normal
  • DRaise the ultrafiltration rate sharply
Q 02
What fundamentally causes intradialytic hypotension?

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  • AToo low a blood-flow rate
  • BUltrafiltration outpacing plasma refilling
  • CHigh dialysate potassium
  • DA mature fistula
Q 03
An ultrafiltration rate well above the safe range is causing hypotension. The correct response is:

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  • AIncrease the ultrafiltration rate to finish sooner
  • BLengthen or add sessions and cut interdialytic gain
  • CRaise the dialysate sodium
  • DShorten the session
Q 04
A patient becomes acutely hypotensive mid-session. The first actions are:

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  • AIncrease ultrafiltration and continue
  • BStop ultrafiltration, lay the patient flat, and give fluid
  • CGive an antihypertensive
  • DDisconnect immediately and send home
Q 05
Which measure does NOT help prevent recurrent intradialytic hypotension?

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  • ACooling the dialysate
  • BUsing a warm dialysate and allowing food during dialysis
  • CLowering the ultrafiltration rate
  • DHolding pre-dialysis antihypertensives
Q 06
A patient has large interdialytic gains and a high-sodium dialysate is being used for cramps. The best change is:

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  • ARaise the dialysate sodium further
  • BRestrict dietary salt and return dialysate sodium to near plasma
  • CIncrease the ultrafiltration rate
  • DAdd an antihypertensive
Q 07
Hypertension persists in a haemodialysis patient. The first-line approach is:

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  • AMaximise antihypertensive drugs
  • BAchieve dry weight first, then add drugs as needed
  • CAccept it as untreatable
  • DRaise the dialysate sodium
Q 08
A week after lowering the dry weight, the blood pressure is unchanged. The correct interpretation is:

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  • AThe dry weight must be raised again
  • BThis is the expected lag; continue gradual probing
  • CAdd three antihypertensives now
  • DThe patient is non-adherent
Q 09
In Flowchart 11.B, the ultrafiltration rate is above the safe range in an overloaded patient. The pathway directs you to:

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  • AIncrease the ultrafiltration rate
  • BLengthen or add sessions and restrict salt to cut interdialytic gain
  • CAdd an antihypertensive first
  • DStop dialysis