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Single Ventricle / HLHS

Also covered as: cloaca · anorectal malformation · tethered cord · pulmonary hypoplasia · scoliosis · hypoplastic left heart syndrome · urogenital sinus · pulmonary hypertension
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How Does the Blood Go Round in Single Ventricles and Fontans? New Horizons in...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Andrew Redin
video24:58 · Jan 2019
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Advanced Imaging of the Fontan, What is Driving Fontan Failure: New Horizons...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Andrew Crean
video24:44 · Jan 2019
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Case Review Dynamic Assessment of the Fontan Part II: New Horizons in Medical...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Veldtman foc
video14:38 · Jan 2019
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Case Review Dynamic Assessment of the Fontan Part I: New Horizons in Medical...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Bryan Goldst
video22:46 · Jan 2019
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How do we manage thrombogenicity and thrombosis in the Fontan? New Horizons...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Joseph Palum
video16:51 · Jan 2019
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The Role of Trans-Catheter Arrhythmia Management - Patient Based Decision...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Richard Czos
video20:55 · Jan 2019
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Update on Surgical Practice and Current State on Fontan Conversion Surgery:...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session,Dr. James Tweddel
video25:00 · Jan 2019
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Transplantation and Ventricular Assist Devices: New Horizons in Medical and...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Angela Lorts
video23:13 · Jan 2019
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Trans-Catheter Interventions: New Horizons in Medical and Surgical Fontan...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Dr. Bryan Goldst
video17:26 · Jan 2019
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Outcomes of Fontan Patients Undergoing Combined Heart - Liver Transplantation in Pediatric Hospitals Across the U.S.
Grant Chappell, Amir Mehdizadeh-Shrifi, Darren Turner, Alexander Bondoc, Suzanne Evans, Alexander G Miethke, Gregory Tiao, Meghan M Chlebowski, Alexander R Opotowsky, David Lehenbauer, Marco Ricci, Awais Ashfaq, David L S MoralesBackground:
video0:59 · Dec 2025
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Pregnancy in a Fontan Patient: New Horizons in Medical and Surgical Fontan...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session, Drs Anisa Chaudr
video18:27 · Jan 2019
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Psychosocial Outcomes: New Horizons in Medical and Surgical Fontan Management...
Physicians from theCincinnati Children’s Heart Institutediscuss the long-term care of single ventricle patients from infancy to adulthood, including new insights on Fontan management and quality of life.During this session,Dr. Stacey Morris
video22:39 · Jan 2019
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Single ventricle physiology culminating in Fontan palliation creates a unique circulation characterized by chronic venous hypertension, absent subpulmonary ventricle, and profoundly altered hemodynamics . The Fontan circuit represents severe chronic right heart failure with sequelae including hepatic congestion, lymphatic dysfunction, restrictive lung disease, and progressive single ventricle dysfunction . Pulmonary vascular resistance in Fontan patients is typically both fixed and elevated, limiting cardiac output augmentation during exercise [e895-c5, e895-c12]. Diastolic dysfunction is nearly universal, with approximately 75% demonstrating abnormalities of early relaxation or elevated filling pressure on echo, and 35% showing occult diastolic dysfunction unmasked by volume challenge [e895-c14, e895-c19]. The circulation is profoundly prothrombotic—comparable to paroxysmal nocturnal hemoglobinuria—with cumulative thrombotic event risk reaching 22% and rising inexorably over time [e886-c5, e886-c6, e886-c7]. Arrhythmias, particularly macro-reentrant atrial tachycardia, were ubiquitous in early atriopulmonary Fontans and remain a significant predictor of adverse outcomes even in modern cohorts [e890-c1, e890-c14]. Fontan-associated liver disease progresses silently, with subclinical hepatocellular damage occurring when hepatic venous pressures exceed 25 mmHg . Protein-losing enteropathy and plastic bronchitis—manifestations of lymphatic pathology—carry 50% five-year freedom from death or transplant but resolve post-transplant in survivors [e891-c4, e891-c6, e891-c14, e891-c15]. Transplant outcomes have improved, with survival approaching 80% at one year and 75% at five years, though Fontan patients face higher waitlist mortality and early graft failure risk than dilated cardiomyopathy patients [e891-c8, e891-c11]. Mechanical support with continuous-flow VADs works well in appropriately selected patients ≥25 kg, offering bridge to transplant when medical management fails [e891-c19, e891-c21]. The key to optimizing long-term outcomes lies in dynamic assessment—exercise testing with hemodynamic monitoring reveals occult abnormalities invisible at rest—and aggressive management of modifiable risk factors including arrhythmia, thrombosis, and diastolic dysfunction [e894-c12, e894-c24].
  1. Fontan circulation is profoundly prothrombotic with 22% cumulative thrombotic risk; warfarin with excellent time-in-range (>80%) is superior to aspirin, achieving near-zero event rates.
  2. Diastolic dysfunction is the primary hemodynamic limitation: 75% show abnormal relaxation on echo, 35% have occult dysfunction on volume challenge, worsening with ventricular morphology and Fontan duration.
  3. Atrial arrhythmias predict sudden death and worse outcomes; catheter ablation achieves 40-50% freedom from recurrence versus near-zero for antiarrhythmics alone, with earlier intervention yielding simpler circuits.
  4. Protein-losing enteropathy and plastic bronchitis reflect lymphatic pathology with 50% five-year survival but resolve post-transplant; innominate vein decompression may offer palliation in select cases.
  5. Dynamic exercise assessment is essential even in well-functioning Fontans to detect occult obstruction, diastolic dysfunction, or elevated PVR invisible at rest; static hemodynamics underestimate disease burden.
For patients & families
Single ventricle heart defects and hypoplastic left heart syndrome (HLHS) are conditions where a baby is born with only one working pumping chamber instead of two. Doctors describe this as a problem affecting both lungs from birth, not just the heart. The condition creates challenges with blood flow and oxygen delivery that require careful medical management. When babies with these conditions are born, the medical team focuses on supporting breathing and circulation without rushing to surgery. Most babies (80-85%) survive to become teenagers with proper care. The treatment journey typically involves multiple surgeries over the first few years of life, ultimately creating what doctors call a "Fontan circulation" — a special arrangement where blood flows passively to the lungs without a pumping chamber. As children with single ventricle conditions grow, they face ongoing health considerations. The altered blood flow can affect the liver, intestines, and other organs over time. Families work closely with heart specialists, surgeons, and other doctors who monitor growth, nutrition, development, and organ function. Many children do well in school and activities, though some may need extra support for learning or attention challenges. Regular follow-up appointments continue throughout life to watch for complications and adjust care as needed.
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Pregnancy in a Fontan Patient: New Horizons in Medical and Surgical Fontan...
The patient underwent coarctation repair and PA banding at 2 days of life via end-to-end anastomotic repair after resection of coarc segment, plus left carotid to left subclavian artery side-to-side anastomosis
clinicalAnisa Chowdhury0:46 ↗
The patient underwent right modified Blalock-Thomas-Taussig shunt at 6 weeks of age, bidirectional Glenn at 6 months, and 20mm extracardiac Fontan at 4 years of age
clinicalAnisa Chowdhury1:00 ↗
The Fontan fenestration spontaneously closed and patient had transcatheter coil and vascular plugging of veno-venous collaterals at approximately 10 years of age
clinicalAnisa Chowdhury1:12 ↗
On 2006 catheterization, Fontan pressures were 12 mmHg and left ventricular end-diastolic pressure was 5 mmHg, both normal
clinicalAnisa Chowdhury1:22 ↗
Patient was lost to follow-up from age 16 to 21 years until presenting pregnant in first trimester
clinicalAnisa Chowdhury1:41 ↗
Lisinopril is teratogenic and should be stopped in pregnancy
guidelineAnisa Chowdhury1:49 ↗
Patient had 3 prior miscarriages and was told to use Depo-Provera contraception but only had 1 injection in past 3-4 years
clinicalAnisa Chowdhury1:58 ↗
Patient had baseline NYHA class 2-3 dyspneic symptoms (short of breath climbing one flight of stairs or walking 2 blocks) with no change during first couple trimesters of pregnancy
clinicalAnisa Chowdhury2:08 ↗
Patient's oxygen saturation was low-normal at 92% on room air
clinicalAnisa Chowdhury2:39 ↗
Echocardiogram showed mildly reduced left ventricular systolic function with estimated LVEF 45-50%
clinicalAnisa Chowdhury3:20 ↗
Patient had mild polycythemia with hemoglobin of 17, indicative of probable intermittent desaturations likely from venous collaterals
clinicalAnisa Chowdhury4:20 ↗
Patient was classified as WHO class 3 risk, indicating significantly elevated risk of both maternal morbidity and mortality during peripartum period
clinicalAnisa Chowdhury4:43 ↗
Management included aspirin 162 mg daily; stronger anticoagulation not pursued given unremarkable thrombophilia profile
clinicalAnisa Chowdhury5:06 ↗
Beta blocker was considered if LV function remained depressed on subsequent visits
clinicalAnisa Chowdhury5:18 ↗
Normal pregnancy causes decreased systemic vascular resistance, decreased PVR, increased heart rate, drop in blood pressure mid-pregnancy that rises again, and increase in cardiac output by about 50% and blood volume by 25%
clinicalNicole Brown7:11 ↗
Risk of thrombosis is about 6 times normal during pregnancy and as high as 11 times normal in first 6 weeks postpartum
epidemiologicalNicole Brown7:33 ↗
During labor without analgesia, cardiac output may increase by about 30% during each contraction; with regional analgesia this is mitigated to some degree
clinicalNicole Brown7:53 ↗
It takes about 6 months for cardiac output to return to non-pregnant levels postpartum
clinicalNicole Brown8:26 ↗
Miscarriage rate among Fontan single ventricle patients is about 46%
epidemiologicalNicole Brown8:45 ↗
In a systematic review of about 198 pregnancies in 110 Fontan women, there were no maternal deaths
epidemiologicalNicole Brown9:05 ↗
In Fontan pregnancies, SVT occurs in about 8.9% and heart failure in about 5%
epidemiologicalNicole Brown9:22 ↗
Most Fontan women deliver between 26 and 36 weeks gestation, not making it to term (37 weeks)
epidemiologicalNicole Brown9:40 ↗
Risk of congenital heart disease in fetus of Fontan mother is probably between 3-10%
epidemiologicalNicole Brown9:56 ↗
WHO class 3 indicates significantly increased risk of maternal mortality or severe morbidity; in Fontan pregnancy it is more the morbidity that is concerning, not the mortality
clinicalNicole Brown10:23 ↗
Fontan women should be followed in a multidisciplinary care unit with serial echocardiograms
guidelineNicole Brown10:52 ↗
Higher-risk Fontan patients include those with significant NYHA functional class deterioration, residual cyanosis, pulmonary hypertension, arrhythmias, multi-organ failure, or protein-losing enteropathy; these should be classified as class 4 and advised against pregnancy
guidelineNicole Brown11:20 ↗
Warfarin is concerning from aspect of teratogenicity, especially in first trimester
clinicalNicole Brown13:35 ↗
Aspirin seems reasonable for most Fontan pregnant patients
opinionNicole Brown13:46 ↗
For Fontan patients at higher thrombotic risk (arrhythmias, prior clot, low cardiac output), therapeutic anticoagulation should be considered
guidelineNicole Brown13:51 ↗
Delivery should be at tertiary care center where highest level of cardiac, OB, anesthesia, and neonatal care is available
guidelineNicole Brown14:27 ↗
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